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

An allosteric network governs Tom70 conformational dynamics to coordinate mitochondrial import

变构网络调控 Tom70 的构象动力学,从而协调线粒体导入。

Bachochin, Maxwell J; McGuire, Kelly L; Cook, Brian D; Ye, Qiaozhen; Silletti, Steven; Corbett, Kevin D; Komives, Elizabeth A; Herzik, Mark A Jr

A Surfactant Cocktail Overcomes Air-Water Interface Artifacts in Single-Particle CryoEM

表面活性剂混合物可克服单颗粒冷冻电镜中的气-水界面伪影

Enos, Suzanne E; Cook, Brian D; Rahmani, Hamidreza; Narehood, Sarah M; Li, Yizhou; Kuschnerus, Inga C; Redford, Trevor H; Dukakis, Peter; Ji, Daniel; Bachochin, Maxwell J; Grotjahn, Danielle A; Herzik, Mark A Jr

Structural basis for the conformational protection of nitrogenase from O(2)

固氮酶构象保护免受 O(2) 影响的结构基础

Narehood, Sarah M; Cook, Brian D; Srisantitham, Suppachai; Eng, Vanessa H; Shiau, Angela A; McGuire, Kelly L; Britt, R David; Herzik, Mark A Jr; Tezcan, F Akif

ANTIDOTE: A Metadata-Driven Neural Network for Improving CryoEM 3-D Particle Sorting

ANTIDOTE:一种基于元数据的神经网络,用于改进冷冻电镜三维粒子分选

Berkeley, Raymond F; Cook, Brian D; Ji, Daniel; Foroughi, Armin; He, Yifei; Bachochin, Maxwell J; Herzik, Mark A Jr

An allosteric network governs Tom70 conformational dynamics to coordinate mitochondrial protein import.

变构网络控制 Tom70 的构象动力学,从而协调线粒体蛋白的输入

Bachochin Max J, McGuire Kelly L, Cook Brian D, Ye Qiaozhen, Silletti Steve, Corbett Kevin D, Komives Elizabeth A, Herzik Mark A Jr

Machine learning approaches to cryoEM density modification differentially affect biomacromolecule and ligand density quality

机器学习方法对冷冻电镜密度修饰的影响因生物大分子和配体密度质量的不同而有所差异。

Berkeley, Raymond F; Cook, Brian D; Herzik, Mark A Jr

Tuning ice thickness using the chameleon for high-quality cryoEM data collection

利用 Chameleon 调节冰层厚度以实现高质量冷冻电镜数据采集

McGuire, Kelly L; Cook, Brian D; Narehood, Sarah M; Herzik, Mark A Jr

Structures of the nitrogenase complex prepared under catalytic turnover conditions

在催化周转条件下制备的固氮酶复合物的结构

Rutledge, Hannah L; Cook, Brian D; Nguyen, Hoang P M; Herzik, Mark A Jr; Tezcan, F Akif

Microtubule polymerase and processive plus-end tracking functions originate from distinct features within TOG domain arrays

微管聚合酶和持续性正端追踪功能源于TOG结构域阵列中的不同特征。

Cook, Brian D; Chang, Fred; Flor-Parra, Ignacio; Al-Bassam, Jawdat

Structural basis of tubulin recruitment and assembly by microtubule polymerases with tumor overexpressed gene (TOG) domain arrays.

肿瘤过表达基因(TOG)结构域阵列介导的微管聚合酶募集和组装微管蛋白的结构基础

Nithianantham Stanley, Cook Brian D, Beans Madeleine, Guo Fei, Chang Fred, Al-Bassam Jawdat