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Ssh10b2与其同源蛋白Ssh10b在细胞含量及固定DNA超螺旋的能力上存在明显差异
引用本文:郭荣,薛宏,霍笑风,徐冬一,胡晋川.Ssh10b2与其同源蛋白Ssh10b在细胞含量及固定DNA超螺旋的能力上存在明显差异[J].微生物学报,2006,46(2):323-327,T0001.
作者姓名:郭荣  薛宏  霍笑风  徐冬一  胡晋川
作者单位:1. 中国科学院微生物研究所,北京,100080
2. 北京大学生命科学学院,北京,100871
基金项目:科技部科研项目;中国科学院资助项目
摘    要:极端嗜热古菌———芝田硫化叶菌(Sulfolobus shibatae)基因组含一对亲缘关系较远的同源基因,ssh10b和ssh10b2。这对同源基因编码的蛋白(Ssh10b和Ssh10b2)属于古菌Sac10b DNA结合蛋白家族。关于Ssh10b以及与其极为相似的硫矿硫化叶菌(S.solfataricus)Sso10b、嗜酸热硫化叶菌(S.acidocaldarius)Sac10b蛋白已有较多研究,推测这些蛋白可能在染色体组织和包装、DNA重组、基因表达调控等方面起作用。克隆并在大肠杆菌中表达了ssh10b2基因,纯化了重组Ssh10b2蛋白。免疫印迹定量分析表明,ssh10b2在芝田硫化叶菌中有表达,但其细胞含量仅相当于Ssh10b的约十分之一。重组Ssh10b2对双链DNA的亲和力低于Ssh10b。此外,Ssh10b2和Ssh10b在与双链DNA结合时表现出相似的凝胶阻滞模式。有意思的是,Ssh10b2固定DNA负超螺旋的能力明显低于Ssh10b。这些结果提示,Ssh10b和Ssh10b2可能具有不同的生理作用。

关 键 词:极端嗜热古菌  芝田硫化叶菌  Sac10b家族  Ssh10b2  DNA超螺旋
文章编号:0001-6209(2006)02-0323-05
收稿时间:2005-08-05
修稿时间:2005-08-052005-12-27

Ssh10b2 differs from its paralogue Ssh10b in cellular abundance and the ability to constrain DNA supercoils
GUO Rong,XUE Hong,HUO Xiao-feng,XU Dong-yi,HU Jin-chuan.Ssh10b2 differs from its paralogue Ssh10b in cellular abundance and the ability to constrain DNA supercoils[J].Acta Microbiologica Sinica,2006,46(2):323-327,T0001.
Authors:GUO Rong  XUE Hong  HUO Xiao-feng  XU Dong-yi  HU Jin-chuan
Institution:1 Institute of Microbiology, Chinese Academy of Sciences, Beijing 100080, China;2 College of Life Science, Peking University, Beijing 100871, China
Abstract:The ssh10b and ssh10b2 genes, a pair of distantly related paralogues in Sulfolobus shibatae, encode members of the Sac10b DNA binding protein family in thermophilic archaea. It has been shown previously that Ssh10b exists in abundance in S. shibatae and is capable of constraining negative DNA supercoils, properties that are consistent with a speculated architectural role for the protein in chromosomaforganization. In this study, the ssh10b2 gene was cloned and expressed in Escherichia coli, and the recombinant Ssh10b2 protein was purified to apparent homogeneity. Immunoblotting analysis using a specific anti - Ssh10b2 antibody showed that ssh10b2 was expressed in S. shibatae, but the cellular level of Ssh10b2 was only - 10% of that of Ssh10b. Recombinant Ssh10b2 was capable of interacting with both double-stranded and single-stranded DNA. The affinity of the protein for double-stranded DNA was higher than that reported for Ssh10b. The Ssh10b2 and Ssh10b proteins appeared to generate similar gel shift patterns on duplex DNA fragments. However, unlike Ssh10b, Ssh10b2 was unable to constrain DNA supercoils. These data suggest that Ssh10b2 does not serve as a general architectural factor in DNA compaction and organization in S. shibatae.
Keywords:Ssh10b2  Sac10b family  Sulfolobus shibatae  Cellular abundance  DNA binding  DNA supercoiling
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