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

Mechanistic and Molecular Dynamics Studies Reveal that Increased Loop 3 Mobility Alters Substrate Capture in an NADH:Quinone Oxidoreductase

机制和分子动力学研究表明,环3流动性的增加会改变NADH:醌氧化还原酶中的底物捕获。

Dratch, Benjamin D; Ouedraogo, Daniel; Ball, Jacob; Hamelberg, Donald; Gadda, Giovanni

Identifying and controlling inactive and active conformations of a serine protease

识别和控制丝氨酸蛋白酶的非活性和活性构象

Lee, Eunjeong; Tran, Norman; Redzic, Jasmina S; Singh, Harmanpreet; Alamillo, Lorena; Holyoak, Todd; Hamelberg, Donald; Eisenmesser, Elan Zohar

Uncovering the Role of Distal Regions in PDK1 Allosteric Activation

揭示远端区域在PDK1变构激活中的作用

Mulpuri, Nagaraju; Yao, Xin-Qiu; Hamelberg, Donald

Chemical and Genetic Validation of an Essential Calcium Entry Channel of Trypanosoma brucei as a Therapeutic Target

锥虫必需钙离子内流通道作为治疗靶点的化学和遗传学验证

Huang, Guozhong; Singh, Harmanpreet; Singh, Priti; Varshnaya, Rohit Kumar; Hamelberg, Donald; Wang, Binghe; Docampo, Roberto

Entry Inhibitors of SARS-CoV-2 Targeting the Transmembrane Domain of the Spike Protein.

针对SARS-CoV-2刺突蛋白跨膜结构域的入侵抑制剂

Lyles Kristin V, Stone Shannon, Singh Priti, Patterson Lila D, Natekar Janhavi, Pathak Heather, Varshnaya Rohit K, Elsharkawy Amany, Liu Dongning, Bansal Shubham, Faniyi Oluwafoyinsola O, Tang Sijia, Yang Xiaoxiao, Mulpuri Nagaraju, Hamelberg Donald, Kang Congbao, Wang Binghe, Kumar Mukesh, Luo Ming

Dissecting the Allosteric Fine-Tuning of Enzyme Catalysis

剖析酶催化的变构微调

Yao, Xin-Qiu; Hamelberg, Donald

Evolving Mutational Buildup in HIV-1 Protease Shifts Conformational Dynamics to Gain Drug Resistance

HIV-1蛋白酶中不断积累的突变会改变其构象动力学,从而获得耐药性。

Souffrant, Michael; Yao, Xin-Qiu; Hamelberg, Donald

Structural Mechanism of Cooperative Regulation of Calcium-Sensing Receptor-Mediated Cellular Signaling

钙敏感受体介导的细胞信号协同调控的结构机制

Deng, Xiaonan; Xin, Yao; Miller, Cassandra Lynn; Hamelberg, Donald; Kirberger, Michael; Moremen, Kelley W; Hu, Jian; Yang, Jenny J

Synergistic mutations in soluble guanylyl cyclase (sGC) reveal a key role for interfacial regions in the sGC activation mechanism.

可溶性鸟苷酸环化酶 (sGC) 的协同突变揭示了界面区域在 sGC 激活机制中的关键作用

Childers Kenneth C, Yao Xin-Qiu, Giannakoulias Sam, Amason Joshua, Hamelberg Donald, Garcin Elsa D

Design, synthesis and biological evaluation of di-substituted noscapine analogs as potent and microtubule-targeted anticancer agents

设计、合成和生物学评价二取代那可汀类似物作为强效微管靶向抗癌剂

Mishra, Ram C; Gundala, Sushma R; Karna, Prasanthi; Lopus, Manu; Gupta, Kamlesh K; Nagaraju, Mulpuri; Hamelberg, Donald; Tandon, Vibha; Panda, Dulal; Reid, Michelle D; Aneja, Ritu