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

Single-Molecule Methods to Investigate Mechanisms of Transcription by RNA Polymerase of Mycobacterium tuberculosis

利用单分子方法研究结核分枝杆菌RNA聚合酶的转录机制

Lin, Wenxia; Herrera-Asmat, Omar; Tong, Alexander B; Kong, Tiantian; Bustamante, Carlos

FACT weakens the nucleosomal barrier to transcription and preserves its integrity by forming a hexasome-like intermediate.

FACT 通过形成六聚体样中间体来削弱核小体对转录的屏障并保持其完整性

Burgos-Bravo Francesca, Tong Alexander B, Li Chen, Díaz-Celis César, Kaplan Craig D, LeRoy Gary, Reinberg Danny, Bustamante Carlos

A structural atlas of death domain fold proteins reveals their versatile roles in biology and function

死亡结构域折叠蛋白的结构图谱揭示了它们在生物学和功能中的多种作用

Wu, Emily J; Kandalkar, Ankita T; Ehrmann, Julian F; Tong, Alexander B; Zhang, Jing; Cong, Qian; Wu, Hao

Pleomorphic effects of three small-molecule inhibitors on transcription elongation by Mycobacterium tuberculosis RNA polymerase

三种小分子抑制剂对结核分枝杆菌RNA聚合酶转录延伸的多形性影响

Herrera-Asmat, Omar; Tong, Alexander B; Lin, Wenxia; Kong, Tiantian; Del Valle, Juan R; Guerra, Daniel G; Ebright, Yon W; Ebright, Richard H; Bustamante, Carlos

Friction-driven membrane scission by the human ESCRT-III proteins CHMP1B and IST1

人类ESCRT-III蛋白CHMP1B和IST1通过摩擦驱动膜断裂

Cada, A King; Pavlin, Mark R; Castillo, Juan P; Tong, Alexander B; Larsen, Kevin P; Ren, Xuefeng; Yokom, Adam L; Tsai, Feng-Ching; Shiah, Jamie V; Bassereau, Patricia M; Bustamante, Carlos J; Hurley, James H

Could AlphaFold revolutionize chemical therapeutics?

AlphaFold能否彻底改变化学疗法?

Tong, Alexander B; Burch, Jason D; McKay, Daniel; Bustamante, Carlos; Crackower, Michael A; Wu, Hao

Helical inchworming: a novel translocation mechanism for a ring ATPase

螺旋蠕动:一种新型的环状ATPase易位机制

Tong, Alexander B; Bustamante, Carlos

Molecular basis of caspase-1 polymerization and its inhibition by a new capping mechanism

caspase-1聚合的分子基础及其通过一种新的加帽机制的抑制

Lu, Alvin; Li, Yang; Schmidt, Florian I; Yin, Qian; Chen, Shuobing; Fu, Tian-Min; Tong, Alexander B; Ploegh, Hidde L; Mao, Youdong; Wu, Hao

Cryo-EM structure of the activated NAIP2-NLRC4 inflammasome reveals nucleated polymerization

活化的NAIP2-NLRC4炎症小体的冷冻电镜结构揭示了成核聚合作用

Zhang, Liman; Chen, Shuobing; Ruan, Jianbin; Wu, Jiayi; Tong, Alexander B; Yin, Qian; Li, Yang; David, Liron; Lu, Alvin; Wang, Wei Li; Marks, Carolyn; Ouyang, Qi; Zhang, Xinzheng; Mao, Youdong; Wu, Hao