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protein coding gene - rlc1 (SPAC926.03) - myosin II regulatory light chain Rlc1

Gene summary

Standard name
rlc1
Systematic ID
SPAC926.03
Product
myosin II regulatory light chain Rlc1
Organism
Schizosaccharomyces pombe (fission yeast)
UniProt ID
Q9UUG5
ORFeome ID
05/05F10
Characterisation status
biological role published
Feature type
mRNA gene
Genomic location
chromosome I: 3887262..3888497 forward strand

Annotation

Disease association

MONDO:0030847 - arthrogryposis, distal, type 1C

References:

MONDO:0005045 - hypertrophic cardiomyopathy

References:

MONDO:0012112 - hypertrophic cardiomyopathy 10

References:

MONDO:0030296 - megacystis-microcolon-intestinal hypoperistalsis syndrome 4

References:

MONDO:0859168 - myopathy, myofibrillar, 12, infantile-onset, with cardiomyopathy

References:

GO biological process

GO:1902404 - mitotic actomyosin contractile ring contraction

References:

GO cellular component

GO:0005737 - cytoplasm

References:

GO:0005829 - cytosol

References:

GO:0071341 - medial cortical node

References:

GO:0110085 - mitotic actomyosin contractile ring

References:

GO:0120106 - mitotic actomyosin contractile ring, distal actin filament layer

References:

GO:0016460 - myosin II complex

References:

GO:0005634 - nucleus

References:

GO molecular function

GO:0005509 - calcium ion binding

References:

GO:0140659 - cytoskeletal motor regulator activity

References:

GO:0017022 - myosin binding

References:

GO:0032036 - myosin heavy chain binding

References:

Modification

MOD:00046 - O-phospho-L-serine

References:

Multi-locus phenotype

FYPO:0003165 - cut with abnormal chromosome segregation

References:

Genotypes:

FYPO:0005902 - decreased rate of actin filament-based movement

References:

Genotypes:

FYPO:0003339 - decreased rate of actomyosin contractile ring assembly

References:

Genotypes:

FYPO:0001365 - decreased rate of actomyosin contractile ring contraction

References:

Genotypes:

FYPO:0001355 - decreased vegetative cell population growth

References:

Genotypes:

FYPO:0004653 - delayed onset of actomyosin contractile ring contraction

References:

Genotypes:

FYPO:0005901 - increased rate of actin filament-based movement

References:

Genotypes:

FYPO:0006186 - increased rate of actomyosin contractile ring assembly

References:

Genotypes:

FYPO:0002303 - inviable mononucleate monoseptate vegetative cell with anucleate compartment

References:

Genotypes:

FYPO:0002061 - inviable vegetative cell population

References:

Genotypes:

FYPO:0001367 - normal cytokinesis

References:

Genotypes:

FYPO:0005906 - normal onset of actomyosin contractile ring contraction

References:

Genotypes:

FYPO:0005899 - normal rate of actin filament-based movement

References:

Genotypes:

FYPO:0001315 - normal vegetative cell morphology

References:

Genotypes:

FYPO:0001357 - normal vegetative cell population growth

References:

Genotypes:

FYPO:0003250 - premature septum assembly

References:

Genotypes:

FYPO:0001234 - slow vegetative cell population growth

References:

Genotypes:

FYPO:0001495 - viable elongated multinucleate vegetative cell

References:

Genotypes:

FYPO:0002060 - viable vegetative cell population

References:

Genotypes:

Protein features

PBO:0111761 - EF hand

Qualitative gene expression

PomGeneEx:0000019 - protein level decreased

References:

Quantitative gene expression

PBO:0006310 - protein level

References:

PBO:0011963 - RNA level

References:

Single locus phenotype

FYPO:0003338 - abnormal actomyosin contractile ring morphology

References:

Genotypes:

FYPO:0000164 - abnormal cell separation after cytokinesis

References:

Genotypes:

FYPO:0000032 - abnormal cytokinesis during vegetative growth

References:

Genotypes:

FYPO:0001401 - abnormal protein localization to cell division site

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Genotypes:

FYPO:0002023 - abnormal septum morphology during vegetative growth

References:

Genotypes:

FYPO:0001384 - abolished protein kinase activity

References:

Genotypes:

