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Reference - PMID:26696398 - Autophagy is required for efficient meiosis progression and proper meiotic chromosome segregation in fission yeast.

Reference summary

PubMed ID
PMID:26696398
Title
Autophagy is required for efficient meiosis progression and proper meiotic chromosome segregation in fission yeast.
Authors
Matsuhara H, Yamamoto A
Citation
Genes Cells 2016 Jan;21(1):65-87
Publication year
2016
Abstract
Autophagy is a conserved intracellular degradation system, which contributes to development and differentiation of various organisms. Yeast cells undergo meiosis under nitrogen-starved conditions and require autophagy for meiosis initiation. However, the precise roles of autophagy in meiosis remain unclear. Here, we show that autophagy is required for efficient meiosis progression and proper meiotic chromosome segregation in fission yeast. Autophagy-defective strains bearing a mutation in the autophagy core factor gene atg1, atg7, or atg14 exhibit deformed nuclear structures during meiosis. These mutant cells require an extracellular nitrogen supply for meiosis progression following their entry into meiosis and show delayed meiosis progression even with a nitrogen supply. In addition, they show frequent chromosome dissociation from the spindle together with spindle overextension, forming extra nuclei. Furthermore, Aurora kinase, which regulates chromosome segregation and spindle elongation, is significantly increased at the centromere and spindle in the mutant cells. Aurora kinase down-regulation eliminated delayed initiation of meiosis I and II, chromosome dissociation, and spindle overextension, indicating that increased Aurora kinase activity may cause these aberrances in the mutant cells. Our findings show a hitherto unrecognized relationship of autophagy with the nuclear structure, regulation of cell cycle progression, and chromosome segregation in meiosis.

Annotation

GO cellular component

GO:0000775 - chromosome, centromeric region

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GO:1990385 - meiotic spindle midzone

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Multi-locus phenotype

FYPO:0000581 - decreased spore germination frequency

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FYPO:0001178 - loss of viability upon nitrogen starvation

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Single locus phenotype

FYPO:0004159 - abnormal homologous chromosome segregation

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FYPO:0002890 - abnormal horsetail nucleus morphology

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FYPO:0004670 - abnormal macroautophagy during nitrogen starvation

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FYPO:0000151 - abnormal meiotic chromosome segregation

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FYPO:0002224 - abnormally arrested meiotic cell cycle

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FYPO:0000711 - decreased cell cycle arrest in mitotic G1 phase in response to nitrogen starvation

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FYPO:0000581 - decreased spore germination frequency

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FYPO:0005412 - delayed onset of meiosis II

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FYPO:0005599 - increased duration of meiosis I

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FYPO:0005598 - increased protein localization to centromere during meiotic cell cycle

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FYPO:0005596 - increased protein localization to spindle during meiosis I

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FYPO:0000736 - long meiotic spindle

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FYPO:0005384 - meiosis I metaphase/anaphase transition delay

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FYPO:0004160 - normal meiotic spindle

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FYPO:0004093 - normal meiotic telomere clustering

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FYPO:0004993 - normal spore germination frequency

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