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ClpX和ClpP对于有效获取指定IA型和IB型限制系统的基因至关重要。

ClpX and ClpP are essential for the efficient acquisition of genes specifying type IA and IB restriction systems.

作者信息

Makovets S, Titheradge A J, Murray N E

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, UK.

出版信息

Mol Microbiol. 1998 Apr;28(1):25-35. doi: 10.1046/j.1365-2958.1998.00767.x.

Abstract

Efficient acquisition of genes that encode a restriction and modification (R-M) system with specificities different from any already present in the recipient bacterium requires the sequential production of the new modification enzyme followed by the restriction activity in order that the chromosome of the recipient bacterium is protected against attack by the restriction endonuclease. We show that ClpX and ClpP, the components of ClpXP protease, are necessary for the efficient transmission of the genes encoding EcoKI and EcoAI, representatives of two families of type I R-M systems, thus implicating ClpXP in the modulation of restriction activity. Loss of ClpX imposed a bigger barrier than loss of ClpP, consistent with a dual role for ClpX, possibly as a chaperone and as a component of the ClpXP protease. Transmission of genes specifying EcoKI was more dependent on ClpX and ClpP than transmission of the genes for EcoAI. Sensitivity to absence of the protease was also influenced by the mode of gene transfer; conjugative transfer and transformation were more dependent on ClpXP than transduction. In the absence of either ClpX or ClpP transfer of the EcoKI genes by P1-mediated transduction was impaired, transfer of the EcoAI genes was not.

摘要

高效获取编码限制与修饰(R-M)系统的基因,且该系统的特异性不同于受体细菌中已有的任何系统,这需要先依次产生新的修饰酶,随后产生限制活性,以便保护受体细菌的染色体免受限制性内切核酸酶的攻击。我们发现,ClpXP蛋白酶的组分ClpX和ClpP对于编码EcoKI和EcoAI的基因(I型R-M系统两个家族的代表)的高效传递是必需的,因此表明ClpXP参与了限制活性的调节。与ClpP缺失相比,ClpX缺失造成的障碍更大,这与ClpX的双重作用一致,ClpX可能作为伴侣蛋白以及ClpXP蛋白酶的一个组分。指定EcoKI的基因传递比EcoAI基因传递更依赖于ClpX和ClpP。对蛋白酶缺失的敏感性也受基因转移方式的影响;接合转移和转化比转导更依赖于ClpXP。在缺乏ClpX或ClpP的情况下,P1介导的转导对EcoKI基因的转移有损害,对EcoAI基因的转移则没有。

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