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Reference - PMID:29149597 - Structural Basis for Shelterin Bridge Assembly.

Reference summary

PubMed ID
PMID:29149597
Title
Structural Basis for Shelterin Bridge Assembly.
Authors
Kim JK, Liu J, Hu X, Yu C, Roskamp K, Sankaran B, Huang L, Komives EA, Qiao F
Citation
Mol Cell 2017 Nov 16;68(4):698-714.e5
Publication year
2017
Abstract
Telomere elongation through telomerase enables chromosome survival during cellular proliferation. The conserved multifunctional shelterin complex associates with telomeres to coordinate multiple telomere activities, including telomere elongation by telomerase. Similar to the human shelterin, fission yeast shelterin is composed of telomeric sequence-specific double- and single-stranded DNA-binding proteins, Taz1 and Pot1, respectively, bridged by Rap1, Poz1, and Tpz1. Here, we report the crystal structure of the fission yeast Tpz1 475-508 -Poz1-Rap1 467-496 complex that provides the structural basis for shelterin bridge assembly. Biochemical analyses reveal that shelterin bridge assembly is a hierarchical process in which Tpz1 binding to Poz1 elicits structural changes in Poz1, allosterically promoting Rap1 binding to Poz1. Perturbation of the cooperative Tpz1-Poz1-Rap1 assembly through mutation of the "conformational trigger" in Poz1 leads to unregulated telomere lengthening. Furthermore, we find that the human shelterin counterparts TPP1-TIN2-TRF2 also assemble hierarchically, indicating cooperativity as a conserved driving force for shelterin assembly.

Annotation

GO cellular component

GO:0070187 - shelterin complex

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GO molecular function

GO:0005515 - protein binding

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Single locus phenotype

FYPO:0000705 - abolished protein-protein interaction

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FYPO:0003803 - decreased protein localization to telomere

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FYPO:0001645 - decreased protein-protein interaction

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FYPO:0002019 - elongated telomeres during vegetative growth

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FYPO:0002887 - normal protein localization to telomere during vegetative growth

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FYPO:0000703 - normal protein-protein interaction

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FYPO:0002687 - normal telomere length during vegetative growth

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