首页> 外文期刊>Applied and Environmental Microbiology >Use of the pre-pro part of Staphylococcus hyicus lipase as a carrier for secretion of Escherichia coli outer membrane protein A (OmpA) prevents proteolytic degradation of OmpA by cell-associated protease(s) in two different gram-positive bacteria.
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Use of the pre-pro part of Staphylococcus hyicus lipase as a carrier for secretion of Escherichia coli outer membrane protein A (OmpA) prevents proteolytic degradation of OmpA by cell-associated protease(s) in two different gram-positive bacteria.

机译:使用葡萄球菌脂肪酶的前原部分作为分泌大肠杆菌外膜蛋白A(OmpA)的载体,可防止细胞相关蛋白酶在两种不同的革兰氏阳性细菌中对OmpA进行蛋白水解降解。

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Heterologous protein secretion was studied in the gram-positive bacteria Bacillus subtilis and Staphylococcus carnosus by using the Escherichia coli outer membrane protein OmpA as a model protein. The OmpA protein was found to be translocated across the plasma membrane of both microorganisms. However, the majority of the translocated OmpA was similarly degraded in B. subtilis and S. carnosus despite the fact that the latter organism does not secrete soluble exoproteases into the culture medium. The finding that purified OmpA, which was added externally to the culture medium of growing S. carnosus cells, remained intact indicates that newly synthesized and exported OmpA is degraded by one or more cell-associated proteases rather than by a soluble exoprotease. Fusion of the mature part of OmpA to the pre-pro part of a lipase from Staphylococcus hyicus allowed the efficient release of the corresponding propeptide-OmpA hybrid protein into the supernatant and completely prevented the cell-associated proteolytic degradation of the mature OmpA, most likely reflecting an important function of the propeptide during secretion of its natural mature lipase moiety. The relevance of our findings for the biotechnological use of gram-positive bacteria as host organisms for the secretory production of heterologous proteins is discussed.
机译:通过使用大肠杆菌外膜蛋白OmpA作为模型蛋白,研究了革兰氏阳性菌枯草芽孢杆菌和肉葡萄球菌中的异源蛋白分泌。发现OmpA蛋白跨两种微生物的质膜转运。然而,尽管后者的生物体不会将可溶性外切蛋白酶分泌到培养基中,但大多数枯草芽孢杆菌和肉食链球菌都被类似地降解了。从外部添加到正在生长的肉食链球菌细胞培养基中的纯化OmpA保持完整的发现表明,新合成和输出的OmpA被一种或多种与细胞相关的蛋白酶降解,而不是由可溶性外切蛋白酶降解。 OmpA成熟部分与来自葡萄球菌的脂肪酶的前原部分融合,可以将相应的前肽-OmpA杂合蛋白有效释放到上清液中,并完全阻止了成熟OmpA的细胞相关蛋白水解降解,这很可能是反映了前肽在其天然成熟脂肪酶部分的分泌过程中的重要功能。讨论了我们的发现与革兰氏阳性细菌作为宿主生物体分泌分泌异源蛋白质的生物技术的相关性。

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