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IncI1质粒ColIb-P9和R64细菌毛的纯化与特性分析:IV型菌毛形成PilV特异性细胞聚集体

Purification and characterization of thin pili of IncI1 plasmids ColIb-P9 and R64: formation of PilV-specific cell aggregates by type IV pili.

作者信息

Yoshida T, Furuya N, Ishikura M, Isobe T, Haino-Fukushima K, Ogawa T, Komano T

机构信息

Department of Biology, Tokyo Metropolitan University, Minamiohsawa, Hachioji, Tokyo 192-0397, Japan.

出版信息

J Bacteriol. 1998 Jun;180(11):2842-8. doi: 10.1128/JB.180.11.2842-2848.1998.

Abstract

Thin pili of the closely related IncI1 plasmids ColIb-P9 and R64 are required only for liquid mating and belong to the type IV family of pili. They were sedimented by ultracentrifugation from culture medium in which Escherichia coli cells harboring ColIb-P9- or R64-derived plasmids had been grown, and then the pili were purified by CsCl density gradient centrifugation. In negatively stained thin pilus samples, long rods with a diameter of 6 nm, characteristic of type IV pili, were observed under an electron microscope. Gel electrophoretic analysis of purified ColIb-P9 thin pili indicated that thin pili consist of two kinds of proteins, pilin and the PilV protein. Pilin was demonstrated to be the product of the pilS gene. Pilin was first synthesized as a 22-kDa prepilin from the pilS gene and subsequently processed to a 19-kDa protein by the function of the pilU product. The N-terminal amino group of the processed protein was shown to be modified. The C-terminal segments of the pilV products vary among six or seven different types, as a result of shufflon DNA rearrangements of the pilV gene. These PilV proteins were revealed to comprise a minor component of thin pili. Formation of PilV-specific cell aggregates by ColIb-P9 and R64 thin pili was demonstrated and may play an important role in liquid mating.

摘要

密切相关的IncI1质粒ColIb-P9和R64的细菌毛仅在液体交配时需要,属于IV型菌毛家族。它们通过超速离心从含有ColIb-P9或R64衍生质粒的大肠杆菌细胞生长的培养基中沉淀出来,然后通过氯化铯密度梯度离心纯化菌毛。在负染色的细菌毛样品中,在电子显微镜下观察到直径为6nm的长杆,这是IV型菌毛的特征。对纯化的ColIb-P9细菌毛进行凝胶电泳分析表明,细菌毛由两种蛋白质组成,菌毛蛋白和PilV蛋白。菌毛蛋白被证明是pilS基因的产物。菌毛蛋白首先作为来自pilS基因的22kDa前菌毛蛋白合成,随后通过pilU产物的功能加工成19kDa的蛋白质。加工后的蛋白质的N末端氨基被显示发生了修饰。由于pilV基因的洗牌子DNA重排,pilV产物的C末端片段在六种或七种不同类型中有所不同。这些PilV蛋白被发现是细菌毛的次要成分。ColIb-P9和R64细菌毛形成PilV特异性细胞聚集体得到了证实,并且可能在液体交配中起重要作用。

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