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

Kinesin-5/Cut7 C-terminal tail phosphorylation is essential for microtubule sliding force and bipolar mitotic spindle assembly.

驱动蛋白-5/Cut7 C 端尾磷酸化对于微管滑动力和双极有丝分裂纺锤体组装至关重要

Jones Michele H, Gergely Zachary R, Steckhahn Daniel, Zhou Bojun, Betterton Meredith D

Distinct regions of the kinesin-5 C-terminal tail are essential for mitotic spindle midzone localization and sliding force

驱动蛋白-5 C端尾部的不同区域对于有丝分裂纺锤体中区的定位和滑动力至关重要。

Gergely, Zachary R; Jones, Michele H; Zhou, Bojun; Cash, Cai; McIntosh, J Richard; Betterton, Meredith D

The molecular architecture of the yeast spindle pole body core determined by Bayesian integrative modeling

利用贝叶斯整合模型确定酵母纺锤体极体核心的分子结构

Viswanath, Shruthi; Bonomi, Massimiliano; Kim, Seung Joong; Klenchin, Vadim A; Taylor, Keenan C; Yabut, King C; Umbreit, Neil T; Van Epps, Heather A; Meehl, Janet; Jones, Michele H; Russel, Daniel; Velazquez-Muriel, Javier A; Winey, Mark; Rayment, Ivan; Davis, Trisha N; Sali, Andrej; Muller, Eric G

A cell cycle phosphoproteome of the yeast centrosome.

酵母中心体的细胞周期磷酸化蛋白质组

Keck Jamie M, Jones Michele H, Wong Catherine C L, Binkley Jonathan, Chen Daici, Jaspersen Sue L, Holinger Eric P, Xu Tao, Niepel Mario, Rout Michael P, Vogel Jackie, Sidow Arend, Yates John R 3rd, Winey Mark

Structure-function analysis of the C-terminal domain of CNM67, a core component of the Saccharomyces cerevisiae spindle pole body

对酿酒酵母纺锤体极体核心组分CNM67的C端结构域进行结构-功能分析

Klenchin, Vadim A; Frye, Jeremiah J; Jones, Michele H; Winey, Mark; Rayment, Ivan