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

Hydration-mediated G-protein-coupled receptor activation

水合作用介导的G蛋白偶联受体激活

Fried, Steven D E; Hewage, Kushani S K; Eitel, Anna R; Struts, Andrey V; Weerasinghe, Nipuna; Perera, Suchithranga M D C; Brown, Michael F

Synthesis of 9-CD(3)-9-cis-Retinal Cofactor of Isorhodopsin

异视紫红质9-CD(3)-9-顺式-视黄醛辅因子的合成

Navidi, Mozhgan; Yadav, Shreya; Struts, Andrey V; Brown, Michael F; Nesnas, Nasri

CONDENSED-MATTER SPECTROSCOPY SPECTRAL METHODS FOR STUDY OF THE G-PROTEIN-COUPLED RECEPTOR RHODOPSIN. II. MAGNETIC RESONANCE METHODS

凝聚态光谱学:研究G蛋白偶联受体视紫红质的光谱方法。II. 磁共振方法

Struts, A V; Barmasov, A V; Brown, M F

SPECTRAL METHODS FOR STUDY OF THE G-PROTEIN-COUPLED RECEPTOR RHODOPSIN. I. VIBRATIONAL AND ELECTRONIC SPECTROSCOPY

用于研究G蛋白偶联受体视紫红质的光谱方法。I. 振动光谱和电子光谱

Struts, A V; Barmasov, A V; Brown, M F

Investigation of rhodopsin dynamics in its signaling state by solid-state deuterium NMR spectroscopy

利用固态氘核磁共振光谱研究信号状态下的视紫红质动力学

Andrey V Struts, Udeep Chawla, Suchithranga M D C Perera, Michael F Brown

Molecular simulations and solid-state NMR investigate dynamical structure in rhodopsin activation

分子模拟和固态核磁共振研究视紫红质激活过程中的动态结构

Mertz, Blake; Struts, Andrey V; Feller, Scott E; Brown, Michael F

Retinal dynamics underlie its switch from inverse agonist to agonist during rhodopsin activation

视网膜动力学是视紫红质激活过程中其从反向激动剂转变为激动剂的基础。

Struts, Andrey V; Salgado, Gilmar F J; Martínez-Mayorga, Karina; Brown, Michael F

Phase separation in binary mixtures of bipolar and monopolar lipid dispersions revealed by 2H NMR spectroscopy, small angle x-ray scattering, and molecular theory

利用 2H 核磁共振波谱、小角 X 射线散射和分子理论揭示双极性和单极性脂质分散体二元混合物中的相分离

Brownholland, David P; Longo, Gabriel S; Struts, Andrey V; Justice, Matthew J; Szleifer, Igal; Petrache, Horia I; Brown, Michael F; Thompson, David H