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I 型限制修饰酶的细胞定位取决于家族。

Cellular localization of Type I restriction-modification enzymes is family dependent.

作者信息

Holubová I, Vejsadová S, Firman K, Weiserová M

机构信息

Institute of Microbiology, Academy of Sciences of the Czech Republic, Prague.

出版信息

Biochem Biophys Res Commun. 2004 Jun 25;319(2):375-80. doi: 10.1016/j.bbrc.2004.04.184.

Abstract

Cellular localization of Type I restriction-modification enzymes EcoKI, EcoAI, and EcoR124I-the most frequently studied representatives of IA, IB, and IC families-was analyzed by immunoblotting of subcellular fractions isolated from Escherichia coli strains harboring the corresponding hsd genes. EcoR124I shows characteristics similar to those of EcoKI. The complex enzymes are associated with the cytoplasmic membrane via DNA interaction as documented by the release of the Hsd subunits from the membrane into the soluble fraction following benzonase treatment. HsdR subunits of the membrane-bound enzymes EcoKI and EcoR124I are accessible, though to a different extent, at the external surface of cytoplasmic membrane as shown by trypsinization of intact spheroplasts. EcoAI strongly differs from EcoKI and EcoR124I, since neither benzonase nor trypsin affects its association with the cytoplasmic membrane. Possible reasons for such a different organization are discussed in relation of the control of the restriction-modification activities in vivo.

摘要

通过对携带相应hsd基因的大肠杆菌菌株分离出的亚细胞组分进行免疫印迹分析,研究了I型限制修饰酶EcoKI、EcoAI和EcoR124I(IA、IB和IC家族中研究最频繁的代表)的细胞定位。EcoR124I表现出与EcoKI相似的特征。如通过苯甲酰酶处理后Hsd亚基从膜释放到可溶部分所证明的,复合酶通过DNA相互作用与细胞质膜相关联。完整原生质球经胰蛋白酶处理表明,膜结合酶EcoKI和EcoR124I的HsdR亚基在细胞质膜的外表面均可接近,尽管程度不同。EcoAI与EcoKI和EcoR124I有很大不同,因为苯甲酰酶和胰蛋白酶均不影响其与细胞质膜的关联。结合体内限制修饰活性的控制讨论了这种不同组织方式的可能原因。

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