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Additive Effect on Intracellular Growth by Legionella pneumophila Icm/Dot Proteins Containing a Lipobox Motif

机译:含脂盒主题的嗜肺军团杆菌Icm /点蛋白对细胞内生长的累加效应

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摘要

Legionella pneumophila, the causative agent of Legionnaires' disease, utilizes a type IVB secretion system to subvert its host cells and grow intracellularly. This type IV secretion system is composed of 25 icm (or dot) genes that probably constitute parts of a secretion complex as well as more than 30 proteins that are translocated via this system into the host cells. Three of the Icm/Dot proteins (DotD, DotC, and IcmN) contain a lipobox motif at their N terminals and are predicted to be lipoproteins. Two of these lipoproteins (DotD and DotC) were found to be essential for intracellular growth in both HL-60-derived human macrophages and in the protozoan host Acanthamoeba castellanii, while the third lipoprotein (IcmN) was found to be partially required for intracellular growth only in A. castellanii. Mutation analysis of the lipobox cysteine residue, which was shown previously to be indispensable for the lipobox function, indicated that both DotC and DotD are partially functional without this conserved residue. Cysteine mutations in both DotC and DotD or in DotC together with an icmN deletion or in DotD together with an icmN deletion were found to be additive, indicating that each of these lipoproteins performs its function independently from the others. Analysis of the transcriptional regulation of both the dotDC operon and the icmN gene revealed that both had higher levels of expression at stationary phase which were partially dependent on the LetA regulator. Our results indicate that the lipoproteins of the L. pneumophila icm (or dot) system are essential components of the secretion system and that they perform their functions independently.
机译:退伍军人病菌是军团菌病的病原体,它利用IVB型分泌系统破坏其宿主细胞并在细胞内生长。这种IV型分泌系统由25个icm(或点)基因(可能构成分泌复合物的一部分)以及30多种蛋白质组成,这些蛋白质通过该系统转移到宿主细胞中。 Icm / Dot蛋白中的三个(DotD,DotC和IcmN)在其N端包含一个脂盒基序,并被预测为脂蛋白。发现这些脂蛋白中的两种(DotD和DotC)对于HL-60衍生的人类巨噬细胞和原生动物宿主棘孢棘皮虫的细胞内生长必不可少,而第三种脂蛋白(IcmN)被认为是细胞内生长的部分必需物质仅在castellanii。脂质盒半胱氨酸残基的突变分析先前显示对于脂质盒功能是必不可少的,表明没有该保守残基的DotC和DotD均具有部分功能。发现在DotC和DotD或DotC中的半胱氨酸突变以及icmN缺失,或者在DotD中的半胱氨酸突变与icmN缺失是可累加的,这表明这些脂蛋白中的每一个都独立于其他脂蛋白执行其功能。对dotDC操纵子和icmN基因的转录调控的分析表明,两者在固定相上均具有较高的表达水平,这部分取决于LetA调控子。我们的结果表明,嗜肺乳杆菌icm(或斑点)系统的脂蛋白是分泌系统的重要组成部分,它们独立执行其功能。

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