FYPO:0002561 - abolished protein localization to actomyosin contractile ring

References:

Genotypes:

FYPO:0002027 - angled actomyosin contractile ring

References:

Genotypes:

FYPO:0000080 - decreased cell population growth at low temperature

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Genotypes:

FYPO:0003743 - decreased cell population growth during glucose starvation

References:

Genotypes:

FYPO:0009075 - decreased cell population growth on fructose carbon source

References:

Genotypes:

FYPO:0009053 - decreased cell population growth on glutamate nitrogen source

References:

Genotypes:

FYPO:0000684 - decreased cell population growth on glycerol carbon source

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Genotypes:

FYPO:0009091 - decreased cell population growth on lysine and proline nitrogen source

References:

Genotypes:

FYPO:0009073 - decreased cell population growth on lysine nitrogen source

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Genotypes:

FYPO:0002924 - decreased cell population growth on maltose carbon source

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Genotypes:

FYPO:0009099 - decreased cell population growth on mannitol carbon source

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Genotypes:

FYPO:0001176 - decreased cell population growth on sucrose carbon source

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Genotypes:

FYPO:0009097 - decreased cell population growth on xylose carbon source

References:

Genotypes:

FYPO:0003412 - decreased chromatin silencing at centromere outer repeat

References:

Genotypes:

FYPO:0000708 - decreased mating efficiency

References:

Genotypes:

FYPO:0007603 - decreased microfilament motor activity

References:

Genotypes:

FYPO:0002699 - decreased protein localization to actomyosin contractile ring

References:

Genotypes:

FYPO:0005902 - decreased rate of actin filament-based movement

References:

Genotypes:

FYPO:0003339 - decreased rate of actomyosin contractile ring assembly

References:

Genotypes:

FYPO:0001365 - decreased rate of actomyosin contractile ring contraction

References:

Genotypes:

FYPO:0001355 - decreased vegetative cell population growth

References:

Genotypes:

FYPO:0004044 - elongated tetranucleate vegetative cell

References:

Genotypes:

FYPO:0005903 - incomplete actomyosin contractile ring contraction

References:

Genotypes:

FYPO:0005258 - increased cell population growth at high temperature

References:

Genotypes:

FYPO:0003938 - increased cell population growth during glucose starvation

References:

Genotypes:

FYPO:0009101 - increased cell population growth on glycerol and galactose carbon source

References:

Genotypes:

FYPO:0004167 - increased cell population growth on glycerol carbon source

References:

Genotypes:

FYPO:0001406 - increased septum thickness

References:

Genotypes:

FYPO:0004557 - increased vegetative cell population growth

References:

Genotypes:

FYPO:0002462 - inviable branched, elongated vegetative cell

References:

Genotypes:

FYPO:0002061 - inviable vegetative cell population

References:

Genotypes:

FYPO:0000245 - loss of viability in stationary phase

References:

Genotypes:

FYPO:0001390 - misoriented septum during vegetative growth

References:

Genotypes:

FYPO:0000061 - multinucleate vegetative cell

References:

Genotypes:

FYPO:0001368 - normal actomyosin contractile ring assembly

References:

Genotypes:

FYPO:0004300 - normal ATPase activity

References:

Genotypes:

FYPO:0001367 - normal cytokinesis

References:

Genotypes:

FYPO:0005906 - normal onset of actomyosin contractile ring contraction

References:

Genotypes:

FYPO:0002559 - normal protein localization to actomyosin contractile ring

References:

Genotypes:

FYPO:0002442 - normal protein localization to cell division site

References:

Genotypes:

FYPO:0001587 - normal protein localization to cell tip during vegetative growth

References:

Genotypes:

FYPO:0002999 - normal protein localization to medial cortical node

References:

Genotypes:

FYPO:0000703 - normal protein-protein interaction

References:

Genotypes:

FYPO:0005899 - normal rate of actin filament-based movement

References:

Genotypes:

FYPO:0006187 - normal rate of actomyosin contractile ring assembly

References:

Genotypes:

FYPO:0004895 - normal rate of actomyosin contractile ring contraction

References:

Genotypes:

FYPO:0005904 - normal rate of protein exchange in actomyosin contractile ring

References:

Genotypes:

FYPO:0001357 - normal vegetative cell population growth

References:

Genotypes:

