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Chromatin's Role in Repair of Radiation-induced Damage

Chromatin's Role in Repair of Radiation-induced Damage
染色质在修复辐射引起的损伤中的作用
批准号:
10529319
负责人:
Jessica K Tyler
金额:
$32.21万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-05-01 至 2024-11-30

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中文摘要
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英文摘要
SUMMARY Radiation-induced double-strand breaks (DSBs) are fundamental threats to genomic integrity that result in genomic instability if not properly repaired, which can in turn lead to cancer and cell death. Although we know a great deal about the pathways of DSB repair, we know very little about how DSB repair occurs in its natural context in the cell, that is, chromatin. Chromatin by its very nature is an impediment for proteins accessing the DNA, yet the repair machinery is somehow able to navigate through the chromatin and successfully repair DNA damage. Chromatin also plays a key role in transducing the cell's response to DNA damage via the DNA damage cell cycle checkpoint. Until recently, there has been a large gap in our understanding as to how the DSB repair and the DNA damage checkpoint are influenced by the chromatin environment in mammalian cells. Integral to this process is the progression of the DNA repair machinery along a genome that is packaged into chromatin; how this occurs and the influence on the epigenome, has been a long-standing mystery. We have recently shown that chromatin is completely disassembled and reassembled during non-homologous end joining of double-strand DNA breaks in human cells. Excitingly, our recent preliminary data strongly supports an active role for dynamic chromatin assembly onto single stranded DNA (ssDNA) in the midst of homologous recombinational repair of DSBs as an intrinsic step required for DSB repair. Histones occupying ssDNA has never been reported previously in vivo, let alone their playing an important biological role. The proposed studies will uncover the nature of the histone-DNA complexes on ssDNA, and will reveal the elusive mechanism whereby chromatin assembly promotes DSB repair in human cells. By elucidating the mechanism whereby ssDNA-histone complexes contribute to DSB repair, we hope to fill significant gaps in our current knowledge of the chromosomal repair process.
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DOI: 10.1186/s13072-015-0026-4
发表时间: 2015
期刊: Epigenetics & chromatin
影响因子: 3.9
作者: [Zhan Y, Kost-Alimova M, Shi X, Leo E, Bardenhagen JP, Shepard HE, Appikonda S, Vangamudi B, Zhao S, Tieu TN, Jiang S, Heffernan TP, Marszalek JR, Toniatti C, Draetta G, Tyler J, Barton M, Jones P, Palmer WS, Geck Do MK, Andersen JN]
通讯作者: Andersen JN
DOI: 10.1016/j.cell.2008.06.035
发表时间: 2008-07-25
期刊: Cell
影响因子: 64.5
作者: [Chen CC, Carson JJ, Feser J, Tamburini B, Zabaronick S, Linger J, Tyler JK]
通讯作者: Tyler JK
DOI: 10.1016/j.molcel.2016.12.019
发表时间: 2017
期刊: Molecular cell
影响因子: 16
作者: [Aguilar,RhiannonR, Tyler,JessicaK]
通讯作者: Tyler,JessicaK
DOI: 10.1126/sciadv.1600584
发表时间: 2016-07
期刊: Science advances
影响因子: 13.6
作者: [Pal S, Tyler JK]
通讯作者: Tyler JK
45
    Discovering how autophagy is sufficient to extend yeast replicative lifespan
    2nd Biennial ASBMB - BSC Symposium on the Interplay between Epigenetic Regulation and Genome Integrity
    Novel pathways that regulate DNA double-strand break repair events in mammalian cells
    Novel pathways that regulate DNA double-strand break repair events in mammalian cells
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