Centromere assembly and plasticity control during cell division
ID:72 View Protection:ATTENDEE Updated Time:2024-10-27 17:05:48 Hits:1250 Invited speech

Start Time:2024-11-02 14:00(Asia/Shanghai)

Duration:30min

Session:S4 分会场一:三维基因组学与细胞生物学 / 三维基因组与相分离 » S4-1分会场一:三维基因组学与细胞生物学 /三维基因组与相分离

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Abstract
In mitosis, accurate chromosome segregation depends on kinetochores that connect centromeric chromatin to spindle microtubules. The centromeres of budding yeast, which are relatively simple, are connected to individual microtubules via a kinetochore constitutive centromere associated network (CCAN). However, the complex centromeres of human chromosomes comprise millions of DNA base pairs and attach to multiple microtubules. By combination of cryo-electron microscopy and functional analyses, we reveal the molecular basis of how human CCAN interacts with duplex DNA and facilitates accurate chromosome segregation. The overall structure relates to the cooperative interactions and interdependency of the constituent sub-complexes of the CCAN. The duplex DNA is topologically entrapped by human CCAN. Further, CENP-N does not bind to the RG-loop of CENP-A but to DNA in the CCAN complex. The DNA binding activity is essential for CENP-LN localization to centromere and chromosome segregation during mitosis. I will discuss our recent progress that provides new insights into mechanisms of action underlying kinetochore assembly and function in mitosis.
Keywords
mitosis;centromere;kinetochore;DNA;post-translational modifications
Speaker
姚雪彪 (Xuebiao Yao)
中国科学技术大学 (University of Science and Technology of China)

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Important Date
  • Conference Date

    Oct 31

    2024

    to

    Nov 03

    2024

  • Nov 03 2024

    Registration deadline

Sponsored By
崖州湾国家实验室
华中农业大学
浙江大学
中国遗传学会
中国遗传学会三维基因组学专委会
Organized By
中国生物信息学基因组信息学专委会
中国遗传学会表观遗传分会
中国细胞生物学学会染色质生物学分会
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