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半乳糖-1-磷酸尿苷酰转移酶的尿苷酰化酶形式及其Q168R变体的形成和反应的瞬态动力学:对半乳糖血症分子基础的洞察

Transient kinetics of formation and reaction of the uridylyl-enzyme form of galactose-1-P uridylyltransferase and its Q168R-variant: insight into the molecular basis of galactosemia.

作者信息

Geeganage S, Frey P A

机构信息

Institute for Enzyme Research, Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin-Madison 53705, USA.

出版信息

Biochemistry. 1998 Oct 13;37(41):14500-7. doi: 10.1021/bi9815546.

Abstract

Galactose-1-phosphate uridylyltransferase catalyzes the reaction of UDP-glucose with galactose 1-phosphate (Gal-1-P) to form UDP-galactose and glucose 1-phosphate (Glc-1-P) through a double displacement mechanism, with the intermediate formation of a covalent uridylyl-enzyme (UMP enzyme). Gln 168 in E. coli uridylyltransferase engages in hydrogen bonding with the phosphoryl oxygens of the UMP moiety, which is bonded to His 166 in the intermediate [Wedekind, J. E., Frey, P. A., and Rayment, I. (1996) Biochemistry 35, 11560-11569]. In humans, the point variant Q188R accounts for 60% of galactosemia cases. The corresponding E. coli variant Q168R has been overexpressed and purified. In preparation for kinetic correlation of Q168R and wild-type uridylyltransferases, we tested the kinetic competence of the wild-type UMP-enzyme. At 4 degreesC, the first-order rate constant for uridylylation by UDP-glucose is 281 +/- 18 s-1, and for deuridylylation it is 226 +/- 10 s-1 with Glc-1-P and 166 +/- 10 s-1 with Gal-1-P. Inasmuch as the overall turnover number at 4 degreesC is 62 s-1, the covalent intermediate is kinetically competent. The variant Q168R is uridylylated by UDP-glucose to the extent of about 65% of the potential active sites. Uridylylation reactions of Q168R with UDP-glucose proceed with maximum first-order rate constants of 2.2 x 10(-)4 s-1 and 4.2 x 10(-)4 s-1 at 4 and 27 degreesC, respectively. In experiments with uridylyl-Q168R and glucose-1-P, the mutant enzyme undergoes deuridylylation with maximum first-order rate constants of 4.8 x 10(-)4 s-1 and 1.68 x 10(-)3 s-1 at 4 and 27 degreesC, respectively. The value of Km for uridylylation of Q168R is slightly higher than for the wild-type enzyme, and for deuridylylation it is similar to the wild-type value. The wild-type enzyme undergoes uridylylation and deuridylyation about 10(6) times faster than Q168R. The wild-type activity in the overall reaction is 1.8 x 10(6) times that of Q168R. The wild-type enzyme contains 1.9 mol of Zn+Fe per mole of subunits, whereas the Q168R-variant contains 1.36 mol of Zn+Fe per mole of subunits. The mutation stabilizes the uridylyl-enzyme by 1.2 kcal mol-1 in comparison to the wild-type enzyme. These results show that the low activity of Q168R is not due to overstabilization of the intermediate or to the absence of structural metal ions. Instead, the main defect is very slow uridylylation and deuridylation.

摘要

1-磷酸半乳糖尿苷酰转移酶催化尿苷二磷酸葡萄糖(UDP-葡萄糖)与1-磷酸半乳糖(Gal-1-P)反应,通过双置换机制形成尿苷二磷酸半乳糖(UDP-半乳糖)和1-磷酸葡萄糖(Glc-1-P),中间形成共价尿苷酰-酶(UMP-酶)。大肠杆菌尿苷酰转移酶中的Gln 168与UMP部分的磷酰氧形成氢键,UMP部分在中间体中与His 166相连[韦德金德,J. E.,弗雷,P. A.,和雷门特,I.(1996年)《生物化学》35卷,11560 - 11569页]。在人类中,点突变体Q188R占半乳糖血症病例的60%。相应的大肠杆菌突变体Q168R已被过量表达并纯化。为了对Q168R和野生型尿苷酰转移酶进行动力学关联,我们测试了野生型UMP-酶的动力学活性。在4℃时,UDP-葡萄糖进行尿苷酰化反应的一级速率常数为281±18 s⁻¹,脱尿苷酰化反应中,与Glc-1-P反应时为226±10 s⁻¹,与Gal-1-P反应时为166±10 s⁻¹。由于4℃时的总周转数为62 s⁻¹,共价中间体在动力学上是有活性的。突变体Q168R被UDP-葡萄糖尿苷酰化的程度约为潜在活性位点的65%。Q168R与UDP-葡萄糖的尿苷酰化反应在4℃和27℃时的最大一级速率常数分别为2.2×10⁻⁴ s⁻¹和4.2×10⁻⁴ s⁻¹。在用尿苷酰-Q168R和1-磷酸葡萄糖进行的实验中,突变酶脱尿苷酰化反应在4℃和27℃时的最大一级速率常数分别为4.8×10⁻⁴ s⁻¹和1.68×10⁻³ s⁻¹。Q168R尿苷酰化反应的Km值略高于野生型酶,脱尿苷酰化反应时与野生型值相似。野生型酶进行尿苷酰化和脱尿苷酰化反应的速度比Q168R快约10⁶倍。总体反应中野生型活性是Q168R的1.8×10⁶倍。野生型酶每摩尔亚基含有1.9摩尔的Zn + Fe,而Q168R突变体每摩尔亚基含有1.36摩尔的Zn + Fe。与野生型酶相比,该突变使尿苷酰-酶稳定了1.2千卡/摩尔。这些结果表明,Q168R活性低并非由于中间体过度稳定或缺乏结构金属离子。相反,主要缺陷是尿苷酰化和脱尿苷酰化非常缓慢。

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