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鞭毛组装过程中不同物种间鞭毛蛋白(FliC)和帽蛋白(FliD)的可交换性。

Exchangeability of the flagellin (FliC) and the cap protein (FliD) among different species in flagellar assembly.

作者信息

Inaba Satoshi, Hashimoto Manami, Jyot Jeevan, Aizawa Shin-Ichi

机构信息

Department of Life Sciences, Prefectural University of Hiroshima, 562 Nanatsuka, Shobara, Hiroshima 727-0023, Japan.

出版信息

Biopolymers. 2013 Jan;99(1):63-72. doi: 10.1002/bip.22141.

Abstract

Flagellar filament self-assembles from the component protein, flagellin or FliC, with the aid of the capping protein, HAP2 or FliD. Depending on the helical parameters of filaments, flagella from various species are divided into three groups, family I, II, and III. Each family coincides with the traditional classification of flagella, peritrichous flagella, polar flagella, and lateral flagella, respectively. To elucidate the physico-chemical properties of flagellin to separate families, we chose family I flagella and family II flagella and examined how well the exchangeability of a combination of FliC and/or FliD from different families is kept in filament formation. FliC or FliD of Salmonella enterica serovar Typhimurium (Salty; family I) were exchanged with those of Escherichia coli (Escco; family I) or Pseudomonas aeruginosa (Pseae; family II). In a Salty fliC deletion mutant, Escco FliC formed short filaments, but Pseae FliC did not form filaments. In a Salty fliD deletion mutant, both Escco FliD and Pseae FliD allowed Salty FliC to polymerize into short filaments. In conclusion, FliC can be exchanged among the same family but not between different families, while FliD serves as the cap protein even in different families, confirming that FliC is essential for determining families, but FliD plays a subsidiary role in filament formation.

摘要

鞭毛丝在封端蛋白HAP2或FliD的帮助下,由鞭毛蛋白或FliC这一组成蛋白自组装而成。根据鞭毛丝的螺旋参数,不同物种的鞭毛可分为三组,即I族、II族和III族。每个族分别与传统的鞭毛分类相对应,即周生鞭毛、极生鞭毛和侧生鞭毛。为了阐明鞭毛蛋白区分不同族的物理化学性质,我们选择了I族鞭毛和II族鞭毛,并研究了来自不同族的FliC和/或FliD组合在丝状体形成过程中的可交换性保持得如何。鼠伤寒沙门氏菌(Salty;I族)的FliC或FliD被换成了大肠杆菌(Escco;I族)或铜绿假单胞菌(Pseae;II族)的FliC或FliD。在Salty fliC缺失突变体中,Escco FliC形成了短丝,但Pseae FliC没有形成丝。在Salty fliD缺失突变体中,Escco FliD和Pseae FliD都能使Salty FliC聚合成短丝。总之,FliC可以在同一家族内交换,但不能在不同家族之间交换,而FliD即使在不同家族中也作为封端蛋白,这证实了FliC对于确定家族至关重要,但FliD在丝状体形成中起辅助作用。

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