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所有真核生物的结构维持染色体(SMC)蛋白在每个DNA环挤出步骤中都会诱导-0.6的扭曲。

All eukaryotic SMC proteins induce a twist of -0.6 at each DNA loop extrusion step.

作者信息

Janissen Richard, Barth Roman, Davidson Iain F, Peters Jan-Michael, Dekker Cees

机构信息

Department of Bionanoscience, Kavli Institute of Nanoscience Delft, Delft University of Technology, Delft, 2629HZ, Netherlands.

BITZ Transformation Lab, Deggendorf Institute of Technology, Oberschneiding, 94363, Germany.

出版信息

Sci Adv. 2024 Dec 13;10(50):eadt1832. doi: 10.1126/sciadv.adt1832.

Abstract

Eukaryotes carry three types of structural maintenance of chromosome (SMC) protein complexes, condensin, cohesin, and SMC5/6, which are ATP-dependent motor proteins that remodel the genome via DNA loop extrusion (LE). SMCs modulate DNA supercoiling but remains incompletely understood how this is achieved. Using a single-molecule magnetic tweezers assay that directly measures how much twist is induced by individual SMCs in each LE step, we demonstrate that all three SMC complexes induce the same large negative twist (i.e., linking number change [Formula: see text] of ~-0.6 at each LE step) into the extruded loop, independent of step size and DNA tension. Using ATP hydrolysis mutants and nonhydrolyzable ATP analogs, we find that ATP binding is the twist-inducing event during the ATPase cycle, coinciding with the force-generating LE step. The fact that all three eukaryotic SMC proteins induce the same amount of twist indicates a common DNA-LE mechanism among these SMC complexes.

摘要

真核生物携带三种染色体结构维持(SMC)蛋白复合物,即凝聚素、黏连蛋白和SMC5/6,它们是依赖ATP的运动蛋白,通过DNA环挤压(LE)重塑基因组。SMC调节DNA超螺旋,但目前尚不完全清楚这是如何实现的。我们使用单分子磁镊测定法直接测量每个LE步骤中单个SMC诱导的扭转量,结果表明所有三种SMC复合物在挤出的环中都诱导相同的大的负扭转(即每个LE步骤的连接数变化[公式:见正文]约为-0.6),与步长和DNA张力无关。使用ATP水解突变体和不可水解的ATP类似物,我们发现ATP结合是ATP酶循环中的扭转诱导事件,与产生力的LE步骤同时发生。所有三种真核生物SMC蛋白诱导相同量的扭转这一事实表明这些SMC复合物之间存在共同的DNA-LE机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dbd/11641105/892b5531c5d6/sciadv.adt1832-f1.jpg

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