Dailey Frank E, Macnab Robert M
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520-8114, USA.
J Bacteriol. 2002 Feb;184(3):771-6. doi: 10.1128/JB.184.3.771-776.2002.
Flagellar assembly requires the expression of a large number of flagellum-specific genes. However, mutations in a number of other genes in Salmonella and Escherichia coli have been shown to have pleiotropic effects that affect flagellar assembly. FlgH (the L-ring subunit of the flagellar basal body) is a lipoprotein whose modification is important for L-ring assembly. We therefore tested whether the lack of motility of Salmonella mutants defective in lipoprotein biogenesis is a result of inability to modify FlgH. Our results show that temperature-sensitive apolipoprotein N-acyltransferase [lnt(Ts)] mutants are nonflagellate at 42 degrees C. However, the flagellar assembly defect occurs at a much earlier step in the pathway than L-ring assembly. These mutants failed to assemble even an MS ring, presumably because of the observed decrease in transcription of fliF. In contrast, temperature-sensitive diacylglycerol transferase [lgt(Ts)] mutants were motile at 42 degrees C, provided the strains carried an lpp (Braun lipoprotein) mutation to permit growth. We have isolated second-site mutants from an lgt(Ts) lpp(+) strain that grow but are nonflagellate at 42 degrees C. Thus, lipoprotein biogenesis is a factor that is important for flagellar assembly.
鞭毛组装需要大量鞭毛特异性基因的表达。然而,已表明沙门氏菌和大肠杆菌中许多其他基因的突变具有影响鞭毛组装的多效性作用。FlgH(鞭毛基体的L环亚基)是一种脂蛋白,其修饰对于L环组装很重要。因此,我们测试了脂蛋白生物合成缺陷的沙门氏菌突变体缺乏运动性是否是由于无法修饰FlgH所致。我们的结果表明,温度敏感型载脂蛋白N-酰基转移酶[lnt(Ts)]突变体在42℃时无鞭毛。然而,鞭毛组装缺陷发生在该途径中比L环组装更早的步骤。这些突变体甚至未能组装MS环,可能是因为观察到fliF转录减少。相比之下,温度敏感型二酰基甘油转移酶[lgt(Ts)]突变体在42℃时具有运动性,前提是菌株携带lpp( Braun脂蛋白)突变以允许生长。我们从lgt(Ts) lpp(+)菌株中分离出了第二位点突变体,这些突变体在42℃时生长但无鞭毛。因此,脂蛋白生物合成是鞭毛组装的一个重要因素。