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二聚体 colicin M 免疫蛋白的晶体结构显示出三维结构域交换。

The crystal structure of the dimeric colicin M immunity protein displays a 3D domain swap.

机构信息

Instituto de Biología Molecular de Barcelona, Barcelona, Spain.

出版信息

J Struct Biol. 2012 Apr;178(1):45-53. doi: 10.1016/j.jsb.2012.02.004. Epub 2012 Feb 16.

Abstract

Bacteriocins are proteins secreted by many bacterial cells to kill related bacteria of the same niche. To avoid their own suicide through reuptake of secreted bacteriocins, these bacteria protect themselves by co-expression of immunity proteins in the compartment of colicin destination. In Escherichia coli the colicin M (Cma) is inactivated by the interaction with the Cma immunity protein (Cmi). We have crystallized and solved the structure of Cmi at a resolution of 1.95Å by the recently developed ab initio phasing program ARCIMBOLDO. The monomeric structure of the mature 10kDa protein comprises a long N-terminal α-helix and a four-stranded C-terminal β-sheet. Dimerization of this fold is mediated by an extended interface of hydrogen bond interactions between the α-helix and the four-stranded β-sheet of the symmetry related molecule. Two intermolecular disulfide bridges covalently connect this dimer to further lock this complex. The Cmi protein resembles an example of a 3D domain swapping being stalled through physical linkage. The dimer is a highly charged complex with a significant surplus of negative charges presumably responsible for interactions with Cma. Dimerization of Cmi was also demonstrated to occur in vivo. Although the Cmi-Cma complex is unique among bacteria, the general fold of Cmi is representative for a class of YebF-like proteins which are known to be secreted into the external medium by some Gram-negative bacteria.

摘要

细菌素是许多细菌细胞分泌的蛋白质,用于杀死同一生态位的相关细菌。为了避免通过重新摄取分泌的细菌素而自杀,这些细菌通过在大肠菌素靶位的隔室中共同表达免疫蛋白来保护自己。在大肠杆菌中,肠菌素 M(Cma)通过与 Cma 免疫蛋白(Cmi)的相互作用而失活。我们使用最近开发的从头算相角程序 ARCIMBOLDO 结晶并解析了 Cmi 的结构,分辨率为 1.95Å。成熟的 10kDa 蛋白的单体结构包含一个长的 N 端α-螺旋和一个四链 C 端β-折叠。这种折叠的二聚化是通过与对称相关分子的α-螺旋和四链β-折叠之间的氢键相互作用的扩展界面介导的。两个分子间二硫键共价连接该二聚体以进一步锁定该复合物。Cmi 蛋白类似于通过物理连接而停滞的 3D 结构域交换的一个例子。二聚体是一个带高电荷的复杂体,具有显著过剩的负电荷,可能负责与 Cma 的相互作用。体内也证明了 Cmi 的二聚化发生。尽管 Cmi-Cma 复合物在细菌中是独特的,但 Cmi 的一般折叠代表了一类 YebF 样蛋白,已知某些革兰氏阴性细菌将其分泌到外部介质中。

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