Legate Kyle R, Andrews David W
Department of Biochemistry, McMaster University, Hamilton, Ontario L8N 3Z5, Canada.
J Biol Chem. 2003 Jul 25;278(30):27712-20. doi: 10.1074/jbc.M302158200. Epub 2003 May 19.
The beta-subunit of the signal recognition particle receptor (SRbeta), a member of the Ras family of small molecular weight GTPases, is involved in the targeting of nascent polypeptide chains to the protein translocation machinery in the endoplasmic reticulum membrane. We purified SRbeta from an expressing strain of Escherichia coli and investigated the properties of the isolated GTPase. We find that, unlike other Ras family GTPases, most SRbeta purifies bound to GTP, and SRbeta-bound GTP is not easily exchanged with solution GTP. SRbeta possesses no detectable GTPase activity. Although a stable interaction between SRbeta and ribosomes is observed, SRbeta is not stimulated to hydrolyze GTP when incubated with ribosomes or ribosome-nascent chains. A GTPase mutant harboring a mutation in a region predicted to be functionally important, based on observations made in related GTPases, binds GTP with faster kinetics and appears to be a less stable protein but otherwise displays similar properties to the wild-type SRbeta GTPase. Our results demonstrate that as an isolated GTPase, SRbeta functions differently from the Arf- and Ras-type GTPases that it is most closely related to by sequence.
信号识别颗粒受体(SRβ)的β亚基是小分子量GTP酶Ras家族的成员之一,参与将新生多肽链靶向内质网膜中的蛋白质转运机制。我们从大肠杆菌的表达菌株中纯化了SRβ,并研究了分离出的GTP酶的特性。我们发现,与其他Ras家族GTP酶不同,大多数纯化的SRβ与GTP结合,并且与SRβ结合的GTP不易与溶液中的GTP交换。SRβ没有可检测到的GTP酶活性。尽管观察到SRβ与核糖体之间存在稳定的相互作用,但与核糖体或核糖体-新生链一起孵育时,SRβ不会被刺激水解GTP。基于在相关GTP酶中所做的观察,在一个预测为功能重要区域发生突变的GTP酶突变体,以更快的动力学结合GTP,并且似乎是一种不太稳定的蛋白质,但在其他方面显示出与野生型SRβ GTP酶相似的特性。我们的结果表明,作为一种分离的GTP酶,SRβ的功能不同于与其序列最密切相关的Arf型和Ras型GTP酶。