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通过基因替换策略对变形链球菌T8的羊毛硫抗生素变链菌素II进行结构-活性研究。

Structure-activity study of the lantibiotic mutacin II from Streptococcus mutans T8 by a gene replacement strategy.

作者信息

Chen P, Novak J, Kirk M, Barnes S, Qi F, Caufield P W

机构信息

Department of Oral Biology, University of Alabama at Birmingham 35294, USA.

出版信息

Appl Environ Microbiol. 1998 Jul;64(7):2335-40. doi: 10.1128/AEM.64.7.2335-2340.1998.

Abstract

Mutacin II, elaborated by group II Streptococcus mutans, is a ribosomally synthesized and posttranslationally modified polypeptide antibiotic containing unusual thioether and didehydro amino acids. To ascertain the role of specific amino acid residues in mutacin II antimicrobial activity, we developed a streptococcal expression system that facilitates the replacement of the mutA gene with a single copy of a mutated variant gene. As a result, variants of mutacin II can be designed and expressed. The system was tested by constructing the following mutant peptides: delta N1, V7A, P9A, T10A, T10S, C15A, C26A, and C27A. All of these mutacin II variants except delta N1 and T10A, which were not secreted, were isolated, and their identities were verified by mass spectrometry. Variants P9A, C15A, C26A, and C27A failed to exert antimicrobial activity. Because the P9A and T10A variants comprise the "hinge" region of mutacin II, these observations suggest that in addition to the thioether and didehydro amino acids, the hinge region is essential for biological activity and biosynthesis or export of the peptide. Tandem mass spectrometry of the N-terminal part of the wild-type molecule and its C15A variant confirmed that the threonine at position 10 is dehydrated and present as a didehydrobutyrine residue. This analysis of the active T10S variant further suggested that a didehydro amino acid at this position is specific for antimicrobial activity and that the biosynthetic machinery does not discriminate between threonine and serine. In contrast, the lack of production of mutacin variants with alanine substituted for threonine at position 10, as well as the deletion of asparagine at the N terminus (delta N1), indicates that specific residues in the propeptide may be crucial for certain steps in the biosynthetic pathway of this lantibiotic.

摘要

变形链球菌II族产生的变链菌素II是一种核糖体合成且经翻译后修饰的多肽抗生素,含有不寻常的硫醚和双脱氢氨基酸。为确定变链菌素II中特定氨基酸残基在抗菌活性中的作用,我们开发了一种链球菌表达系统,该系统有助于用单个突变变体基因拷贝替换mutA基因。结果,可以设计并表达变链菌素II的变体。通过构建以下突变肽对该系统进行了测试:δN1、V7A、P9A、T10A、T10S、C15A、C26A和C27A。除未分泌的δN1和T10A外,所有这些变链菌素II变体均被分离出来,并通过质谱法验证了它们的身份。变体P9A、C15A、C26A和C27A未能发挥抗菌活性。由于P9A和T10A变体构成变链菌素II的“铰链”区,这些观察结果表明,除硫醚和双脱氢氨基酸外,铰链区对于该肽的生物活性以及生物合成或输出至关重要。对野生型分子及其C15A变体的N端部分进行串联质谱分析证实,第10位的苏氨酸脱水并以双脱氢丁氨酸残基形式存在。对活性T10S变体的进一步分析表明,该位置的双脱氢氨基酸对抗菌活性具有特异性,并且生物合成机制不会区分苏氨酸和丝氨酸。相比之下,在第10位用丙氨酸替代苏氨酸以及N端天冬酰胺缺失(δN1)的变链菌素变体无法产生,这表明前肽中的特定残基可能对这种羊毛硫抗生素生物合成途径中的某些步骤至关重要。

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