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胎儿弯曲杆菌中具有保守和可变区域的sapA同源物的重排。

Rearrangement of sapA homologs with conserved and variable regions in Campylobacter fetus.

作者信息

Tummuru M K, Blaser M J

机构信息

Vanderbilt University School of Medicine, Division of Infectious Diseases, Nashville, TN 37232-2605.

出版信息

Proc Natl Acad Sci U S A. 1993 Aug 1;90(15):7265-9. doi: 10.1073/pnas.90.15.7265.

Abstract

The Campylobacter fetus surface-layer (S-layer) proteins mediate both complement resistance and antigenic variation in mammalian hosts. Wild-type strain 23D possesses the sapA gene, which encodes a 97-kDa S-layer protein, and several sapA homologs are present in both wild-type and mutant strains. Here we report that a cloned silent gene (sapA1) in C. fetus can express a functional full-length S-layer protein in Escherichia coli. Analysis of sapA and sapA1 and partial analysis of sapA2 indicate that a block of approximately 600 bp beginning upstream and continuing into the open reading frames is completely conserved, and then the sequences diverge completely, but immediately downstream of each gene is another conserved 50-bp sequence. Conservation of sapA1 among strains, the presence of a putative Chi (RecBCD recognition) site upstream of sapA, sapA1, and sapA2, and the sequence identities of the sapA genes suggest a system for homologous recombination. Comparison of the wild-type strain (23D) with a phenotypic variant (23D-11) indicates that variation is associated with removal of the divergent region of sapA from the expression locus and exchange with a corresponding region from a sapA homolog. We propose that site-specific reciprocal recombination between sapA homologs leads to expression of divergent S-layer proteins as one of the mechanisms that C. fetus uses for antigenic variation.

摘要

胎儿弯曲杆菌表面层(S层)蛋白介导哺乳动物宿主中的补体抗性和抗原变异。野生型菌株23D拥有sapA基因,该基因编码一种97 kDa的S层蛋白,野生型和突变菌株中均存在几个sapA同源物。在此我们报道,胎儿弯曲杆菌中一个克隆的沉默基因(sapA1)可在大肠杆菌中表达功能性全长S层蛋白。对sapA和sapA1的分析以及对sapA2的部分分析表明从上游开始并延伸至开放阅读框的约600 bp片段完全保守,然后序列完全不同,但每个基因紧邻下游是另一个50 bp的保守序列。菌株间sapA1的保守性、sapA、sapA1和sapA2上游假定的Chi(RecBCD识别)位点的存在以及sapA基因的序列同一性提示了一个同源重组系统。野生型菌株(23D)与表型变体(23D-11)的比较表明,变异与从表达位点去除sapA的差异区域并与sapA同源物的相应区域交换有关。我们提出,sapA同源物之间的位点特异性相互重组导致差异S层蛋白的表达,这是胎儿弯曲杆菌用于抗原变异的机制之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5242/47117/5eadb041d1b6/pnas01472-0381-a.jpg

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