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外膜蛋白A信号肽突变对其分泌、合成及组装的影响。

Effect of OmpA signal peptide mutations on OmpA secretion, synthesis, and assembly.

作者信息

Tanji Y, Gennity J, Pollitt S, Inouye M

机构信息

Department of Biochemistry, Robert Wood Johnson Medical School, University of Medicine and Dentistry of New Jersey, Piscataway 08854-5635.

出版信息

J Bacteriol. 1991 Mar;173(6):1997-2005. doi: 10.1128/jb.173.6.1997-2005.1991.

Abstract

In previous investigations, we have examined the effect of OmpA signal peptide mutations on the secretion of the two heterologous proteins TEM beta-lactamase and nuclease A. During these studies, we observed that a given signal peptide mutation could affect differentially the processing of precursor OmpA-nuclease or precursor OmpA-lactamase. This observation led us to further investigate the influence of the mature region of a precursor protein on protein export. Preexisting OmpA signal peptide mutations of known secretion phenotype when directing heterologous protein export (nuclease A or beta-lactamase) were fused to the homologous mature OmpA protein. Four signal peptide mutations that have previously been shown to prevent export of nuclease A and beta-lactamase were found to support OmpA protein export, albeit at reduced rates. This remarkable retention of export activity by severely defective precursor OmpA signal peptide mutants may be due to the ability of mature OmpA to interact with the cytoplasmic membrane. In addition, these same signal peptide mutations can affect the level of OmpA synthesis as well as its proper assembly in the outer membrane of Escherichia coli. Two signal peptide mutations dramatically stimulate the rate of precursor OmpA synthesis three- to fivefold above the level observed when a wild-type signal peptide is directing export. The complete removal of the OmpA signal peptide does not result in increased OmpA synthesis. This finding suggests that the signal peptide mutations function positively to stimulate OmpA synthesis, rather than bypass a down-regulatory mechanism effected by a wild-type signal peptide. Overproduction of wild-type precursor OmpA or precursors containing signal peptide mutations which lead to relatively minor kinetic processing defects results in accumulation of an improperly assembled OmpA species (imp-OmpA). In contrast, signal peptide mutations which cause relatively severe processing defects accumulate no or only small quantities of imp-OmpA. All mutations result in equivalent levels of properly assembled OmpA. Thus, a strong correlation between imp-OmpA accumulation and cell toxicity was observed. A mutation in the mature region of OmpA which prevents the proper outer membrane assembly of OmpA was suppressed when export was directed by a severely defective signal peptide. These findings suggest that signal peptide mutations indirectly influence OmpA assembly in the outer membrane by altering both the level and rate of OmpA secretion across the cytoplasmic membrane.

摘要

在先前的研究中,我们研究了OmpA信号肽突变对两种异源蛋白TEMβ-内酰胺酶和核酸酶A分泌的影响。在这些研究过程中,我们观察到特定的信号肽突变可能对前体OmpA-核酸酶或前体OmpA-内酰胺酶的加工产生不同影响。这一观察结果促使我们进一步研究前体蛋白成熟区域对蛋白质输出的影响。将已知分泌表型的现有OmpA信号肽突变在指导异源蛋白输出(核酸酶A或β-内酰胺酶)时与同源成熟OmpA蛋白融合。先前已证明可阻止核酸酶A和β-内酰胺酶输出的四个信号肽突变被发现能够支持OmpA蛋白输出,尽管输出速率有所降低。严重缺陷的前体OmpA信号肽突变体对输出活性的这种显著保留可能是由于成熟OmpA与细胞质膜相互作用的能力。此外,这些相同的信号肽突变可影响OmpA的合成水平及其在大肠杆菌外膜中的正确组装。两个信号肽突变显著刺激前体OmpA的合成速率,比野生型信号肽指导输出时观察到的水平高出三到五倍。完全去除OmpA信号肽不会导致OmpA合成增加。这一发现表明,信号肽突变起到积极作用来刺激OmpA合成,而不是绕过野生型信号肽所实施的下调机制。野生型前体OmpA或含有导致相对较小动力学加工缺陷的信号肽突变的前体的过量产生会导致组装不当的OmpA物种(imp-OmpA)的积累。相比之下,导致相对严重加工缺陷的信号肽突变积累的imp-OmpA很少或没有。所有突变导致正确组装的OmpA水平相当。因此,观察到imp-OmpA积累与细胞毒性之间存在很强的相关性。当由严重缺陷的信号肽指导输出时,OmpA成熟区域中阻止OmpA在外膜中正确组装的突变被抑制。这些发现表明,信号肽突变通过改变OmpA跨细胞质膜的分泌水平和速率,间接影响OmpA在外膜中的组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bf1/207733/e2008a6d1662/jbacter00096-0171-a.jpg

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