Carter C J, Bergström S, Norris S J, Barbour A G
Department of Microbiology, University of Texas Health Science Center, San Antonio 78284-7758.
Infect Immun. 1994 Jul;62(7):2792-9. doi: 10.1128/iai.62.7.2792-2799.1994.
Relapsing fever and Lyme disease spirochetes of the genus Borrelia display at their surfaces abundant lipoproteins: Vmp proteins in Borrelia hermsii and Osp proteins in Borrelia burgdorferi. Vmp and Osp proteins largely determine serotype specificity, and neutralizing antibodies of infected or immunized animals are directed at them. For the present study, we examined B. hermsii serotype 33, which is unique among strain HS1 serotypes in the low frequency of switches to other serotypes during infections and in vitro cultivation. Failing to clone the complete vmp33 gene, we accomplished its further characterization by (i) determining three partial amino acid sequences, (ii) designing oligonucleotide primers based on these amino acid sequences, (iii) cloning and sequencing the central portion of vmp33, and (iv) using outwardly directed primers and the inverse PCR to clone the 5' and 3' ends of the gene and flanking regions. The transcriptional start site was identified by primer extension analysis. Vmp33 was a polypeptide of 211 amino acids; the three partial amino acid sequences were identified in the open reading frame. Vmp33 was found to be more similar to other 20-kDa Vmp proteins of B. hermsii and to OspC proteins of B. burgdorferi than it was to 35- to 39-kDa Vmp proteins of the same strain. Moreover, OspC proteins were more similar to Vmp33 than they were to OspA, -B, or -D proteins of B. burgdorferi. These sequence similarities were consistent with Western blot (immunoblot) findings of cross-reactions between Vmp33 and OspC with anti-Vmp33 and anti-OspC sera. The promoter for the expressed vmp33 gene was found to be different from the expression site for other active vmp genes characterized to date. These results indicate that Vmp33 and other small Vmp's belong with OspC to a genus-wide family of 20-kDa proteins and that expression of these proteins may be coordinated with expression of other Vmp and Osp proteins in Borrelia spp.
赫氏疏螺旋体中的Vmp蛋白和伯氏疏螺旋体中的Osp蛋白。Vmp蛋白和Osp蛋白在很大程度上决定了血清型特异性,感染或免疫动物产生的中和抗体即针对它们。在本研究中,我们检测了33型赫氏疏螺旋体,它在HS1菌株血清型中独具特色,在感染和体外培养过程中转换为其他血清型的频率较低。由于未能克隆完整的vmp33基因,我们通过以下方式对其进行了进一步表征:(i) 确定三个部分氨基酸序列;(ii) 根据这些氨基酸序列设计寡核苷酸引物;(iii) 克隆并测序vmp33的中央部分;(iv) 使用外向引物和反向PCR克隆该基因的5'端和3'端以及侧翼区域。通过引物延伸分析确定了转录起始位点。Vmp33是一种由211个氨基酸组成的多肽;在开放阅读框中鉴定出了三个部分氨基酸序列。发现Vmp33与赫氏疏螺旋体的其他20 kDa Vmp蛋白以及伯氏疏螺旋体的OspC蛋白相比,与同一菌株的35至39 kDa Vmp蛋白更为相似。此外,OspC蛋白与Vmp33的相似性高于它们与伯氏疏螺旋体的OspA、-B或-D蛋白的相似性。这些序列相似性与Vmp33和OspC与抗Vmp33和抗OspC血清之间交叉反应的蛋白质印迹(免疫印迹)结果一致。发现表达的vmp33基因的启动子与迄今为止表征的其他活性vmp基因的表达位点不同。这些结果表明,Vmp33和其他小Vmp与OspC属于一个全属范围的20 kDa蛋白家族,并且这些蛋白的表达可能与疏螺旋体属中其他Vmp和Osp蛋白的表达相互协调。