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周质伴侣蛋白FkpA对导入的大肠菌素M的毒性至关重要。

Periplasmic chaperone FkpA is essential for imported colicin M toxicity.

作者信息

Hullmann Julia, Patzer Silke I, Römer Christin, Hantke Klaus, Braun Volkmar

机构信息

Microbiology/Membrane Physiology, University of Tübingen, Auf der Morgenstelle 28, D-72076 Tübingen, Germany.

出版信息

Mol Microbiol. 2008 Aug;69(4):926-37. doi: 10.1111/j.1365-2958.2008.06327.x. Epub 2008 Jun 28.

Abstract

Chaperones facilitate correct folding of newly synthesized proteins. We show here that the periplasmic FkpA chaperone is required for killing Escherichia coli by colicin M entering cells from the outside. Highly active colicin M preparations were inactive against fkpA mutant cells; 10(4)-fold dilutions killed fkpA(+) cells. Three previously isolated spontaneous mutants tolerant to colicin M carried a stop codon or an IS1 insertion in the peptidyl-prolyl-cis-trans-isomerase (PPIase) domain (C-domain) of FkpA, which resulted in deletion of the domain. A randomly generated mutant carried a G148D mutation in the C-domain. A temperature-sensitive mutant tolerant to colicin M carried a Y25N mutation in the FkpA N-domain. Mutants transformed with wild-type fkpA were colicin M-sensitive. Isolated FkpA-His reduced colicin M-His cleavage by proteinase K and renatured denatured colicin M-His in vitro; renaturation was prevented by the PPIase inhibitor FK506. In both assays, periplasmic SurA-His had no effect. No other tested periplasmic chaperone could activate colicin M. Among the tested colicins, only colicin M required FkpA for activity. Colicin M bound to cells via FhuA was inactivated by trypsin; unbound colicin M retained activity. We propose that colicin M unfolds during import across the outer membrane, FkpA specifically assists in folding colicin M into an active toxin in the periplasm and PPIase is essential for colicin M activity. Colicin M is a suitable tool for the isolation of FkpA mutants used to elucidate the functions of the FkpA N- and C-domains.

摘要

伴侣蛋白有助于新合成蛋白质的正确折叠。我们在此表明,周质FkpA伴侣蛋白是外源进入细胞的大肠杆菌素M杀死大肠杆菌所必需的。高活性的大肠杆菌素M制剂对fkpA突变细胞无活性;10⁴倍稀释才能杀死fkpA⁺细胞。之前分离得到的3个对大肠杆菌素M耐受的自发突变体在FkpA的肽基脯氨酰顺反异构酶(PPIase)结构域(C结构域)携带一个终止密码子或IS1插入,导致该结构域缺失。一个随机产生的突变体在C结构域携带G148D突变。一个对大肠杆菌素M耐受的温度敏感突变体在FkpA的N结构域携带Y25N突变。用野生型fkpA转化的突变体对大肠杆菌素M敏感。体外实验中,分离得到的FkpA-His可减少蛋白酶K对大肠杆菌素M-His的切割,并使变性的大肠杆菌素M-His复性;PPIase抑制剂FK506可阻止复性。在这两种实验中,周质SurA-His均无作用。在测试的其他周质伴侣蛋白中,没有一种能激活大肠杆菌素M。在测试的大肠杆菌素中,只有大肠杆菌素M的活性需要FkpA。通过FhuA与细胞结合的大肠杆菌素M可被胰蛋白酶灭活;未结合的大肠杆菌素M保留活性。我们提出,大肠杆菌素M在穿过外膜的过程中发生解折叠,FkpA特异性地协助大肠杆菌素M在周质中折叠成活性毒素,且PPIase对大肠杆菌素M的活性至关重要。大肠杆菌素M是用于分离FkpA突变体以阐明FkpA的N和C结构域功能的合适工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4908/2615193/0c14d2d16cbd/mmi0069-0926-f1.jpg

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