Nunez H A, Barker R
Biochemistry. 1976 Aug 24;15(17):3843-7. doi: 10.1021/bi00662a030.
The metal ion catalysed decomposition of the nucleotide diphosphate sugars, uridine diphosphate glucose, uriding diphosphate galactose, uridine diphosphate N-acetylglucosamine, guanosine diphosphate mannose, and guanosine diphosphate fucose (UDPGlc, UDPGal, UDPGlc-NAc, GDPMan, and GDPFuc, respectively), has been studies as a function of pH. UDPDlc and UDPGal decompose readily to the a,2-cycle phosphate derivative of the sugar and uridine 5'-phosphoric acid (UMP) in the presence of Mn2+. Under all conditions tested, UDPGal decomposes two to three times more rapidly than does UDPGlc. GDPFuc is slowly degraded to free fucose under similar conditions; the other nucleotide diphosphate sugars are stable. The rate of reaction increases with increasing hydroxide ion concentration from pH 6.5 to 7.9 and with metal ion concentration from 10 to 200 mm. Several metal ions are effective catalysts; at pH 7.5 WITH 20 mM UDPGal and 20 mM metal ion, the following apparent first-order rate constants (min-1 x 10(4)) were obtained: Eu3+ 700; Mn2+, 70; Co2+ 27; Zn2+, 22; Ca2+, 3.0; Cu2+, 2.4; and Mg2+, 0. It appears that Mn2+ concentrations that have been used in studies with nucleotide diphosphate sugars at neutral pH can catalyze significant decomposition leading to erroneous interpretation of kinetic and incorporation experiments.
已经研究了金属离子催化的二磷酸核苷糖(分别为尿苷二磷酸葡萄糖、尿苷二磷酸半乳糖、尿苷二磷酸N-乙酰葡糖胺、鸟苷二磷酸甘露糖和鸟苷二磷酸岩藻糖,即UDPGlc、UDPGal、UDPGlc-NAc、GDPMan和GDPFuc)的分解作为pH的函数。在Mn2+存在下,UDPDlc和UDPGal容易分解为糖的α,2-环磷酸衍生物和尿苷5'-磷酸(UMP)。在所有测试条件下,UDPGal的分解速度比UDPGlc快两到三倍。在类似条件下,GDPFuc缓慢降解为游离岩藻糖;其他二磷酸核苷糖是稳定的。反应速率随着氢氧根离子浓度从pH 6.5增加到7.9以及金属离子浓度从10 mM增加到200 mM而增加。几种金属离子是有效的催化剂;在pH 7.5、20 mM UDPGal和20 mM金属离子的条件下,获得了以下表观一级速率常数(min-1×10(4)):Eu3+ 700;Mn2+,70;Co2+ 27;Zn2+,22;Ca2+,3.0;Cu2+,2.4;和Mg2+,0。似乎在中性pH下用于二磷酸核苷糖研究的Mn2+浓度可以催化显著的分解,导致对动力学和掺入实验的错误解释。