FYPO:0009079 - resistance to calcofluor and sodium dodecyl sulfate

References:

Genotypes:

FYPO:0001884 - resistance to Calcofluor White

References:

Genotypes:

FYPO:0009068 - resistance to ciclopirox olamine

References:

Genotypes:

FYPO:0000764 - resistance to cycloheximide

References:

Genotypes:

FYPO:0002693 - resistance to diamide

References:

Genotypes:

FYPO:0009038 - resistance to egtazic acid

References:

Genotypes:

FYPO:0001453 - resistance to ethanol

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Genotypes:

FYPO:0001103 - resistance to hydrogen peroxide

References:

Genotypes:

FYPO:0002578 - resistance to hydroxyurea

References:

Genotypes:

FYPO:0009043 - resistance to potassium chloride and sodium dodecyl sulfate

References:

Genotypes:

FYPO:0005193 - resistance to torin1

References:

Genotypes:

FYPO:0000327 - resistance to trichostatin A

References:

Genotypes:

FYPO:0007808 - resistance to valproic acid

References:

Genotypes:

FYPO:0000830 - resistance to vanadate

References:

Genotypes:

FYPO:0009060 - resistance to wortmannin

References:

Genotypes:

FYPO:0004325 - sensitive to 5-fluorouracil

References:

Genotypes:

FYPO:0001097 - sensitive to amitrole

References:

Genotypes:

FYPO:0009067 - sensitive to amorolfine

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Genotypes:

FYPO:0007921 - sensitive to benzamidine

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Genotypes:

FYPO:0000095 - sensitive to bleomycin

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Genotypes:

FYPO:0001701 - sensitive to bortezomib

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Genotypes:

FYPO:0000096 - sensitive to cadmium

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Genotypes:

FYPO:0000097 - sensitive to caffeine during vegetative growth

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Genotypes:

FYPO:0001245 - sensitive to cobalt

References:

Genotypes:

FYPO:0000104 - sensitive to cycloheximide

References:

Genotypes:

FYPO:0007931 - sensitive to egtazic acid

References:

Genotypes:

FYPO:0007928 - sensitive to ethylenediaminetetraacetic acid

References:

Genotypes:

FYPO:0000785 - sensitive to formamide

References:

Genotypes:

FYPO:0007358 - sensitive to heavy water

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Genotypes:

FYPO:0000087 - sensitive to hydrogen peroxide

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Genotypes:

FYPO:0000088 - sensitive to hydroxyurea

References:

Genotypes:

FYPO:0009071 - sensitive to itraconazole

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Genotypes:

FYPO:0001719 - sensitive to lithium

References:

Genotypes:

FYPO:0009084 - sensitive to lithium chloride and methyl methanesulfonate

References:

Genotypes:

FYPO:0009086 - sensitive to lithium chloride and sodium dodecyl sulfate

References:

Genotypes:

FYPO:0006836 - sensitive to magnesium chloride

References:

Genotypes:

FYPO:0009088 - sensitive to magnesium chloride and sodium dodecyl sulfate

References:

Genotypes:

FYPO:0000089 - sensitive to methyl methanesulfonate

References:

Genotypes:

FYPO:0001214 - sensitive to potassium chloride

References:

Genotypes:

FYPO:0009082 - sensitive to potassium chloride and methyl methanesulfonate

References:

Genotypes:

FYPO:0007924 - sensitive to potassium chloride and sodium dodecyl sulfate

References:

Genotypes:

FYPO:0005889 - sensitive to sodium chloride

References:

Genotypes:

FYPO:0009090 - sensitive to sodium chloride and sodium dodecyl sulfate

References:

Genotypes:

FYPO:0000841 - sensitive to sodium dodecyl sulfate

References:

Genotypes:

FYPO:0000304 - sensitive to stress during vegetative growth

References:

Genotypes:

FYPO:0007938 - sensitive to tea tree oil

References:

Genotypes:

FYPO:0002328 - sensitive to terbinafine

References:

Genotypes:

FYPO:0000797 - sensitive to tert-butyl hydroperoxide

References:

Genotypes:

FYPO:0001457 - sensitive to tunicamycin

References:

Genotypes:

FYPO:0000115 - sensitive to valproic acid

References:

Genotypes:

FYPO:0003656 - sensitive to vanadate

References:

Genotypes:

FYPO:0009064 - sensitive to X-rays and rapamycin during vegetative growth.

