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无乳链球菌中编码Cα蛋白的基因bca的分布与表达

Distribution and expression of bca, the gene encoding the c alpha protein, by Streptococcus agalactiae.

作者信息

Maeland J A, Brakstad O G, Bevanger L, Krokstad S

机构信息

Department of Microbiology, School of Medicine, Norwegian University of Science and Technology, N-7006, Trondheim and *SINTEF Applied Chemistry, N-7465, Trondheim, Norway.

出版信息

J Med Microbiol. 2000 Feb;49(2):193-198. doi: 10.1099/0022-1317-49-2-193.

Abstract

A total of 52 clinical isolates of group B streptococci (GBS) was tested for expression of the c protein c(alpha) by a fluorescent antibody test (FAT) and by PCR amplification of a 202-bp stretch within the repeat unit of the bca gene encoding the c(alpha) protein. The strains were categorised as follows: c(alpha) FAT positive and PCR positive with amplification products of multiple sizes (category A, n = 12); FAT negative and with PCR products of multiple sizes (category B, n = 11); FAT negative and with a single PCR product of c. 200 bp (category C, n = 5); negative in both tests (category D, n = 24). A single amplification product of minimum size and additional products of larger sizes corresponded to one and more bca repeats, respectively. Five of the 11 category B strains showed expression of low Mr c(alpha) in whole cell-based Western blotting. The results showed that a proportion of the GBS isolates harboured bca gene elements that either were not expressed or they expressed c(alpha) molecular variants which could not be detected by the whole cell-based FAT. This genotype/phenotype discrepancy should be considered in relation to GBS typing, including the selection of antibody reagents and the technical approach to c(alpha) protein detection.

摘要

采用荧光抗体试验(FAT)以及对编码c(α)蛋白的bca基因重复单元内一段200 bp片段进行PCR扩增的方法,对总共52株B族链球菌(GBS)临床分离株进行c蛋白c(α)表达检测。这些菌株分类如下:c(α) FAT阳性且PCR阳性,扩增产物有多种大小(A类,n = 12);FAT阴性且PCR产物有多种大小(B类,n = 11);FAT阴性且PCR产物单一,约200 bp(C类,n = 5);两项检测均为阴性(D类,n = 24)。最小大小的单一扩增产物和更大大小的额外产物分别对应一个及以上的bca重复序列。11株B类菌株中有5株在基于全细胞的蛋白质免疫印迹法中显示低分子量c(α)的表达。结果表明,一部分GBS分离株含有未表达的bca基因元件,或者表达了基于全细胞的FAT无法检测到的c(α)分子变体。在GBS分型方面,包括抗体试剂的选择和c(α)蛋白检测的技术方法,应考虑这种基因型/表型差异。

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