Structural Genomics Consortium, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.
FEBS J. 2010 Dec;277(23):4920-30. doi: 10.1111/j.1742-4658.2010.07897.x. Epub 2010 Nov 5.
Human hypoxanthine-guanine phosphoribosyltransferase (HPRT) (EC 2.4.2.8) catalyzes the conversion of hypoxanthine and guanine to their respective nucleoside monophosphates. Human HPRT deficiency as a result of genetic mutations is linked to both Lesch-Nyhan disease and gout. In the present study, we have characterized phosphoribosyltransferase domain containing protein 1 (PRTFDC1), a human HPRT homolog of unknown function. The PRTFDC1 structure has been determined at 1.7 Å resolution with bound GMP. The overall structure and GMP binding mode are very similar to that observed for HPRT. Using a thermal-melt assay, a nucleotide metabolome library was screened against PRTFDC1 and revealed that hypoxanthine and guanine specifically interacted with the enzyme. It was subsequently confirmed that PRTFDC1 could convert these two bases into their corresponding nucleoside monophosphate. However, the catalytic efficiency (k(cat)/K(m)) of PRTFDC1 towards hypoxanthine and guanine was only 0.26% and 0.09%, respectively, of that of HPRT. This low activity could be explained by the fact that PRTFDC1 has a Gly in the position of the proposed catalytic Asp of HPRT. In PRTFDC1, a water molecule at the position of the aspartic acid side chain position in HPRT might be responsible for the low activity observed by acting as a weak base. The data obtained in the present study indicate that PRTFDC1 does not have a direct catalytic role in the nucleotide salvage pathway.
人次黄嘌呤鸟嘌呤磷酸核糖转移酶(HPRT)(EC 2.4.2.8)催化次黄嘌呤和鸟嘌呤转化为各自的核苷单磷酸。由于遗传突变导致的人 HPRT 缺乏与 Lesch-Nyhan 病和痛风有关。在本研究中,我们已经描述了磷酸核糖基转移酶结构域包含蛋白 1(PRTFDC1),一种未知功能的人类 HPRT 同源物。PRTFDC1 结构已在结合 GMP 的情况下以 1.7 Å 的分辨率确定。整体结构和 GMP 结合模式与 HPRT 观察到的非常相似。使用热溶解测定法,对 PRTFDC1 进行了核苷酸代谢物文库筛选,结果表明次黄嘌呤和鸟嘌呤特异性与酶相互作用。随后证实 PRTFDC1 可以将这两种碱基转化为相应的核苷单磷酸。然而,PRTFDC1 对次黄嘌呤和鸟嘌呤的催化效率(kcat/Km)分别仅为 HPRT 的 0.26%和 0.09%。这种低活性可以通过 PRTFDC1 在 HPRT 的假定催化天冬氨酸位置具有甘氨酸这一事实来解释。在 PRTFDC1 中,位于天冬氨酸侧链位置的水分子可能通过充当弱碱来负责观察到的低活性。本研究获得的数据表明,PRTFDC1 在核苷酸补救途径中没有直接的催化作用。