References:

Genotypes:

FYPO:0001234 - slow vegetative cell population growth

References:

Genotypes:

FYPO:0001495 - viable elongated multinucleate vegetative cell

References:

Genotypes:

FYPO:0002060 - viable vegetative cell population

References:

Genotypes:

FYPO:0001510 - viable vegetative cell, abnormal cell shape, normal cell size

References:

Genotypes:

Taxonomic conservation

PBO:0011065 - conserved in eukaryotes

PBO:0011071 - conserved in eukaryotes only

PBO:0011064 - conserved in fungi

PBO:0011069 - conserved in metazoa

PBO:0011070 - conserved in vertebrates

Protein features

IDNameInterPro nameDB name
PF13499EF-hand_7EF_hand_domPfam
cd00051EFhEF_hand_domCDD
PS00018EF_HAND_1EF_Hand_1_Ca_BSPROSITE patterns
PS50222EF_HAND_2EF_hand_domPROSITE profiles
SM00054EFhEF_hand_domSMART
G3DSA:1.10.238.10:FF:000178CATH-FunFam
G3DSA:1.10.238.10CATH-Gene3D
SSF47473EF-hand-dom_pairSUPERFAMILY
PTHR23049Myosin_RLCPANTHER
mobidb-lite-Disorderdisorder_predictionMobiDB-Disorder

