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

Allosteric activation of VCP, an AAA unfoldase, by small molecule mimicry.

通过小分子模拟实现 AAA 解折叠酶 VCP 的变构激活

Jones Natalie H, Liu Qiwen, Urnavicius Linas, Dahan Noa E, Vostal Lauren E, Kapoor Tarun M

Biochemical reconstitutions reveal principles of human γ-TuRC assembly and function

生化重建揭示人类 γ-TuRC 组装和功能的原理

Michal Wieczorek #, Shih-Chieh Ti #, Linas Urnavicius, Kelly R Molloy, Amol Aher, Brian T Chait, Tarun M Kapoor

Targeting allostery in the Dynein motor domain with small molecule inhibitors

利用小分子抑制剂靶向作用于动力蛋白运动域的变构

Cristina C Santarossa, Keith J Mickolajczyk, Jonathan B Steinman, Linas Urnavicius, Nan Chen, Yasuhiro Hirata, Yoshiyuki Fukase, Nicolas Coudray, Damian C Ekiert, Gira Bhabha, Tarun M Kapoor

Asymmetric Molecular Architecture of the Human γ-Tubulin Ring Complex

人类 γ-微管蛋白环复合物的不对称分子结构

Michal Wieczorek, Linas Urnavicius, Shih-Chieh Ti, Kelly R Molloy, Brian T Chait, Tarun M Kapoor

MZT Proteins Form Multi-Faceted Structural Modules in the γ-Tubulin Ring Complex

MZT蛋白在γ-微管蛋白环状复合物中形成多面结构模块

Michal Wieczorek,Tzu-Lun Huang,Linas Urnavicius,Kuo-Chiang Hsia,Tarun M Kapoor

Cryo-EM shows how dynactin recruits two dyneins for faster movement

低温电子显微镜展示了动力蛋白如何募集两种动力蛋白以实现更快的运动

Linas Urnavicius, Clinton K Lau, Mohamed M Elshenawy, Edgar Morales-Rios, Carina Motz, Ahmet Yildiz, Andrew P Carter

The CryoEM structure of the Saccharomyces cerevisiae ribosome maturation factor Rea1

酿酒酵母核糖体成熟因子 Rea1 的 CryoEM 结构

Piotr Sosnowski #, Linas Urnavicius #, Andreas Boland, Robert Fagiewicz, Johan Busselez, Gabor Papai, Helgo Schmidt

Structure of human cytoplasmic dynein-2 primed for its power stroke

人类细胞质动力蛋白-2的结构已为其动力冲程做好准备

Helgo Schmidt #, Ruta Zalyte #, Linas Urnavicius, Andrew P Carter

In vitro reconstitution of a highly processive recombinant human dynein complex

高度加工性重组人动力蛋白复合物的体外重建

Max A Schlager, Ha Thi Hoang, Linas Urnavicius, Simon L Bullock, Andrew P Carter

The structure of sulfoindocarbocyanine 3 terminally attached to dsDNA via a long, flexible tether

磺基吲哚碳菁 3 的结构通过一条长而柔性的连接链末端连接到双链 DNA 上。

Urnavicius, Linas; McPhee, Scott A; Lilley, David M J; Norman, David G