Department of Microbiology, Molecular Genetics and Immunology, University of Kansas Medical Center, Kansas City, Kansas 66160, USA.
J Bacteriol. 2011 Oct;193(20):5759-65. doi: 10.1128/JB.05622-11. Epub 2011 Aug 19.
To further characterize the function of the Borrelia burgdorferi C-terminal protease CtpA, we used site-directed mutagenesis to alter the putative CtpA cleavage site of one of its known substrates, the outer membrane (OM) porin P13. These mutations resulted in only partial blockage of P13 processing. Ectopic expression of a C-terminally truncated P13 in B. burgdorferi indicated that the C-terminal peptide functions as a safeguard against misfolding or mislocalization prior to its proteolytic removal by CtpA. In a parallel study of Borrelia burgdorferi lipoprotein sorting mechanisms, we observed a lower-molecular-weight variant of surface lipoprotein OspC that was particularly prominent with OspC mutants that mislocalized to the periplasm or contained C-terminal epitope tags. Further investigation revealed that the variant resulted from C-terminal proteolysis by CtpA. Together, these findings indicate that CtpA rather promiscuously targets polypeptides that lack structurally constrained C termini, as proteolysis appears to occur independently of a specific peptide recognition sequence. Low-level processing of surface lipoproteins such as OspC suggests the presence of a CtpA-dependent quality control mechanism that may sense proper translocation of integral outer membrane proteins and surface lipoproteins by detecting the release of C-terminal peptides.
为了进一步研究伯氏疏螺旋体 C 端蛋白酶 CtpA 的功能,我们使用定点突变改变了其已知底物之一,外膜(OM)孔蛋白 P13 的假定 CtpA 切割位点。这些突变仅导致 P13 加工部分受阻。在伯氏疏螺旋体中异位表达 C 端截断的 P13 表明,C 端肽在被 CtpA 蛋白水解去除之前,作为一种防止错误折叠或错误定位的保护机制。在对伯氏疏螺旋体脂蛋白分拣机制的平行研究中,我们观察到表面脂蛋白 OspC 的低分子量变体,特别是在错误定位于周质或含有 C 端表位标签的 OspC 突变体中更为明显。进一步的研究表明,该变体是由 CtpA 的 C 端蛋白水解产生的。总之,这些发现表明 CtpA 可以广泛地靶向缺乏结构约束 C 末端的多肽,因为蛋白水解似乎独立于特定的肽识别序列发生。表面脂蛋白(如 OspC)的低水平加工表明存在 CtpA 依赖性质量控制机制,该机制可能通过检测 C 端肽的释放来感知完整外膜蛋白和表面脂蛋白的正确易位。