Orthologs

References / Literature

PMID:29996109 - Quantitative Phosphoproteomics Reveals the Signaling Dynamics of Cell-Cycle Kinases in the Fission Yeast Schizosaccharomyces pombe.
Swaffer MP et al. Cell Rep 2018 Jul 10;24(2):503-514
PMID:22024167 - Actin filament severing by cofilin is more important for assembly than constriction of the cytokinetic contractile ring.
Chen Q et al. J Cell Biol 2011 Oct 31;195(3):485-98
PMID:18378776 - The Clp1/Cdc14 phosphatase contributes to the robustness of cytokinesis by association with anillin-related Mid1.
Clifford DM et al. J Cell Biol 2008 Apr 07;181(1):79-88
PMID:34250083 - Barcode sequencing and a high-throughput assay for chronological lifespan uncover ageing-associated genes in fission yeast.
Romila CA et al. Microb Cell 2021 Jul 05;8(7):146-160
GO_REF:0000002 - Comments
PMID:31626996 - Multiplexed proteome profiling of carbon source perturbations in two yeast species with SL-SP3-TMT.
Paulo JA et al. J Proteomics 2020 Jan 06;210:103531
PMID:23101633 - Quantitative analysis of fission yeast transcriptomes and proteomes in proliferating and quiescent cells.
Marguerat S et al. Cell 2012 Oct 26;151(3):671-83
PMID:35108037 - Fission yeast paxillin contains two Cdc15 binding motifs for robust recruitment to the cytokinetic ring.
Snider CE et al. Mol Biol Cell 2022 Apr 01;33(4):br4
PMID:16772338 - The fission yeast Chs2 protein interacts with the type-II myosin Myo3p and is required for the integrity of the actomyosin ring.
Martín-García R et al. J Cell Sci 2006 Jul 01;119(Pt 13):2768-79
PMID:25977474 - A role for F-BAR protein Rga7p during cytokinesis in S. pombe.
Arasada R et al. J Cell Sci 2015 Jul 01;128(13):2259-68
PMID:22174761 - Roles of the DYRK kinase Pom2 in cytokinesis, mitochondrial morphology, and sporulation in fission yeast.
Wu P et al. PLoS One 2011;6(12):e28000
PMID:25720772 - Quantitative phosphoproteomics reveals pathways for coordination of cell growth and division by the conserved fission yeast kinase pom1.
Kettenbach AN et al. Mol Cell Proteomics 2015 May;14(5):1275-87
PMID:26941334 - Unique spatiotemporal activation pattern of Cdc42 by Gef1 and Scd1 promotes different events during cytokinesis.
Wei B et al. Mol Biol Cell 2016 Apr 15;27(8):1235-45
PMID:25451933 - Aip1 promotes actin filament severing by cofilin and regulates constriction of the cytokinetic contractile ring.
Chen Q et al. J Biol Chem 2015 Jan 23;290(4):2289-300
PMID:24763107 - Absolute proteome and phosphoproteome dynamics during the cell cycle of Schizosaccharomyces pombe (Fission Yeast).
Carpy A et al. Mol Cell Proteomics 2014 Aug;13(8):1925-36
PMID:18495844 - Interphase microtubule bundles use global cell shape to guide spindle alignment in fission yeast.
Daga RR et al. J Cell Sci 2008 Jun 15;121(Pt 12):1973-80
PMID:25688133 - The F-BAR Cdc15 promotes contractile ring formation through the direct recruitment of the formin Cdc12.
Willet AH et al. J Cell Biol 2015 Feb 16;208(4):391-9
PMID:33823663 - A TOR (target of rapamycin) and nutritional phosphoproteome of fission yeast reveals novel targets in networks conserved in humans.
Halova L et al. Open Biol 2021 Apr;11(4):200405
PMID:19570908 - Regulation of fission yeast myosin-II function and contractile ring dynamics by regulatory light-chain and heavy-chain phosphorylation.
Sladewski TE et al. Mol Biol Cell 2009 Sep;20(17):3941-52
PMID:16615890 - Meiotic proteins bqt1 and bqt2 tether telomeres to form the bouquet arrangement of chromosomes.
Chikashige Y et al. Cell 2006 Apr 07;125(1):59-69
PMID:22427686 - Characterization of Mid1 domains for targeting and scaffolding in fission yeast cytokinesis.
Lee IJ et al. J Cell Sci 2012 Jun 15;125(Pt 12):2973-85
PMID:25664996 - Synthetic polyamines: new compounds specific to actin dynamics for mammalian cell and fission yeast.
Riveline D et al. Bioarchitecture 2014;4(4-5):144-8
PMID:27918601 - Identifying genes required for respiratory growth of fission yeast.
Malecki M et al. Wellcome Open Res 2016;1:12
PMID:12791993 - Equatorial retention of the contractile actin ring by microtubules during cytokinesis.
Pardo M et al. Science 2003 Jun 06;300(5625):1569-74
PMID:15743909 - Profilin-mediated competition between capping protein and formin Cdc12p during cytokinesis in fission yeast.
