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MIC231, a naturally occurring mobile insertion cassette from Bacillus cereus.

机译:MIC231,一种来自蜡样芽孢杆菌的天然存在的移动插入盒。

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摘要

Recent dissection of numerous plasmids and transposable elements has given more credence to the modular organization of these genetic and genomic entities. Although many variations on each theme exist, the number of basic functional cassettes is thought to be relatively limited. In this paper, a novel type of mobile cassette is described. A naturally occurring assemblage consisting of two left IS231 ends flanking a D-stereospecific endopeptidase (adp) gene was found in several natural isolates of Bacillus cereus. This 1.9 kb genetic entity was shown to transpose in the presence of IS231A transposase, not only in Escherichia coli but also in Bacillus. The acronym MIC231 is proposed for this mobile insertion cassette trans-activated (teletransposed) by IS231. Using (D-Phe)4 tetrapeptide as substrate, the endopeptidase activity of the MIC231 adp gene could be demonstrated in E. coli and B. subtilis. Interestingly, this D-stereospecific endopeptidase activity was not limited to the original B. cereus isolates but was also detected in all but one of the 69 B. cereus sensu lato strains tested, indicating its important, yet dispensable, biological function. However, inactivation of the MIC231 adp gene in two B. cereus strains did not result in any detectable variation of their activity on (D-Phe)4, suggesting the presence of other distantly related adp gene(s). Thus, although the exact role of MIC231 adp remains elusive, its presence inside a mobile cassette represents the archetype of a novel insertion sequence modular organization.
机译:最近对众多质粒和转座因子的解剖已经使这些遗传和基因组实体的模块化组织有了更多的可信度。尽管在每个主题上都有许多变化,但是基本功能盒的数量被认为是相对有限的。在本文中,描述了一种新型的移动盒式磁带。在数种蜡状芽孢杆菌的天然分离物中发现了一个天然存在的组合,该组合由两个左侧的IS231末端和一个D-立体特异性内肽酶(adp)基因组成。该1.9 kb的遗传实体显示在IS231A转座酶存在下转座,不仅在大肠杆菌中,而且在芽孢杆菌中。提出了首字母缩略词MIC231,用于由IS231反激活(远程转置)的该移动插入盒。使用(D-Phe)4四肽作为底物,可以在大肠杆菌和枯草芽孢杆菌中证明MIC231 adp基因的内肽酶活性。有趣的是,这种D-立体特异性内肽酶活性不仅限于最初的蜡状芽孢杆菌分离株,而且在除测试的69株蜡状芽孢杆菌之外的所有菌株中都检测到,表明其重要的但可有可无的生物学功能。但是,在两个蜡状芽孢杆菌菌株中MIC231 adp基因的失活并未导致其对(D-Phe)4活性的任何可检测到的变化,表明存在其他远缘相关的adp基因。因此,尽管MIC231 adp的确切作用仍然难以捉摸,但它在移动暗盒中的存在代表了新型插入序列模块化组织的原型。

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