Dowson C G, Hutchison A, Woodford N, Johnson A P, George R C, Spratt B G
Microbial Genetics Group, School of Biological Sciences, Sussex University, Falmer, Brighton, United Kingdom.
Proc Natl Acad Sci U S A. 1990 Aug;87(15):5858-62. doi: 10.1073/pnas.87.15.5858.
Penicillin-resistant strains of Streptococcus pneumoniae possess altered forms of penicillin-binding proteins (PBPs) with decreased affinity for penicillin. The PBP2B genes of these strains have a mosaic structure, consisting of regions that are very similar to those in penicillin-sensitive strains, alternating with regions that are highly diverged. Penicillin-resistant strains of viridans groups streptococci (e.g., S. sanguis and S. oralis) that produce altered PBPs have also been reported. The PBP2B genes of two penicillin-resistant clinical isolates of S. sanguis were identical in sequence to the mosaic class B PBP2B genes found in penicillin-resistant serotype 23 strains of S. pneumoniae. Emergence of penicillin resistance appears to have occurred by the horizontal transfer of an altered PBP2B gene from penicillin-resistant S. pneumoniae into S. sanguis. The PBP2B genes of three penicillin-resistant S. oralis strains were similar to the mosaic class B PBP2B gene of penicillin-resistant strains of S. pneumoniae but possessed an additional block of diverged sequence. Penicillin resistance in S. oralis has also probably arisen by horizontal transfer of this variant form of the class B mosaic PBP2B gene from a penicillin-resistant strain of S. pneumoniae.
肺炎链球菌的耐青霉素菌株具有改变形式的青霉素结合蛋白(PBPs),对青霉素的亲和力降低。这些菌株的PBP2B基因具有镶嵌结构,由与青霉素敏感菌株中非常相似的区域和高度分化的区域交替组成。也有报道称,产生改变的PBPs的草绿色链球菌(如血链球菌和口腔链球菌)的耐青霉素菌株。两株血链球菌青霉素耐药临床分离株的PBP2B基因序列与肺炎链球菌23型青霉素耐药菌株中发现的镶嵌B类PBP2B基因相同。青霉素耐药性的出现似乎是由于改变的PBP2B基因从耐青霉素的肺炎链球菌水平转移到血链球菌中。三株口腔链球菌青霉素耐药菌株的PBP2B基因与肺炎链球菌青霉素耐药菌株的镶嵌B类PBP2B基因相似,但拥有一个额外的分化序列块。口腔链球菌中的青霉素耐药性也可能是由于B类镶嵌PBP2B基因的这种变体形式从肺炎链球菌的耐青霉素菌株水平转移所致。