Lin S, McLennan A G, Ying K, Wang Z, Gu S, Jin H, Wu C, Liu W, Yuan Y, Tang R, Xie Y, Mao Y
State Key Laboratory of Genetic Engineering, Institute of Genetics, School of Life Science, Fudan University, Shanghai 200433, People's Republic of China.
J Biol Chem. 2001 Jun 1;276(22):18695-701. doi: 10.1074/jbc.M011084200. Epub 2001 Mar 13.
ITP and dITP exist in all cells. dITP is potentially mutagenic, and the levels of these nucleotides are controlled by inosine triphosphate pyrophosphatase (EC ). Here we report the cloning, expression, and characterization of a 21.5-kDa human inosine triphosphate pyrophosphatase (hITPase), an enzyme whose activity has been reported in many animal tissues and studied in populations but whose protein sequence has not been determined before. At the optimal pH of 10.0, recombinant hITPase hydrolyzed ITP, dITP, and xanthosine 5'-triphosphate to their respective monophosphates whereas activity with other nucleoside triphosphates was low. K(m) values for ITP, dITP, and xanthosine 5'-triphosphate were 0.51, 0.31, and 0.57 mm, respectively, and k(cat) values were 580, 360, and 640 s(-1), respectively. A divalent cation was absolutely required for activity. The gene encoding the hITPase cDNA sequence was localized by radiation hybrid mapping to chromosome 20p in the interval D20S113-D20S97, the same interval in which the ITPA inosine triphosphatase gene was previously localized. A BLAST search revealed the existence of many similar sequences in organisms ranging from bacteria to mammals. The function of this ubiquitous protein family is proposed to be the elimination of minor potentially mutagenic or clastogenic purine nucleoside triphosphates from the cell.
ITP和dITP存在于所有细胞中。dITP具有潜在的致突变性,这些核苷酸的水平由肌苷三磷酸焦磷酸酶(EC )控制。在此,我们报告了一种21.5 kDa的人肌苷三磷酸焦磷酸酶(hITPase)的克隆、表达及特性分析。此前在许多动物组织中报道过该酶的活性,并在人群中进行过研究,但其蛋白质序列尚未确定。在最佳pH值10.0时,重组hITPase将ITP、dITP和5'-三磷酸黄苷水解为各自的单磷酸盐,而对其他核苷三磷酸的活性较低。ITP、dITP和5'-三磷酸黄苷的K(m)值分别为0.51、0.31和0.57 mM,k(cat)值分别为580、360和640 s(-1)。活性绝对需要二价阳离子。通过辐射杂种图谱将编码hITPase cDNA序列的基因定位到20号染色体短臂上D20S113 - D20S97区间,这与之前定位肌苷三磷酸酶基因ITPA的区间相同。BLAST搜索显示,从细菌到哺乳动物的生物体中存在许多相似序列。推测这个普遍存在的蛋白质家族的功能是从细胞中清除少量潜在的致突变或致断裂嘌呤核苷三磷酸。