Long-range (>10 μm) transport of electrons along networks of Geobacter sulfurreducens protein filaments, known as microbial nanowires, has been invoked to explain a wide range of globally important redox phenomena. These nanowires were previously thought to be type IV pili composed of PilA protein. Here, we report a 3.7 à resolution cryoelectron microscopy structure, which surprisingly reveals that, rather than PilA, G. sulfurreducens nanowires are assembled by micrometer-long polymerization of the hexaheme cytochrome OmcS, with hemes packed within â¼3.5-6 à of each other. The inter-subunit interfaces show unique structural elements such as inter-subunit parallel-stacked hemes and axial coordination of heme by histidines from neighboring subunits. Wild-type OmcS filaments show 100-fold greater conductivity than other filaments from a ÎomcS strain, highlighting the importance of OmcS to conductivity in these nanowires. This structure explains the remarkable capacity of soil bacteria to transport electrons to remote electron acceptors for respiration and energy sharing.
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
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作者: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
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2019 | 起止号: | 2019 Apr 4; 177(2):361-369 |
| doi: | 10.1016/j.cell.2019.03.029 | 研究方向: | 微生物学 |
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