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首页> 外文期刊>Science Advances >Bridging-induced phase separation induced by cohesin SMC protein complexes
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Bridging-induced phase separation induced by cohesin SMC protein complexes

机译:Cohyin SMC蛋白复合物诱导的桥接诱导的相分离

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Structural maintenance of chromosome (SMC) protein complexes are able to extrude DNA loops. While loop extrusion constitutes a fundamental building block of chromosomes, other factors may be equally important. Here, we show that yeast cohesin exhibits pronounced clustering on DNA, with all the hallmarks of biomolecular condensation. DNA-cohesin clusters exhibit liquid-like behavior, showing fusion of clusters, rapid fluorescence recovery after photobleaching and exchange of cohesin with the environment. Strikingly, the in vitro clustering is DNA length dependent, as cohesin forms clusters only on DNA exceeding 3 kilo–base pairs. We discuss how bridging-induced phase separation, a previously unobserved type of biological condensation, can explain the DNA-cohesin clustering through DNA-cohesin-DNA bridges. We confirm that, in yeast cells in vivo, a fraction of cohesin associates with chromatin in a manner consistent with bridging-induced phase separation. Biomolecular condensation by SMC proteins constitutes a new basic principle by which SMC complexes direct genome organization.
机译:染色体(SMC)蛋白质复合物的结构维持能够挤出DNA环。虽然环路挤出构成染色体的基本构建块,但其他因素可能同样重要。在这里,我们表明酵母休肽在DNA上表现出明显的聚类,并具有生物分子凝结的所有标志。 DNA-休谷簇表现出液体样行为,显示簇的融合,光漂白后的快速荧光回收,并与环境交换。尖锐的是,体外聚类是DNA长度依赖性的,因为幼胞苷只形成超过3千碱基对的DNA簇。我们讨论桥接诱导的相分离,以前不观察到的生物缩合,可以通过DNA-凝固桥桥来解释DNA-休肽聚类。我们证实,在体内酵母细胞中,在与桥接诱导的相分离一致的方式中,凝聚蛋白的一部分与染色质相互作用。 SMC蛋白的生物分子缩合构成了SMC复合物直接基因组组织的新基本原理。

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