首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of LytA-Like N-Acetylmuramoyl-l-Alanine Amidases from Two New Streptococcus mitis Bacteriophages Provides Insights into the Properties of the Major Pneumococcal Autolysin
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Characterization of LytA-Like N-Acetylmuramoyl-l-Alanine Amidases from Two New Streptococcus mitis Bacteriophages Provides Insights into the Properties of the Major Pneumococcal Autolysin

机译:两种新型链球菌细菌噬菌体的LytA-样N-乙酰基村酰酰基-A-丙氨酸酰胺酶的表征提供了对主要肺炎球菌自溶素特性的见解。

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摘要

Two new temperate bacteriophages exhibiting a Myoviridae (φB6) and a Siphoviridae (φHER) morphology have been isolated from Streptococcus mitis strains B6 and HER 1055, respectively, and partially characterized. The lytic phage genes were overexpressed in Escherichia coli, and their encoded proteins were purified. The lytAHER and lytAB6 genes are very similar (87% identity) and appeared to belong to the group of the so-called typical LytA amidases (atypical LytA displays a characteristic two-amino-acid deletion signature). although they exhibited several differential biochemical properties with respect to the pneumococcal LytA, e.g., they were inhibited in vitro by sodium deoxycholate and showed a more acidic pH for optimal activity. However, and in sharp contrast with the pneumococcal LytA, a short dialysis of LytAHER or LytAB6 resulted in reversible deconversion to the low-activity state (E-form) of the fully active phage amidases (C-form). Comparison of the amino acid sequences of LytAHER and LytAB6 with that of the pneumococcal amidase suggested that Val317 might be responsible for at least some of the peculiar properties of S. mitis phage enzymes. Site-directed mutagenesis that changed Val317 in the pneumococcal LytA amidase to a Thr residue (characteristic of LytAB6 and LytAHER) produced a fully active pneumococcal enzyme that differs from the parental one only in that the mutant amidase can reversibly recover the low-activity E-form upon dialysis. This is the first report showing that a single amino acid residue is involved in the conversion process of the major S. pneumoniae autolysin. Our results also showed that some lysogenic S. mitis strains possess a lytA-like gene, something that was previously thought to be exclusive to Streptococcus pneumoniae. Moreover, the newly discovered phage lysins constitute a missing link between the typical and atypical pneumococcal amidases known previously.
机译:分别从微生物链球菌菌株B6和HER 1055中分离出了两种新的温带噬菌体,它们分别具有Myoviridae(φB6)和Siphoviridae(φHER)形态。裂解噬菌体基因在大肠杆菌中过表达,并纯化了其编码的蛋白质。 lytAHER和lytAB6基因非常相似(同一性为87%),似乎属于所谓的典型LytA酰胺酶(非典型LytA显示出特征性的两个氨基酸缺失特征)。尽管它们相对于肺炎球菌LytA表现出几种不同的生化特性,例如,它们在体外受到脱氧胆酸钠的抑制,并显示出更酸性的pH以达到最佳活性。然而,与肺炎球菌LytA形成鲜明对比的是,短暂透析LytAHER或LytAB6导致可逆转化为全活性噬菌体酰胺酶(C形式)的低活性状态(E形式)。将LytAHER和LytAB6的氨基酸序列与肺炎球菌酰胺酶的氨基酸序列进行比较表明,Val317可能至少是造成葡萄球菌噬菌体酶特殊特性的原因。定点诱变将肺炎球菌LytA酰胺酶中的Val317变为Thr残基(LytAB6和LytAHER的特征)产生了一种全活性的肺炎球菌酶,该酶与亲本酶的区别仅在于突变的酰胺酶可以可逆地回收低活性E-透析后形成。这是第一份报告,表明单个氨基酸残基参与了主要的肺炎链球菌自溶素的转化过程。我们的结果还表明,某些溶原性链球菌菌株具有lytA样基因,以前认为该基因仅是肺炎链球菌所独有的。此外,新发现的噬菌体溶素构成了先前已知的典型和非典型肺炎球菌酰胺酶之间的缺失环节。

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