粘蛋白
DNA超螺旋
染色质
DNA
康德星
生物物理学
生物
细胞生物学
姐妹染色单体结合力的建立
遗传学
DNA复制
作者
Iain F. Davidson,Roman Barth,Sabrina Horn,Richard Janissen,Kota Nagasaka,Gordana Wutz,Roman R. Stocsits,Benedikt Bauer,Cees Dekker,Jan‐Michael Peters
标识
DOI:10.1101/2024.03.22.586228
摘要
Abstract Cohesin extrudes genomic DNA into loops that promote chromatin assembly, gene regulation and recombination. Here we show that cohesin introduces negative supercoils into extruded DNA. Supercoiling requires engagement of cohesin’s ATPase heads, DNA clamping by these heads, and a DNA binding site on cohesin’s hinge, indicating that cohesin supercoils DNA when constraining it between the hinge and the clamp. Our results suggest that DNA extrusion stops once cohesin reaches its stall torque during supercoiling, and a cohesin mutant predicted to stall at lower torque forms shorter loops in cells. These results indicate that supercoiling is an integral part of the loop extrusion mechanism and that cohesin controls genome architecture not only by looping DNA but also by supercoiling it.
科研通智能强力驱动
Strongly Powered by AbleSci AI