日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

A model for Scc2p stimulation of cohesin's ATPase and its inhibition by acetylation of Smc3p

Scc2p 刺激黏连蛋白 ATPase 及其被 Smc3p 乙酰化抑制的模型

Kevin Boardman, Siheng Xiang #, Fiona Chatterjee #, Udochi Mbonu #, Vincent Guacci #, Douglas Koshland #

Communication between distinct subunit interfaces of the cohesin complex promotes its topological entrapment of DNA

黏连蛋白复合物不同亚基界面之间的通讯促进了其对 DNA 的拓扑捕获

Vincent Guacci, Fiona Chatterjee, Brett Robison, Douglas E Koshland

Cohesin Function in Cohesion, Condensation, and DNA Repair Is Regulated by Wpl1p via a Common Mechanism in Saccharomyces cerevisiae

在酿酒酵母中,黏连蛋白在黏连、缩合和 DNA 修复中的功能由 Wpl1p 通过一种共同的机制进行调控

Michelle S Bloom, Douglas Koshland, Vincent Guacci

A role for the Smc3 hinge domain in the maintenance of sister chromatid cohesion

Smc3 铰链结构域在维持姐妹染色单体凝聚力中的作用

Brett Robison, Vincent Guacci, Douglas Koshland

The ATPases of cohesin interface with regulators to modulate cohesin-mediated DNA tethering

黏连蛋白的 ATPases 与调节器相互作用,调节黏连蛋白介导的 DNA 结合

Gamze Çamdere, Vincent Guacci, Jeremiah Stricklin, Douglas Koshland

Interallelic complementation provides functional evidence for cohesin-cohesin interactions on DNA

等位基因间互补为 DNA 上的黏连蛋白-黏连蛋白相互作用提供了功能证据

Thomas Eng, Vincent Guacci, Douglas Koshland

ROCC, a conserved region in cohesin's Mcd1 subunit, is essential for the proper regulation of the maintenance of cohesion and establishment of condensation

ROCC 是黏连蛋白 Mcd1 亚基中的保守区域,对于正确调节黏连的维持和凝聚的建立至关重要

Thomas Eng, Vincent Guacci, Doug Koshland

Phosphorylation of histone H4 Ser1 regulates sporulation in yeast and is conserved in fly and mouse spermatogenesis

组蛋白 H4 Ser1 的磷酸化调节酵母中的孢子形成,并且在苍蝇和小鼠的精子发生过程中保持保守

Thanuja Krishnamoorthy, Xin Chen, Jerome Govin, Wang L Cheung, Jean Dorsey, Karen Schindler, Edward Winter, C David Allis, Vincent Guacci, Saadi Khochbin, Margaret T Fuller, Shelley L Berger

Pds5p regulates the maintenance of sister chromatid cohesion and is sumoylated to promote the dissolution of cohesion

Pds5p 调节姐妹染色单体凝聚力的维持,并被 SUMO 化以促进凝聚力的溶解

Kristen Stead, Cristina Aguilar, Theresa Hartman, Melissa Drexel, Pamela Meluh, Vincent Guacci