首页> 美国卫生研究院文献>Journal of Bacteriology >Physiological and biochemical analyses of FlgH a lipoprotein forming the outer membrane L ring of the flagellar basal body of Salmonella typhimurium.
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Physiological and biochemical analyses of FlgH a lipoprotein forming the outer membrane L ring of the flagellar basal body of Salmonella typhimurium.

机译:FlgH(一种形成鼠伤寒沙门氏菌鞭毛基体外膜L环的脂蛋白)的生理生化分析。

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摘要

The FlgH protein of Salmonella typhimurium, from which the outer membrane L ring of the flagellar basal body is constructed, has a consensus motif (LTG C) for lipoylation and signal peptide cleavage. We have confirmed the previous finding (M. Homma, K. Ohnishi, T. Iino, and R. M. Macnab, J. Bacteriol. 169:3617-3624, 1987) that it is synthesized in precursor form and processed to a mature form with an apparent molecular mass of ca. 25 kDa. flgH alleles with an in-frame deletion or a 3' truncation still permitted processing. The deletion permitted partial restoration of motility in complementation tests, whereas the truncation did not. Globomycin, an antibiotic which inhibits signal peptide cleavage of prolipoproteins, caused accumulation of precursor forms of FlgH. When cells transformed with a plasmid containing the flgH gene were grown in the presence of [3H]palmitate, a 25-kDa protein doublet was found to be radiolabeled; its identity as FlgH was confirmed by shifts in mobility when the internally deleted and truncated alleles of the gene were used. Hook-basal body complexes from cells grown in the presence of [3H]palmitate demonstrated that FlgH incorporated into flagellar structure was also labeled. An in-frame fusion between the leader sequence of the periplasmic protein PeIB and the mature FlgH sequence, with the putative N-terminal cysteine replaced by glycine, resulted in production of a fusion protein that was processed to its mature form. With a low-copy-number plasmid, the ability of this pelB-flgH fusion to complement a flgH mutant was poor, but with a high-copy-number plasmid, it was comparable to that of the wild type. Although lacking the N-terminal cysteine and therefore being incapable of lipoylation via a thioether linkage, the mutant protein still incorporated [3H]palmitate at low levels, perhaps through acylation of the N-terminal alpha-amino group. We conclude that FlgH is a lipoprotein and that under normal physiological conditions the lipoyl modification is necessary for FlgH to function properly as the L-ring protein of the flagellar basal body. We suggest that the N terminus of FlgH is responsible for anchoring the basal body in the outer membrane and that the C terminus may be responsible for binding to the P ring to form the L,P-ring complex.
机译:鼠伤寒沙门氏菌的FlgH蛋白构成鞭毛基体的外膜L环,该蛋白具有用于脂酰化和信号肽裂解的共有基序(LTG C)。我们已经确认了先前的发现(M. Homma,K。Ohnishi,T。Iino和RM Macnab,J。Bacteriol。169:3617-3624,1987),它是以前体形式合成并加工成具有约表观分子量25 kDa。具有框内缺失或3'截短的flgH等位基因仍允许处理。在互补试验中,该删除允许部分恢复活力,而截短则不允许。球霉素,一种抑制前脂蛋白信号肽裂解的抗生素,导致FlgH的前体形式积累。当用含有flgH基因的质粒转化的细胞在[3H]棕榈酸酯的存在下生长时,发现25 kDa的蛋白质双峰被放射性标记。当使用基因的内部缺失和截短的等位基因时,通过迁移率的变化证实了其作为FlgH的身份。来自在[3H]棕榈酸酯存在下生长的细胞的钩基体复合物表明掺入鞭毛结构的FlgH也被标记。在周质蛋白PeIB的前导序列与成熟的FlgH序列之间进行符合读框的融合,并用甘氨酸替代假定的N端半胱氨酸,从而产生了融合蛋白,可加工成其成熟形式。对于低拷贝数的质粒,这种pelB-flgH融合体与flgH突变体互补的能力较弱,但对于高拷贝数的质粒,其与野生型相当。尽管缺少N端半胱氨酸,因此无法通过硫醚键进行脂酰化,但突变蛋白仍可能以低水平掺入[3H]棕榈酸酯,也许是通过N端α-氨基的酰化作用而实现的。我们得出的结论是FlgH是一种脂蛋白,在正常的生理条件下,脂基修饰对于FlgH正常发挥鞭毛基体的L环蛋白是必要的。我们建议FlgH的N末端负责将基体锚定在外膜中,而C末端可能负责与P环结合形成L,P环复合物。

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