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

Karyopherins remodel the dynamic organization of the nuclear pore complex transport barrier.

核转运蛋白重塑核孔复合体运输屏障的动态组织。

Kozai Toshiya, Fernandez-Martinez Javier, Kapinos Larisa E, Gallardo Paola, van Eeuwen Trevor, Saladin Martin, Eliasian Roi, Mazur Adam, Zhang Wenzhu, Tempkin Jeremy, Panatala Radhakrishnan, Delgado-Izquierdo Maria, Escribano-Marin Raul, Feng Qingzhou, Lin Chenxiang, Sali Andrej, Chait Brian T, Raveh Barak, Veenhoff Liesbeth M, Rout Michael P, Lim Roderick Y H

Motor clustering enhances kinesin-driven vesicle transport

运动蛋白聚集增强驱动蛋白介导的囊泡运输

Jiang, Rui; Feng, Qingzhou; Nong, Daguan; Kang, You Jung; Sept, David; Hancock, William O

Channel width modulates the permeability of DNA origami based nuclear pore mimics

通道宽度调节基于DNA折纸技术的核孔模拟物的渗透性

Feng, Qingzhou; Saladin, Martin; Wu, Chunxiang; Cao, Eason; Zheng, Wei; Zhang, Amy; Bhardwaj, Pushpanjali; Li, Xia; Shen, Qi; Kapinos, Larisa E; Mariappan, Malaiyalam; Lusk, C Patrick; Xiong, Yong; Lim, Roderick Y H; Lin, Chenxiang

Motor Clustering Enhances Kinesin-driven Vesicle Transport

马达蛋白聚集增强驱动蛋白介导的囊泡运输

Jiang, Rui; Feng, Qingzhou; Nong, Daguan; Kang, You Jung; Sept, David; Hancock, William O

Functionalized DNA-Origami-Protein Nanopores Generate Large Transmembrane Channels with Programmable Size-Selectivity

功能化DNA-折纸-蛋白质纳米孔可生成具有可编程尺寸选择性的大型跨膜通道

Shen, Qi; Xiong, Qiancheng; Zhou, Kaifeng; Feng, Qingzhou; Liu, Longfei; Tian, Taoran; Wu, Chunxiang; Xiong, Yong; Melia, Thomas J; Lusk, C Patrick; Lin, Chenxiang

The capsid lattice engages a bipartite NUP153 motif to mediate nuclear entry of HIV-1 cores

衣壳晶格与二元NUP153基序相互作用,介导HIV-1核心蛋白进入细胞核。

Shen, Qi; Kumari, Sushila; Xu, Chaoyi; Jang, Sooin; Shi, Jiong; Burdick, Ryan C; Levintov, Lev; Xiong, Qiancheng; Wu, Chunxiang; Devarkar, Swapnil C; Tian, Taoran; Tripler, Therese N; Hu, Yingxia; Yuan, Shuai; Temple, Joshua; Feng, Qingzhou; Lusk, C Patrick; Aiken, Christopher; Engelman, Alan N; Perilla, Juan R; Pathak, Vinay K; Lin, Chenxiang; Xiong, Yong

Simulations suggest robust microtubule attachment of kinesin and dynein in antagonistic pairs

模拟结果表明,拮抗型驱动蛋白和动力蛋白能够牢固地附着在微管上。

Ma, Tzu-Chen; Gicking, Allison M; Feng, Qingzhou; Hancock, William O

Kinesin-1, -2, and -3 motors use family-specific mechanochemical strategies to effectively compete with dynein during bidirectional transport

驱动蛋白-1、-2 和 -3 利用家族特异性的机械化学策略,在双向运输过程中有效地与动力蛋白竞争。

Gicking, Allison M; Ma, Tzu-Chen; Feng, Qingzhou; Jiang, Rui; Badieyan, Somayesadat; Cianfrocco, Michael A; Hancock, William O

A change point analysis protocol for comparing intracellular transport by different molecular motor combinations

一种用于比较不同分子马达组合的细胞内运输的变点分析方案

Jensen, Melanie A; Feng, Qingzhou; Hancock, William O; McKinley, Scott A

The Tail of Kinesin-14a in Giardia Is a Dual Regulator of Motility.

贾第鞭毛虫的驱动蛋白-14a 的尾部是运动性的双重调节因子

Tseng Kuo-Fu, Mickolajczyk Keith J, Feng Guangxi, Feng Qingzhou, Kwok Ethiene S, Howe Jesse, Barbar Elisar J, Dawson Scott C, Hancock William O, Qiu Weihong