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

Transient protein structure guides surface diffusion pathways for electron transport in membrane supercomplexes

瞬态蛋白质结构引导膜超复合物中电子传递的表面扩散路径

Chan, Chun Kit; Nguyen, Jonathan; Hryc, Corey F; Gupta, Chitrak; Guberman-Pfeffer, Matthew J; Redding, Kevin; Dowhan, William; Baker, Matthew L; Perez, Alberto; Mileykovskaya, Eugenia; Singharoy, Abhishek

ProPrep: An Interactive and Instructional Interface for Proper Protein Preparation with AMBER

ProPrep:一款用于正确制备蛋白质的交互式指导界面,支持 AMBER 技术

Walker, Adara; Guberman-Pfeffer, Matthew J

Cytochrome "nanowires" are physically limited to sub-picoamp currents that suffice for cellular respiration

细胞色素“纳米线”的物理特性限制了其电流,使其只能产生亚皮安级的电流,但这足以满足细胞呼吸的需求。

Guberman-Pfeffer, Matthew J; Herron, Caleb L

Universal pictures: A lithophane codex helps teenagers with blindness visualize nanoscopic systems

环球影业:一种光刻石典籍帮助失明青少年可视化纳米系统

Alonzo, Emily A; Lato, Travis J; Gonzalez, Mayte; Olson, Trevor L; Savage, Quentin R; Garza, Levi N; Green, Morgan T; Koone, Jordan C; Cook, Noah E; Dashnaw, Chad M; Armstrong, Darren B; Wood, John L; Garbrecht, Lisa S; Haynes, Madeline L; Jacobson, Miriam R; Guberman-Pfeffer, Matthew J; Minkara, Mona S; Wedler, Hoby B; Zechmann, Bernd; Shaw, Bryan F

Delineating redox cooperativity in water-soluble and membrane multiheme cytochromes through protein design

通过蛋白质设计阐明水溶性和膜多血红素细胞色素中的氧化还原协同性

Hardy, Benjamin J; Dubiel, Paulina; Bungay, Ethan L; Rudin, May; Williams, Christopher; Arthur, Christopher J; Guberman-Pfeffer, Matthew J; Sofia Oliveira, A; Curnow, Paul; Anderson, J L Ross

To be or not to be a cytochrome: electrical characterizations are inconsistent with Geobacter cytochrome 'nanowires'

究竟是不是细胞色素:电学特性与地杆菌细胞色素“纳米线”不一致

Guberman-Pfeffer, Matthew J

Proton-coupled electron transfer at a mis-metalated zinc site detected with protein charge ladders

利用蛋白质电荷梯检测到错配金属化锌位点的质子耦合电子转移

Gonzalez, Mayte; Guberman-Pfeffer, Matthew J; Koone, Jordan C; Dashnaw, Chad M; Lato, Travis J; Shaw, Bryan F

Structure of Geobacter cytochrome OmcZ identifies mechanism of nanowire assembly and conductivity

地杆菌细胞色素 OmcZ 的结构揭示了纳米线组装和导电机制。

Gu, Yangqi; Guberman-Pfeffer, Matthew J; Srikanth, Vishok; Shen, Cong; Giska, Fabian; Gupta, Kallol; Londer, Yuri; Samatey, Fadel A; Batista, Victor S; Malvankar, Nikhil S

Microbial biofilms as living photoconductors due to ultrafast electron transfer in cytochrome OmcS nanowires

微生物生物膜由于细胞色素OmcS纳米线中的超快电子转移而成为活体光导体

Neu, Jens; Shipps, Catharine C; Guberman-Pfeffer, Matthew J; Shen, Cong; Srikanth, Vishok; Spies, Jacob A; Kirchhofer, Nathan D; Yalcin, Sibel Ebru; Brudvig, Gary W; Batista, Victor S; Malvankar, Nikhil S

A 300-fold conductivity increase in microbial cytochrome nanowires due to temperature-induced restructuring of hydrogen bonding networks

由于温度诱导的氢键网络重组,微生物细胞色素纳米线的导电性提高了300倍。

Dahl, Peter J; Yi, Sophia M; Gu, Yangqi; Acharya, Atanu; Shipps, Catharine; Neu, Jens; O'Brien, J Patrick; Morzan, Uriel N; Chaudhuri, Subhajyoti; Guberman-Pfeffer, Matthew J; Vu, Dennis; Yalcin, Sibel Ebru; Batista, Victor S; Malvankar, Nikhil S