Kovar DR et al. Mol Biol Cell 2005 May;16(5):2313-24
PMID:19075108 - Assembly of normal actomyosin rings in the absence of Mid1p and cortical nodes in fission yeast.
Huang Y et al. J Cell Biol 2008 Dec 15;183(6):979-88
PMID:23697806 - A genome-wide resource of cell cycle and cell shape genes of fission yeast.
Hayles J et al. Open Biol 2013 May 22;3(5):130053
PMID:14602073 - Spatial and temporal pathway for assembly and constriction of the contractile ring in fission yeast cytokinesis.
Wu JQ et al. Dev Cell 2003 Nov;5(5):723-34
PMID:30709916 - A Cdc42 GEF, Gef1, through endocytosis organizes F-BAR Cdc15 along the actomyosin ring and promotes concentric furrowing.
Onwubiko UN et al. J Cell Sci 2019 Feb 28;132(5)
PMID:23950735 - Global analysis of fission yeast mating genes reveals new autophagy factors.
Sun LL et al. PLoS Genet 2013;9(8):e1003715
PMID:36749320 - Multiple polarity kinases inhibit phase separation of F-BAR protein Cdc15 and antagonize cytokinetic ring assembly in fission yeast.
Bhattacharjee R et al. Elife 2023 Feb 07;12
PMID:19713940 - Fission yeast IQGAP arranges actin filaments into the cytokinetic contractile ring.
Takaine M et al. EMBO J 2009 Oct 21;28(20):3117-31
PMID:11056543 - Type II myosin regulatory light chain relieves auto-inhibition of myosin-heavy-chain function.
Naqvi NI et al. Nat Cell Biol 2000 Nov;2(11):855-8
PMID:18184749 - The actomyosin ring recruits early secretory compartments to the division site in fission yeast.
Vjestica A et al. Mol Biol Cell 2008 Mar;19(3):1125-38
PMID:25452419 - Parallel profiling of fission yeast deletion mutants for proliferation and for lifespan during long-term quiescence.
Sideri T et al. G3 (Bethesda) 2014 Dec 01;5(1):145-55
PMID:21376595 - IQGAP-related Rng2p organizes cortical nodes and ensures position of cell division in fission yeast.
Padmanabhan A et al. Curr Biol 2011 Mar 22;21(6):467-72
PMID:11069761 - The S. pombe rlc1 gene encodes a putative myosin regulatory light chain that binds the type II myosins myo3p and myo2p.
Le Goff X et al. J Cell Sci 2000 Dec;113 Pt 23:4157-63
PMID:15504913 - UCS protein Rng3p activates actin filament gliding by fission yeast myosin-II.
Lord M et al. J Cell Biol 2004 Oct 25;167(2):315-25
PMID:18272786 - Pxl1p, a paxillin-related protein, stabilizes the actomyosin ring during cytokinesis in fission yeast.
Ge W et al. Mol Biol Cell 2008 Apr;19(4):1680-92
PMID:16864655 - Assembly of the cytokinetic contractile ring from a broad band of nodes in fission yeast.
Wu JQ et al. J Cell Biol 2006 Jul 31;174(3):391-402
PMID:24115772 - SIN-dependent phosphoinhibition of formin multimerization controls fission yeast cytokinesis.
Bohnert KA et al. Genes Dev 2013 Oct 01;27(19):2164-77
PMID:24127216 - The formins Cdc12 and For3 cooperate during contractile ring assembly in cytokinesis.
Coffman VC et al. J Cell Biol 2013 Oct 14;203(1):101-14
PMID:19029336 - Schizosaccharomyces pombe Pak-related protein, Pak1p/Orb2p, phosphorylates myosin regulatory light chain to inhibit cytokinesis.
Loo TH et al. J Cell Biol 2008 Dec 01;183(5):785-93
PMID:28808035 - Fission yeast myosin Myo2 is down-regulated in actin affinity by light chain phosphorylation.
Pollard LW et al. Proc Natl Acad Sci U S A 2017 Aug 29;114(35):E7236-E7244
PMID:31657618 - A Genome-Wide Screen for Wortmannin-Resistant Mutants in Schizosaccharomyces pombe: The Phosphorylation-Impaired Mutants Are Resistant to Signaling Defect.
Yılmazer M et al. DNA Cell Biol 2019 Dec;38(12):1427-1436
PMID:20473289 - Analysis of a genome-wide set of gene deletions in the fission yeast Schizosaccharomyces pombe.
Kim DU et al. Nat Biotechnol 2010 Jun;28(6):617-623
PMID:33109728 - High-Throughput Identification of Nuclear Envelope Protein Interactions in Schizosaccharomyces pombe Using an Arrayed Membrane Yeast-Two Hybrid Library.
Varberg JM et al. G3 (Bethesda) 2020 Dec 03;10(12):4649-4663
PMID:37787768 - Broad functional profiling of fission yeast proteins using phenomics and machine learning.
Rodríguez-López M et al. Elife 2023 Oct 03;12
PMID:28914606 - Nanoscale architecture of the Schizosaccharomyces pombe contractile ring.
McDonald NA et al. Elife 2017 Sep 15;6
PMID:28281664 - Genetic interactions and functional analyses of the fission yeast gsk3 and amk2 single and double mutants defective in TORC1-dependent processes.
