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具有λ噬菌体免疫特异性的野生噬菌体免疫区域的保守性与多样性

Conservation and diversity in the immunity regions of wild phages with the immunity specificity of phage lambda.

作者信息

Degnan Patrick H, Michalowski Christine B, Babić Andrea C, Cordes Matthew H J, Little John W

机构信息

Department of Ecology and Evolutionary Biology, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Mol Microbiol. 2007 Apr;64(1):232-44. doi: 10.1111/j.1365-2958.2007.05650.x.

Abstract

The gene regulatory circuitry of phage lambda is among the best-understood circuits. Much of the circuitry centres around the immunity region, which includes genes for two repressors, CI and Cro, and their cis-acting sites. Related phages, termed lambdoid phages, have different immunity regions, but similar regulatory circuitry and genome organization to that of lambda, and show a mosaic organization, arising by recombination between lambdoid phages. We sequenced the immunity regions of several wild phages with the immunity specificity of lambda, both to determine whether natural variation exists in regulation, and to analyse conservation and variability in a region rich in well-studied regulatory elements. CI, Cro and their cis-acting sites are almost identical to those in lambda, implying that regulatory mechanisms controlled by the immunity region are conserved. A segment adjacent to one of the operator regions is also conserved, and may be a novel regulatory element. In most isolates, different alleles of two regulatory proteins (N and CII) flank the immunity region; possibly the lysis-lysogeny decision is more variable among isolates. Extensive mosaicism was observed for several elements flanking the immunity region. Very short sequence elements or microhomologies were also identified. Our findings suggest mechanisms by which fine-scale mosaicism arises.

摘要

噬菌体λ的基因调控回路是目前理解最为透彻的回路之一。该回路的大部分围绕免疫区域展开,免疫区域包含两种阻遏蛋白CI和Cro的基因及其顺式作用位点。相关噬菌体,即λ样噬菌体,具有不同的免疫区域,但调控回路和基因组组织与λ噬菌体相似,并且呈现出镶嵌式组织,这是由λ样噬菌体之间的重组产生的。我们对几种具有λ噬菌体免疫特异性的野生噬菌体的免疫区域进行了测序,目的是确定调控中是否存在自然变异,并分析富含深入研究的调控元件的区域中的保守性和变异性。CI、Cro及其顺式作用位点与λ噬菌体中的几乎相同,这意味着由免疫区域控制的调控机制是保守的。与其中一个操纵区相邻的片段也是保守的,可能是一种新的调控元件。在大多数分离株中,两种调控蛋白(N和CII)的不同等位基因位于免疫区域两侧;可能裂解-溶原决定在分离株中更具变异性。在免疫区域两侧的几个元件中观察到广泛的镶嵌现象。还鉴定出了非常短的序列元件或微同源性。我们的研究结果提示了精细尺度镶嵌现象产生的机制。

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