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Action of a minimal contractile bactericidal nanomachine 期刊论文
NATURE, 2020, 580 (7805) : 658-+
作者:  Peng, Ruchao;  Xu, Xin;  Jing, Jiamei;  Wang, Min;  Peng, Qi;  Liu, Sheng;  Wu, Ying;  Bao, Xichen;  Wang, Peiyi;  Qi, Jianxun;  Gao, George F.;  Shi, Yi
收藏  |  浏览/下载:13/0  |  提交时间:2020/07/03

The authors report near-atomic resolution structures of the R-type bacteriocin from Pseudomonas aeruginosa in the pre-contraction and post-contraction states, and these structures provide insight into the mechanism of action of molecular syringes.


R-type bacteriocins are minimal contractile nanomachines that hold promise as precision antibiotics(1-4). Each bactericidal complex uses a collar to bridge a hollow tube with a contractile sheath loaded in a metastable state by a baseplate scaffold(1,2). Fine-tuning of such nucleic acid-free protein machines for precision medicine calls for an atomic description of the entire complex and contraction mechanism, which is not available from baseplate structures of the (DNA-containing) T4 bacteriophage(5). Here we report the atomic model of the complete R2 pyocin in its pre-contraction and post-contraction states, each containing 384 subunits of 11 unique atomic models of 10 gene products. Comparison of these structures suggests the following sequence of events during pyocin contraction: tail fibres trigger lateral dissociation of baseplate triplexes  the dissociation then initiates a cascade of events leading to sheath contraction  and this contraction converts chemical energy into mechanical force to drive the iron-tipped tube across the bacterial cell surface, killing the bacterium.


  
Grazing simplifies soil micro-food webs and decouples their relationships with ecosystem functions in grasslands 期刊论文
GLOBAL CHANGE BIOLOGY, 2019
作者:  Wang, Bing;  Wu, Liji;  Chen, Dima;  Wu, Ying;  Hu, Shuijin;  Li, Linghao;  Bai, Yongfei
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
functional groups  livestock grazing  Mongolian Plateau  soil carbon mineralization  soil environment  soil nitrogen mineralization  soil substrates  trophic levels  
中尺度过程对海洋上层水体溶解有机物迁移和转化的影响 项目
项目编号:41876074; 经费:620000(CNY); 起止日期:2019 / dc_date_end
项目负责人:  吴莹
收藏  |  浏览/下载:0/0  |  提交时间:2019/11/27