Iuga Mihai, Awram Peter, Nomellini John F, Smit John
Department of Microbiology and Immunology, University of British Columbia, Vancouver, Canada.
Can J Microbiol. 2004 Sep;50(9):751-66. doi: 10.1139/w04-046.
Our freshwater caulobacter collection contains about 40 strains that are morphologically similar to Caulobacter crescentus. All elaborate a crystalline protein surface (S) layer made up of protein monomers 100-193 kDa in size. We conducted a comparative study of S-layer secretion in 6 strains representing 3 size groups of S-layer proteins: small (100-108 kDa), medium (122-151 kDa), and large (181-193 kDa). All contained genes predicted to encode ATP-binding cassette transporters and membrane fusion proteins highly similar to those of C. crescentus, indicating that the S-layer proteins were all secreted by a type I system. The S-layer proteins' C-termini showed unexpectedly low sequence similarity but contained conserved residues and predicted secondary structure features typical of type I secretion signals. Cross-expression studies showed that the 6 strains recognized secretion signals from C. crescentus and Pseudomonas aeruginosa and similarly that C. crescentus was able to secrete the S-layer protein C-terminus of 1 strain examined. Inactivation of the ATP-binding cassette transporter abolished S-layer protein secretion, indicating that the type I transporter is necessary for S-layer protein secretion. Finally, while all of the S-layer proteins of this subset of strains were secreted by type I mechanisms, there were significant differences in genome positions of the transporter genes that correlated with S-layer protein size.
我们的淡水柄杆菌菌株库包含约40个菌株,它们在形态上与新月柄杆菌相似。所有菌株都能合成由大小为100 - 193 kDa的蛋白质单体组成的晶体蛋白表面(S)层。我们对代表S层蛋白3个大小组的6个菌株进行了S层分泌的比较研究:小(100 - 108 kDa)、中(122 - 151 kDa)和大(181 - 193 kDa)。所有菌株都含有预测编码ATP结合盒转运蛋白和膜融合蛋白的基因,这些基因与新月柄杆菌的高度相似,表明S层蛋白均通过I型系统分泌。S层蛋白的C末端显示出意外低的序列相似性,但含有保守残基和预测的I型分泌信号典型的二级结构特征。交叉表达研究表明,这6个菌株能识别新月柄杆菌和铜绿假单胞菌的分泌信号,同样,新月柄杆菌能够分泌所检测的1个菌株的S层蛋白C末端。ATP结合盒转运蛋白的失活消除了S层蛋白的分泌,表明I型转运蛋白是S层蛋白分泌所必需的。最后,虽然该菌株子集的所有S层蛋白都通过I型机制分泌,但转运蛋白基因的基因组位置存在显著差异,这与S层蛋白大小相关。