Burgis Nicholas E, Cunningham Richard P
Department of Biological Sciences, University at Albany, State University of New York, Albany, New York 12222, USA.
J Biol Chem. 2007 Feb 9;282(6):3531-8. doi: 10.1074/jbc.M608708200. Epub 2006 Nov 6.
We have previously reported the identification of a DNA repair system in Escherichia coli for the prevention of the stable incorporation of noncanonical purine dNTPs into DNA. We hypothesized that the RdgB protein is active on 2'-deoxy-N-6-hydroxylaminopurine triphosphate (dHAPTP) as well as deoxyinosine triphosphate. Here we show that RdgB protein and RdgB homologs from Saccharomyces cerevisiae, mouse, and human all possess deoxyribonucleoside triphosphate pyrophosphohydrolase activity and that all four RdgB homologs have high specificity for dHAPTP and deoxyinosine triphosphate compared with the four canonical dNTPs and several other noncanonical (d)NTPs. Kinetic analysis reveals that the major source of the substrate specificity lies in changes in K(m) for the various substrates. The expression of these enzymes in E. coli complements defects that are caused by the incorporation of HAP and an endogenous noncanonical purine into DNA. Our data support a preemptive role for the RdgB homologs in excluding endogenous and exogenous modified purine dNTPs from incorporation into DNA.
我们之前报道过在大肠杆菌中鉴定出一种DNA修复系统,用于防止非标准嘌呤脱氧核苷三磷酸稳定掺入DNA。我们推测RdgB蛋白对2'-脱氧-N-6-羟基氨基嘌呤三磷酸(dHAPTP)以及脱氧肌苷三磷酸具有活性。在此我们表明,来自酿酒酵母、小鼠和人类的RdgB蛋白及RdgB同源物均具有脱氧核糖核苷三磷酸焦磷酸水解酶活性,并且与四种标准脱氧核苷三磷酸以及其他几种非标准(脱氧)核苷三磷酸相比,所有四种RdgB同源物对dHAPTP和脱氧肌苷三磷酸都具有高度特异性。动力学分析表明,底物特异性的主要来源在于各种底物的米氏常数(K(m))变化。这些酶在大肠杆菌中的表达弥补了因HAP和内源性非标准嘌呤掺入DNA所导致的缺陷。我们的数据支持RdgB同源物在排除内源性和外源性修饰嘌呤脱氧核苷三磷酸掺入DNA方面具有先发作用。