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

SEC-SAXS/MC Ensemble Structural Studies of the Microtubule Binding Protein Cdt1 Show Monomeric, Folded-Over Conformations.

SEC-SAXS/MC 集合结构研究微管结合蛋白 Cdt1 显示单体、折叠构象

Smith Kyle P, Chakravarthy Srinivas, Rahi Amit, Chakraborty Manas, Vosberg Kristen M, Tonelli Marco, Plach Maximilian G, Grigorescu Arabela A, Curtis Joseph E, Varma Dileep

Contribution of CENP-F to FOXM1-Mediated Discordant Centromere and Kinetochore Transcriptional Regulation.

CENP-F 对 FOXM1 介导的着丝粒和动粒转录调控不一致的贡献

Khurana Sakshi, Varma Dileep, Foltz Daniel R

Generation and diversification of recombinant monoclonal antibodies

重组单克隆抗体的生成和多样化

DeLuca, Keith F; Mick, Jeanne E; Ide, Amy H; Lima, Wanessa C; Sherman, Lori; Schaller, Kristin L; Anderson, Steven M; Zhao, Ning; Stasevich, Timothy J; Varma, Dileep; Nilsson, Jakob; DeLuca, Jennifer G

Kinetochore-microtubule coupling mechanisms mediated by the Ska1 complex and Cdt1

由Ska1复合物和Cdt1介导的动粒-微管偶联机制

Rahi, Amit; Chakraborty, Manas; Vosberg, Kristen; Varma, Dileep

Antagonism between the dynein and Ndc80 complexes at kinetochores controls the stability of kinetochore-microtubule attachments during mitosis

动粒处动力蛋白和Ndc80复合物之间的拮抗作用控制着有丝分裂过程中动粒-微管连接的稳定性。

Amin, Mohammed A; McKenney, Richard J; Varma, Dileep

Targeting mitotic pathways for endocrine-related cancer therapeutics

靶向有丝分裂通路进行内分泌相关癌症治疗

Agarwal, Shivangi; Varma, Dileep

Combining Mitotic Cell Synchronization and High Resolution Confocal Microscopy to Study the Role of Multifunctional Cell Cycle Proteins During Mitosis

结合有丝分裂细胞同步化和高分辨率共聚焦显微镜研究多功能细胞周期蛋白在有丝分裂中的作用

Amin, Mohammed A; Varma, Dileep

The RZZ complex requires the N-terminus of KNL1 to mediate optimal Mad1 kinetochore localization in human cells

RZZ复合物需要KNL1的N端来介导Mad1在人类细胞中的最佳着丝粒定位。

Caldas, Gina V; Lynch, Tina R; Anderson, Ryan; Afreen, Sana; Varma, Dileep; DeLuca, Jennifer G

The KMN protein network--chief conductors of the kinetochore orchestra

KMN蛋白网络——动粒交响乐团的首席指挥

Varma, Dileep; Salmon, E D

Removal of Spindly from microtubule-attached kinetochores controls spindle checkpoint silencing in human cells

Spindly 从微管连接的着丝粒上移除,从而控制人类细胞中的纺锤体检查点沉默。

Gassmann, Reto; Holland, Andrew J; Varma, Dileep; Wan, Xiaohu; Civril, Filiz; Cleveland, Don W; Oegema, Karen; Salmon, Edward D; Desai, Arshad