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关于鉴定产酸克雷伯菌支链淀粉酶非酰化变体中的II型分泌信号

Towards the identification of type II secretion signals in a nonacylated variant of pullulanase from Klebsiella oxytoca.

作者信息

Francetić Olivera, Pugsley Anthony P

机构信息

Molecular Genetics Unit, CNRS URA2172, Institut Pasteur, 25, rue du Dr. Roux, 75724 Paris CEDEX 15, France.

出版信息

J Bacteriol. 2005 Oct;187(20):7045-55. doi: 10.1128/JB.187.20.7045-7055.2005.

Abstract

Pullulanase (PulA) from the gram-negative bacterium Klebsiella oxytoca is a 116-kDa surface-anchored lipoprotein of the isoamylase family that allows growth on branched maltodextrin polymers. PulA is specifically secreted via a type II secretion system. PelBsp-PulA, a nonacylated variant of PulA made by replacing the lipoprotein signal peptide (sp) with the signal peptide of pectate lyase PelB from Erwinia chrysanthemi, was efficiently secreted into the medium. Two 80-amino-acid regions of PulA, designated A and B, were previously shown to promote secretion of beta-lactamase (BlaM) and endoglucanase CelZ fused to the C terminus. We show that A and B fused to the PelB signal peptide can also promote secretion of BlaM and CelZ but not that of nuclease NucB or several other reporter proteins. However, the deletion of most of region A or all of region B, either individually or together, had only a minor effect on PelBsp-PulA secretion. Four independent linker insertions between amino acids 234 and 324 in PelBsp-PulA abolished secretion. This part of PulA, region C, could contain part of the PulA secretion signal or be important for its correct presentation. Deletion of region C abolished PelBsp-PulA secretion without dramatically affecting its stability. PelBsp-PulA-NucB chimeras were secreted only if the PulA-NucB fusion point was located downstream from region C. The data show that at least three regions of PulA contain information that influences its secretion, depending on their context, and that some reporter proteins might contribute to the secretion of chimeras of which they are a part.

摘要

来自革兰氏阴性菌产酸克雷伯菌的支链淀粉酶(PulA)是一种116千道尔顿的、锚定在表面的异淀粉酶家族脂蛋白,它能使细菌在支链麦芽糊精聚合物上生长。PulA通过II型分泌系统特异性分泌。PelBsp-PulA是PulA的一种非酰化变体,通过用来自菊欧文氏菌的果胶酸裂解酶PelB的信号肽替换脂蛋白信号肽(sp)而制成,它能有效地分泌到培养基中。PulA的两个80个氨基酸的区域,分别命名为A和B,先前已显示能促进与C末端融合的β-内酰胺酶(BlaM)和内切葡聚糖酶CelZ的分泌。我们发现,与PelB信号肽融合的A和B也能促进BlaM和CelZ的分泌,但不能促进核酸酶NucB或其他几种报告蛋白的分泌。然而,单独或一起删除区域A的大部分或区域B的全部,对PelBsp-PulA的分泌只有轻微影响。在PelBsp-PulA的氨基酸234和324之间进行的四个独立的接头插入消除了分泌。PulA的这一部分,即区域C,可能包含PulA分泌信号的一部分,或者对其正确呈现很重要。删除区域C消除了PelBsp-PulA的分泌,但没有显著影响其稳定性。只有当PulA-NucB融合点位于区域C下游时,PelBsp-PulA-NucB嵌合体才会被分泌。数据表明,PulA的至少三个区域包含影响其分泌的信息,这取决于它们的上下文,并且一些报告蛋白可能有助于它们作为一部分的嵌合体的分泌。

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