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灯刷染色体有助于对黏连蛋白动力学进行研究。

Lampbrush chromosomes enable study of cohesin dynamics.

作者信息

Austin Christopher, Novikova Natalya, Guacci Vincent, Bellini Michel

机构信息

Cell & Developmental Biology, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

出版信息

Chromosome Res. 2009;17(2):165-84. doi: 10.1007/s10577-008-9015-9.

Abstract

The lampbrush chromosomes present in the nuclei of amphibian oocytes offer unique biological approaches for study of the mechanisms that regulate chromatin structure with high spatial resolution. We discuss fundamental aspects of the remarkable organization and plasticity exhibited by lampbrush chromosomes. We then utilize lampbrush chromosomes to characterize the chromosomal distribution and dynamics of cohesin, the four-protein complex (RAD21/MCD1/SCC1, SMC1, SMC3, SCC3/SA2) responsible for sister chromatid cohesion. We find that endogenous SMC3 and newly expressed hRAD21 co-localize on chromosomal axes, sites where sister chromatids are tightly paired. We present evidence suggesting that hRAD21 recruitment to lampbrush chromosomes is modulated by chromosomal SMC1 and SMC3. Notably, using a technique for de novo chromosome assembly, we demonstrate that both SMC3 and hRAD21 are recruited to single, unreplicated lampbrush chromatids. Finally, we used our novel method of analyzing the oocyte nucleus under oil combined with fluorescence recovery after photobleaching, to provide direct evidence that cohesin is highly dynamic at discrete, condensed chromosomal regions. Collectively, these data demonstrate that lampbrush chromosomes provide a unique and powerful tool for combining biochemical and cytological analyses for dissection of complex chromosomal processes.

摘要

两栖类卵母细胞核中的灯刷染色体为研究以高空间分辨率调控染色质结构的机制提供了独特的生物学方法。我们讨论了灯刷染色体所展现出的显著组织和可塑性的基本方面。然后,我们利用灯刷染色体来表征黏连蛋白(负责姐妹染色单体黏连的四蛋白复合体,即RAD21/MCD1/SCC1、SMC1、SMC3、SCC3/SA2)在染色体上的分布和动态变化。我们发现内源性SMC3和新表达的hRAD21在染色体轴上共定位,染色体轴是姐妹染色单体紧密配对的位点。我们提供的证据表明,hRAD21向灯刷染色体的募集受染色体SMC1和SMC3的调控。值得注意的是,通过一种从头组装染色体的技术,我们证明SMC3和hRAD21都被募集到单个未复制的灯刷染色单体上。最后,我们运用在油下分析卵母细胞核并结合光漂白后荧光恢复的新方法,直接证明了黏连蛋白在离散的浓缩染色体区域具有高度动态性。总体而言,这些数据表明灯刷染色体为结合生化和细胞学分析以剖析复杂染色体过程提供了一种独特而强大的工具。

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