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一个六氨基酸缺失,部分与VanSB G2 ATP结合基序重叠,导致VanB型屎肠球菌产生组成型糖肽抗性。

A six amino acid deletion, partially overlapping the VanSB G2 ATP-binding motif, leads to constitutive glycopeptide resistance in VanB-type Enterococcus faecium.

作者信息

Depardieu Florence, Courvalin Patrice, Msadek Tarek

机构信息

Centre National de la Recherche Scientifique, Institut Pasteur, Paris, France.

出版信息

Mol Microbiol. 2003 Nov;50(3):1069-83. doi: 10.1046/j.1365-2958.2003.03771.x.

Abstract

Enterococcus faecium clinical isolate BM4524, resistant to vancomycin and susceptible to teicoplanin, harboured a chromosomal vanB cluster, including the vanSB/vanRB two-component system regulatory genes. Enterococcus faecium strain BM4525, isolated two weeks later from the same patient, was resistant to high levels of both glycopeptides. The ddl gene of BM4525 had a 2 bp insertion leading to an impaired d-alanine:d-alanine ligase. Sequencing of the vanB operon in BM4525 also revealed an 18 bp deletion in the vanSB gene designated vanSBDelta. The resulting six amino acid deletion partially overlapped the G2 ATP-binding domain of the VanSBDelta histidine kinase leading to constitutive expression of the resistance genes. Sequence analysis indicated that the deletion occurred between two tandemly arranged heptanucleotide direct repeats, separated by 11 base-pairs. The VanSB, VanSBDelta and VanRB proteins were overproduced in Escherichia coli and purified. In vitro autophosphorylation of the VanSB and VanSBDelta histidine kinases and phosphotransfer to the VanRB response regulator did not differ significantly. However, VanSBDelta was deficient in VanRB phosphatase activity leading to accumulation of phosphorylated VanRB. Increased glycopeptide resistance in E. faecium BM4525 was therefore a result of the lack of production of d-alanyl-d-alanine ending pentapeptide and to constitutive synthesis of d-alanyl-d-lactate terminating peptidoglycan precursors, following loss of d-alanine:d-alanine ligase and of VanSB phosphatase activity respectively. We suggest that the heptanucleotide direct repeat in vanSB may favour the appearance of high level constitutively expressed vancomycin resistance through a 'slippage' type of genetic rearrangement in VanB-type strains.

摘要

屎肠球菌临床分离株BM4524对万古霉素耐药但对替考拉宁敏感,其携带一个染色体vanB簇,包括vanSB/vanRB双组分系统调控基因。两周后从同一患者分离出的屎肠球菌菌株BM4525对两种糖肽类药物均高度耐药。BM4525的ddl基因有一个2bp的插入,导致d -丙氨酸:d -丙氨酸连接酶功能受损。对BM4525中vanB操纵子的测序还揭示了vanSB基因中有一个18bp的缺失,命名为vanSBDelta。由此产生的六个氨基酸缺失部分重叠了VanSBDelta组氨酸激酶的G2 ATP结合结构域,导致耐药基因的组成型表达。序列分析表明,该缺失发生在两个串联排列的七核苷酸直接重复序列之间,间隔11个碱基对。VanSB、VanSBDelta和VanRB蛋白在大肠杆菌中过量表达并纯化。VanSB和VanSBDelta组氨酸激酶的体外自磷酸化以及向VanRB应答调节因子的磷酸转移没有显著差异。然而,VanSBDelta缺乏VanRB磷酸酶活性,导致磷酸化的VanRB积累。因此,屎肠球菌BM4525中糖肽类耐药性增加是分别由于d -丙氨酸:d -丙氨酸连接酶和VanSB磷酸酶活性丧失后,缺乏以d -丙氨酰 - d -丙氨酸结尾的五肽的产生以及组成型合成以d -丙氨酰 - d -乳酸结尾的肽聚糖前体。我们认为,vanSB中的七核苷酸直接重复序列可能通过VanB型菌株中一种“滑动”类型的基因重排,有利于高水平组成型表达的万古霉素耐药性的出现。

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