Rallis C et al. Sci Rep 2017 Mar 10;7:44257
PMID:39705284 - Proteomic and phosphoproteomic analyses reveal that TORC1 is reactivated by pheromone signaling during sexual reproduction in fission yeast.
Bérard M et al. PLoS Biol 2024 Dec 20;22(12):e3002963
PMID:22918943 - Anillin-related protein Mid1p coordinates the assembly of the cytokinetic contractile ring in fission yeast.
Saha S et al. Mol Biol Cell 2012 Oct;23(20):3982-92
PMID:30853434 - NDR Kinase Sid2 Drives Anillin-like Mid1 from the Membrane to Promote Cytokinesis and Medial Division Site Placement.
Willet AH et al. Curr Biol 2019 Mar 18;29(6):1055-1063.e2
PMID:16687577 - Cell cycle-dependent roles for the FCH-domain protein Cdc15p in formation of the actomyosin ring in Schizosaccharomyces pombe.
Wachtler V et al. Mol Biol Cell 2006 Jul;17(7):3254-66
PMID:24798735 - The novel proteins Rng8 and Rng9 regulate the myosin-V Myo51 during fission yeast cytokinesis.
Wang N et al. J Cell Biol 2014 May 12;205(3):357-75
PMID:26771498 - A Proteome-wide Fission Yeast Interactome Reveals Network Evolution Principles from Yeasts to Human.
Vo TV et al. Cell 2016 Jan 14;164(1-2):310-323
PMID:21712547 - Mitotic substrates of the kinase aurora with roles in chromatin regulation identified through quantitative phosphoproteomics of fission yeast.
Koch A et al. Sci Signal 2011 Jun 28;4(179):rs6
PMID:16224022 - Counting cytokinesis proteins globally and locally in fission yeast.
Wu JQ et al. Science 2005 Oct 14;310(5746):310-4
PMID:21422229 - Assembly and architecture of precursor nodes during fission yeast cytokinesis.
Laporte D et al. J Cell Biol 2011 Mar 21;192(6):1005-21
PMID:31509478 - The intrinsically disordered region of the cytokinetic F-BAR protein Cdc15 performs a unique essential function in maintenance of cytokinetic ring integrity.
Mangione MC et al. Mol Biol Cell 2019 Oct 15;30(22):2790-2801
PMID:32142608 - Mutations in a Single Signaling Pathway Allow Cell Growth in Heavy Water.
Kampmeyer C et al. ACS Synth Biol 2020 Apr 17;9(4):733-748
PMID:20603077 - Dephosphorylation of F-BAR protein Cdc15 modulates its conformation and stimulates its scaffolding activity at the cell division site.
Roberts-Galbraith RH et al. Mol Cell 2010 Jul 09;39(1):86-99
PMID:16823372 - ORFeome cloning and global analysis of protein localization in the fission yeast Schizosaccharomyces pombe.
Matsuyama A et al. Nat Biotechnol 2006 Jul;24(7):841-7
PMID:32101745 - Dense Transposon Integration Reveals Essential Cleavage and Polyadenylation Factors Promote Heterochromatin Formation.
Lee SY et al. Cell Rep 2020 Feb 25;30(8):2686-2698.e8
GO_REF:0000033 - Annotation inferences using phylogenetic trees
PMID:19139265 - The SH3 domains of two PCH family members cooperate in assembly of the Schizosaccharomyces pombe contractile ring.
Roberts-Galbraith RH et al. J Cell Biol 2009 Jan 12;184(1):113-27
PMID:20110347 - Tropomyosin and myosin-II cellular levels promote actomyosin ring assembly in fission yeast.
Stark BC et al. Mol Biol Cell 2010 Mar 15;21(6):989-1000
PB_REF:0000006 - Disease associations from Monarch via human-pombe orthologs
PMID:18256290 - Schizosaccharomyces pombe Pxl1 is a paxillin homologue that modulates Rho1 activity and participates in cytokinesis.
Pinar M et al. Mol Biol Cell 2008 Apr;19(4):1727-38
PMID:25483073 - Chromosome segregation and organization are targets of 5'-Fluorouracil in eukaryotic cells.
Mojardín L et al. Cell Cycle 2015;14(2):206-18
PMID:30726745 - Fission Yeast NDR/LATS Kinase Orb6 Regulates Exocytosis via Phosphorylation of the Exocyst Complex.
Tay YD et al. Cell Rep 2019 Feb 05;26(6):1654-1667.e7
PMID:28357272 - A central role for TOR signalling in a yeast model for juvenile CLN3 disease.
Bond ME et al. Microb Cell 2015 Nov 11;2(12):466-480
PMID:19279143 - Role of the RNA-binding protein Nrd1 and Pmk1 mitogen-activated protein kinase in the regulation of myosin mRNA stability in fission yeast.
Satoh R et al. Mol Biol Cell 2009 May;20(9):2473-85
PMID:21511999 - Comparative functional genomics of the fission yeasts.
Rhind N et al. Science 2011 May 20;332(6032):930-6
PMID:20434336 - The cortical ER network limits the permissive zone for actomyosin ring assembly.
Zhang D et al. Curr Biol 2010 Jun 08;20(11):1029-34