首页> 美国卫生研究院文献>Journal of Bacteriology >The TadV Protein of Actinobacillus actinomycetemcomitans Is a Novel Aspartic Acid Prepilin Peptidase Required for Maturation of the Flp1 Pilin and TadE and TadF Pseudopilins
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The TadV Protein of Actinobacillus actinomycetemcomitans Is a Novel Aspartic Acid Prepilin Peptidase Required for Maturation of the Flp1 Pilin and TadE and TadF Pseudopilins

机译:放线放线杆菌的TadV蛋白是一种新型的天冬氨酸前毛蛋白肽酶对于Flp1蛋白和TadE和TadF假毛蛋白的成熟都需要

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摘要

The tad locus of Actinobacillus actinomycetemcomitans encodes genes for the biogenesis of Flp pili, which allow the bacterium to adhere tenaciously to surfaces and form strong biofilms. Although tad (tight adherence) loci are widespread among bacterial and archaeal species, very little is known about the functions of the individual components of the Tad secretion apparatus. Here we characterize the mechanism by which the pre-Flp1 prepilin is processed to the mature pilus subunit. We demonstrate that the tadV gene encodes a prepilin peptidase that is both necessary and sufficient for proteolytic maturation of Flp1. TadV was also found to be required for maturation of the TadE and TadF pilin-like proteins, which we term pseudopilins. Using site-directed mutagenesis, we show that processing of pre-Flp1, pre-TadE, and pre-TadF is required for biofilm formation. Mutation of a highly conserved glutamic acid residue at position +5 of Flp1, relative to the cleavage site, resulted in a processed pilin that was blocked in assembly. In contrast, identical mutations in TadE or TadF had no effect on biofilm formation, indicating that the mechanisms by which Flp1 pilin and the pseudopilins function are distinct. We also determined that two conserved aspartic acid residues in TadV are critical for function of the prepilin peptidase. Together, our results indicate that the A. actinomycetemcomitans TadV protein is a member of a novel subclass of nonmethylating aspartic acid prepilin peptidases.
机译:放线放线杆菌的tad位点编码Fl​​p菌毛的生物发生基因,使细菌牢固地附着在表面并形成牢固的生物膜。尽管tad(紧密粘附)基因座广泛分布于细菌和古细菌物种中,但对Tad分泌装置各个组件的功能知之甚少。在这里,我们表征机制的机制,其中前Flp1 prepilin被处理为成熟的菌毛亚基。我们证明了tadV基因编码一个prepilin肽酶,对于Flp1的蛋白水解成熟既是必需的又是足够的。还发现TadV是TadE和TadF菌毛蛋白样蛋白(我们称为假菌毛蛋白)成熟所必需的。使用定点诱变,我们表明生物膜形成需要pre-Flp1,pre-TadE和pre-TadF的处理。相对于切割位点,Flp1 +5位置的高度保守的谷氨酸残基发生突变,导致加工后的菌毛蛋白在装配中被阻断。相反,TadE或TadF中相同的突变对生物膜的形成没有影响,表明Flp1菌毛蛋白和假菌毛蛋白功能的机制是不同的。我们还确定了TadV中两个保守的天冬氨酸残基对于prepilin肽酶的功能至关重要。在一起,我们的结果表明,放线放线杆菌TadV蛋白是非甲基化天冬氨酸前毛蛋白肽酶的一个新的亚类的成员。

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