Lee Ryan, Aung-Htut May Thandar, Kwik Charlotte, March Paul E
The University of Sydney Medical School, Edward Ford Building, Sydney, NSW 2006, Australia.
Protein Expr Purif. 2011 Jul;78(1):102-12. doi: 10.1016/j.pep.2011.02.009. Epub 2011 Feb 24.
The GTPase Der is universally conserved in bacteria and is structurally unique as it consists of two GTP-binding domains in tandem (G-domain 1 and G-domain 2) whereas all the other GTPases posses a single GTPase domain. In order to assess the function of Der we have fractionated whole cell lysates containing over expressed Der. This analysis indicated that Der was present in sucrose gradient fractions containing membrane proteins. The interaction with the membrane fraction was specific for Der, since the related GTPase, Era, did not form the membrane complex. In addition, three independent criteria suggested a high affinity interaction; (1) the interaction can be detected under partially denaturing conditions using a gel electrophoresis co-migration assay, (2) the interaction survived 16 h sucrose gradient centrifugation, and (3) the complex could be efficiently reconstituted from purified components. Microscopic examination of cells containing over expressed Der showed that the cell wall structure was disrupted at both cell poles. This phenotype required Der domain three since domain deletion mutations showed no affect on cell wall structure. Surprisingly point mutations that ablate nucleotide binding of either GTP binding domain result in a defect in cell wall structure at only a single cell pole. The data reported here were considered together with results presented previously to suggest that Der may engage in a functional cyclic interaction between ribosomes and the membrane in Escherichia coli.
GTP酶Der在细菌中普遍保守,其结构独特,因为它由两个串联的GTP结合结构域(G结构域1和G结构域2)组成,而所有其他GTP酶都只有一个GTP酶结构域。为了评估Der的功能,我们对含有过表达Der的全细胞裂解物进行了分级分离。该分析表明,Der存在于含有膜蛋白的蔗糖梯度级分中。与膜级分的相互作用对Der具有特异性,因为相关的GTP酶Era不会形成膜复合物。此外,三个独立的标准表明存在高亲和力相互作用;(1)使用凝胶电泳共迁移试验在部分变性条件下可检测到相互作用,(2)相互作用在16小时的蔗糖梯度离心后仍然存在,(3)该复合物可以从纯化的组分中有效重组。对含有过表达Der的细胞进行显微镜检查表明,细胞壁结构在细胞两极均被破坏。这种表型需要Der的结构域3,因为结构域缺失突变对细胞壁结构没有影响。令人惊讶的是,消除任一GTP结合结构域核苷酸结合的点突变仅在单个细胞极导致细胞壁结构缺陷。本文报道的数据与之前呈现的结果一起被考虑,以表明Der可能在大肠杆菌中参与核糖体与膜之间的功能性循环相互作用。