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粪肠球菌糖肽依赖性菌株中ddl基因的测序及突变型D-丙氨酸:D-丙氨酸连接酶的建模

Sequencing of the ddl gene and modeling of the mutated D-alanine:D-alanine ligase in glycopeptide-dependent strains of Enterococcus faecium.

作者信息

Gholizadeh Y, Prevost M, Van Bambeke F, Casadewall B, Tulkens P M, Courvalin P

机构信息

Unité des Agents Antibactériens, Institut Pasteur, Paris, France.

出版信息

Protein Sci. 2001 Apr;10(4):836-44. doi: 10.1110/ps.39101.

Abstract

Glycopeptide dependence for growth in enterococci results from mutations in the ddl gene that inactivate the host D-Ala:D-Ala ligase. The strains require glycopeptides as inducers for synthesis of resistance proteins, which allows for the production of peptidoglycan precursors ending in D-Ala-D-Lac instead of D-Ala-D-Ala. The sequences of the ddl gene from nine glycopeptide-dependent Enterococcus faecium clinical isolates were determined. Each one had a mutation consisting either in a 5-bp insertion at position 41 leading to an early stop codon, an in-frame 6-bp deletion causing the loss of two residues (KDVA243-246 to KA), or single base-pair changes resulting in an amino acid substitution (E13 --> G, G99 --> R, V241 --> D, D295 --> G, P313 --> L). The potential consequences of the deletion and point mutations on the 3-D structure of the enzyme were evaluated by comparative molecular modeling of the E. faecium enzyme, using the X-ray structure of the homologous Escherichia coli D-Ala:D-Ala ligase DdlB as a template. All mutated residues were found either to interact directly with one of the substrates of the enzymatic reaction (E13 and D295) or to stabilize the position of critical residues in the active site. Maintenance of the 3-D structure in the vicinity of these mutations in the active site appears critical for D-Ala:D-Ala ligase activity.

摘要

肠球菌生长对糖肽的依赖性源于ddl基因的突变,该突变使宿主D - 丙氨酸:D - 丙氨酸连接酶失活。这些菌株需要糖肽作为抗性蛋白合成的诱导剂,这使得能够产生以D - 丙氨酸 - D - 乳酸而非D - 丙氨酸 - D - 丙氨酸结尾的肽聚糖前体。测定了9株糖肽依赖性屎肠球菌临床分离株的ddl基因序列。每一株都有一个突变,要么是在第41位有一个5bp的插入导致提前终止密码子,要么是一个框内6bp的缺失导致两个残基缺失(KDVA243 - 246变为KA),要么是单碱基对变化导致氨基酸取代(E13→G、G99→R、V241→D、D295→G、P313→L)。通过以同源大肠杆菌D - 丙氨酸:D - 丙氨酸连接酶DdlB的X射线结构为模板,对屎肠球菌酶进行比较分子建模,评估了缺失和点突变对该酶三维结构的潜在影响。发现所有突变残基要么直接与酶促反应的一种底物相互作用(E13和D295),要么稳定活性位点中关键残基的位置。活性位点这些突变附近三维结构的维持似乎对D - 丙氨酸:D - 丙氨酸连接酶活性至关重要。

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