Kanto S, Okino H, Aizawa S, Yamaguchi S
ERATO, Research Development Corporation of Japan, Ibaraki.
J Mol Biol. 1991 Jun 5;219(3):471-80. doi: 10.1016/0022-2836(91)90187-b.
The shape of the flagellar filaments of the bacterium Salmonella typhimurium under ordinary conditions is a left-handed helix. In addition to the normal wild-type filament, non-helical (i.e. straight), right-handed helical (early), or circular (semi-coiled and coiled) filaments and filament with small amplitude (fl-type) have been found in mutants or in filaments reconstituted in vitro. We analysed wild-type flagellin and flagellins from 17 flagellar-shape mutants (6 with straight filaments, 6 with curly filaments, 4 with coiled filaments and 1 with fl-type filament) by amino acid sequencing to identify the mutational sites. All mutant flagellins except that of the fl-type filament had single mutations; the fl-type flagellin had two mutations in the molecule. The sites of these mutations were localized in alpha-helical segments of the terminal regions of flagellin. A possible mechanism of the polymorphism of the flagellar filament is discussed.
在正常条件下,鼠伤寒沙门氏菌的鞭毛丝形状为左手螺旋。除了正常的野生型鞭毛丝外,在突变体或体外重组的鞭毛丝中还发现了非螺旋状(即直的)、右手螺旋状(早期)、圆形(半卷曲和卷曲)的鞭毛丝以及小振幅鞭毛丝(fl型)。我们通过氨基酸测序分析了野生型鞭毛蛋白以及来自17个鞭毛形状突变体(6个具有直鞭毛丝、6个具有卷曲鞭毛丝、4个具有卷曲鞭毛丝和1个具有fl型鞭毛丝)的鞭毛蛋白,以确定突变位点。除fl型鞭毛丝的鞭毛蛋白外,所有突变体鞭毛蛋白都有单个突变;fl型鞭毛蛋白分子中有两个突变。这些突变位点位于鞭毛蛋白末端区域的α螺旋段。文中讨论了鞭毛丝多态性的可能机制。