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Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex

The conserved shelterin complex caps chromosome ends to protect telomeres and regulate telomere replication. In fission yeast Schizosaccharomyces pombe, shelterin consists of telomeric single- and double-stranded DNA-binding modules Pot1-Tpz1 and Taz1-Rap1 connected by Poz1, and a specific component...

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Autores principales: Sun, Hong, Wu, Zhenfang, Zhou, Yuanze, Lu, Yanjia, Lu, Huaisheng, Chen, Hongwen, Shi, Shaohua, Zeng, Zhixiong, Wu, Jian, Lei, Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9333443/
https://www.ncbi.nlm.nih.gov/pubmed/35849625
http://dx.doi.org/10.1371/journal.pgen.1010308
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author Sun, Hong
Wu, Zhenfang
Zhou, Yuanze
Lu, Yanjia
Lu, Huaisheng
Chen, Hongwen
Shi, Shaohua
Zeng, Zhixiong
Wu, Jian
Lei, Ming
author_facet Sun, Hong
Wu, Zhenfang
Zhou, Yuanze
Lu, Yanjia
Lu, Huaisheng
Chen, Hongwen
Shi, Shaohua
Zeng, Zhixiong
Wu, Jian
Lei, Ming
author_sort Sun, Hong
collection PubMed
description The conserved shelterin complex caps chromosome ends to protect telomeres and regulate telomere replication. In fission yeast Schizosaccharomyces pombe, shelterin consists of telomeric single- and double-stranded DNA-binding modules Pot1-Tpz1 and Taz1-Rap1 connected by Poz1, and a specific component Ccq1. While individual structures of the two DNA-binding OB folds of Pot1 (Pot1(OB1)-GGTTAC and Pot1(OB2)-GGTTACGGT) are available, structural insight into recognition of telomeric repeats with spacers by the complete DNA-binding domain (Pot1(DBD)) remains an open question. Moreover, structural information about the Tpz1-Ccq1 interaction requires to be revealed for understanding how the specific component Ccq1 of S. pombe shelterin is recruited to telomeres to function as an interacting hub. Here, we report the crystal structures of Pot1(DBD)-single-stranded-DNA, Pot1(372-555)-Tpz1(185-212) and Tpz1(425-470)-Ccq1(123-439) complexes and propose an integrated model depicting the assembly mechanism of the shelterin complex at telomeres. The structure of Pot1(DBD)-DNA unveils how Pot1 recognizes S. pombe degenerate telomeric sequences. Our analyses of Tpz1-Ccq1 reveal structural basis for the essential role of the Tpz1-Ccq1 interaction in telomere recruitment of Ccq1 that is required for telomere maintenance and telomeric heterochromatin formation. Overall, our findings provide valuable structural information regarding interactions within fission yeast shelterin complex at 3’ ss telomeric overhang.
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spelling pubmed-93334432022-07-29 Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex Sun, Hong Wu, Zhenfang Zhou, Yuanze Lu, Yanjia Lu, Huaisheng Chen, Hongwen Shi, Shaohua Zeng, Zhixiong Wu, Jian Lei, Ming PLoS Genet Research Article The conserved shelterin complex caps chromosome ends to protect telomeres and regulate telomere replication. In fission yeast Schizosaccharomyces pombe, shelterin consists of telomeric single- and double-stranded DNA-binding modules Pot1-Tpz1 and Taz1-Rap1 connected by Poz1, and a specific component Ccq1. While individual structures of the two DNA-binding OB folds of Pot1 (Pot1(OB1)-GGTTAC and Pot1(OB2)-GGTTACGGT) are available, structural insight into recognition of telomeric repeats with spacers by the complete DNA-binding domain (Pot1(DBD)) remains an open question. Moreover, structural information about the Tpz1-Ccq1 interaction requires to be revealed for understanding how the specific component Ccq1 of S. pombe shelterin is recruited to telomeres to function as an interacting hub. Here, we report the crystal structures of Pot1(DBD)-single-stranded-DNA, Pot1(372-555)-Tpz1(185-212) and Tpz1(425-470)-Ccq1(123-439) complexes and propose an integrated model depicting the assembly mechanism of the shelterin complex at telomeres. The structure of Pot1(DBD)-DNA unveils how Pot1 recognizes S. pombe degenerate telomeric sequences. Our analyses of Tpz1-Ccq1 reveal structural basis for the essential role of the Tpz1-Ccq1 interaction in telomere recruitment of Ccq1 that is required for telomere maintenance and telomeric heterochromatin formation. Overall, our findings provide valuable structural information regarding interactions within fission yeast shelterin complex at 3’ ss telomeric overhang. Public Library of Science 2022-07-18 /pmc/articles/PMC9333443/ /pubmed/35849625 http://dx.doi.org/10.1371/journal.pgen.1010308 Text en © 2022 Sun et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sun, Hong
Wu, Zhenfang
Zhou, Yuanze
Lu, Yanjia
Lu, Huaisheng
Chen, Hongwen
Shi, Shaohua
Zeng, Zhixiong
Wu, Jian
Lei, Ming
Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex
title Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex
title_full Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex
title_fullStr Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex
title_full_unstemmed Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex
title_short Structural insights into Pot1-ssDNA, Pot1-Tpz1 and Tpz1-Ccq1 Interactions within fission yeast shelterin complex
title_sort structural insights into pot1-ssdna, pot1-tpz1 and tpz1-ccq1 interactions within fission yeast shelterin complex
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9333443/
https://www.ncbi.nlm.nih.gov/pubmed/35849625
http://dx.doi.org/10.1371/journal.pgen.1010308
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