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

A widespread and ancient bacterial machinery assembles cytochrome OmcS nanowires essential for extracellular electron transfer.

一种广泛存在且古老的细菌机制组装细胞色素 OmcS 纳米线,这是细胞外电子传递所必需的

Shen Cong, Salazar-Morales Aldo I, Jung Wonhyeuk, Erwin Joey, Gu Yangqi, Coelho Anthony, Gupta Kallol, Yalcin Sibel Ebru, Samatey Fadel A, Malvankar Nikhil S

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

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

Structure of Microbial Nanowires Reveals Stacked Hemes that Transport Electrons over Micrometers.

微生物纳米线的结构揭示了堆叠的血红素在微米尺度上传输电子

Wang Fengbin, Gu Yangqi, O'Brien J Patrick, Yi Sophia M, Yalcin Sibel Ebru, Srikanth Vishok, Shen Cong, Vu Dennis, Ing Nicole L, Hochbaum Allon I, Egelman Edward H, Malvankar Nikhil S