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Dissection and Modulation of the Four Distinct Activities of Nisin by Mutagenesis of Rings A and B and by C-Terminal Truncation

机译:通过环A和B诱变和C端截短来分析和调节乳链菌肽的四个不同活性

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摘要

Nisin A is a pentacyclic antibiotic peptide produced by various Lactococcus lactis strains. Nisin displays four different activities: (i) it autoinduces its own synthesis; (ii) it inhibits the growth of target bacteria by membrane pore formation; (iii) it inhibits bacterial growth by interfering with cell wall synthesis; and, in addition, (iv) it inhibits the outgrowth of spores. Here we investigate the structural requirements and relevance of the N-terminal thioether rings of nisin by randomization of the ring A and B positions. The data demonstrate that: (i) mutation of ring A results in variants with enhanced activity and a modulated spectrum of target cells; (ii) for the cell growth-inhibiting activity of nisin, ring A is rather promiscuous with respect to its amino acid composition, whereas the bulky amino acid residues in ring B abolish antimicrobial activity; (iii) C-terminally truncated nisin A mutants lacking rings D and E retain significant antimicrobial activity but are unable to permeabilize the target membrane; (iv) the dehydroalanine in ring A is not essential for the inhibition of the outgrowth of Bacillus cells; (v) some ring A mutants have significant antimicrobial activities but have decreased autoinducing activities; (vi) the opening of ring B eliminates antimicrobial activity while retaining autoinducing activity; and (vii) some ring A mutants escape the nisin immune system(s) and are toxic to the nisin-producing strain NZ9700. These data demonstrate that the various activities of nisin can be engineered independently and provide a basis for the design and synthesis of tailor-made analogs with desired activities.
机译:乳链菌肽A是由各种乳酸乳球菌菌株产生的五环抗生素肽。乳链菌肽显示四种不同的活性:(i)它自动诱导其自身的合成; (ii)通过膜孔的形成抑制靶细菌的生长; (iii)通过干扰细胞壁的合成来抑制细菌的生长; (iv)抑制孢子的生长。在这里,我们通过环A和B环位置的随机化来研究乳链菌肽N末端硫醚环的结构要求和相关性。数据证明:(i)A环的突变导致变体具有增强的活性和靶细胞的调制光谱; (ii)对于乳链菌肽的细胞生长抑制活性,环A在其氨基酸组成方面相当混杂,而环B中庞大的氨基酸残基消除了抗菌活性; (iii)缺乏环D和E的C末端截短的乳链菌肽A突变体保留了显着的抗菌活性,但无法透化靶膜; (iv)A环中的脱氢丙氨酸对于抑制芽孢杆菌细胞的生长不是必需的; (v)一些A环突变体具有显着的抗菌活性,但自诱导活性降低; (vi)B环的打开消除了抗菌活性,同时保持了自诱导活性; (vii)一些A环突变体逃脱了乳链菌肽的免疫系统,并对生产乳链菌肽的菌株NZ9700有毒。这些数据表明,乳链菌肽的各种活性可以独立设计,并为设计和合成具有所需活性的定制类似物提供了基础。

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