Barnett J E, Rasheed A, Corina D L
Biochem J. 1973 Jan;131(1):21-30. doi: 10.1042/bj1310021.
After removal of tightly bound NAD(+) by using charcoal, a preparation of d-glucose 6-phosphate-1 l-myoinositol 1-phosphate cyclase catalysed the reduction of 5-keto-d-glucitol 6-phosphate and 5-keto-d-glucose 6-phosphate by [4-(3)H]NADH to give [5-(3)H]-glucitol 6-phosphate and [5-(3)H]glucose 6-phosphate respectively. The position of the tritium atom in the latter was shown by degradation. Both enzyme-catalysed reductions were strongly inhibited by 2-deoxy-d-glucose 6-phosphate, a powerful competitive inhibitor of inositol cyclase. The charcoal-treated enzyme preparation also converted 5-keto-d-glucose 6-phosphate into [(3)H]myoinositol 1-phosphate in the presence of [4-(3)H]NADH, but less effectively. These partial reactions of inositol cyclase are interpreted as providing strong evidence for the formation of 5-keto-d-glucose 6-phosphate as an enzyme-bound intermediate in the conversion of d-glucose 6-phosphate into 1 l-myoinositol 1-phosphate. The enzyme was partially inactivated by NaBH(4) in the presence of NAD(+). Glucose 6-phosphate did not increase the inactivation, and there was no inactivation in the absence of NAD(+). There was no evidence for Schiff base formation during the cyclization. d-Glucitol 6-phosphate (l-sorbitol 1-phosphate) was a good inhibitor of the overall reaction. It did not inactivate the enzyme. The apparent molecular weight of inositol cyclase as determined by Sephadex chromatography was 2.15x10(5).
用活性炭除去紧密结合的NAD⁺后,d -葡萄糖6 -磷酸 - 1 - l -肌醇1 -磷酸环化酶制剂催化[4 - (³H)]NADH将5 - 酮 - d -葡糖醇6 -磷酸和5 - 酮 - d -葡萄糖6 -磷酸还原,分别生成[5 - (³H)] -葡糖醇6 -磷酸和[5 - (³H)]葡萄糖6 -磷酸。通过降解确定了后者中氚原子的位置。两种酶催化的还原反应都受到2 -脱氧 - d -葡萄糖6 -磷酸的强烈抑制,2 -脱氧 - d -葡萄糖6 -磷酸是肌醇环化酶的强竞争性抑制剂。经活性炭处理的酶制剂在[4 - (³H)]NADH存在下也能将5 - 酮 - d -葡萄糖6 -磷酸转化为[(³H)]肌醇1 -磷酸,但效率较低。肌醇环化酶的这些部分反应被解释为有力证据,证明5 - 酮 - d -葡萄糖6 -磷酸作为d -葡萄糖6 -磷酸转化为1 - l -肌醇1 -磷酸过程中的酶结合中间体形成。在NAD⁺存在下,酶被NaBH₄部分失活。葡萄糖6 -磷酸不会增加失活程度,在没有NAD⁺时也不会失活。环化过程中没有席夫碱形成的证据。d -葡糖醇6 -磷酸(l -山梨醇1 -磷酸)是整个反应的良好抑制剂。它不会使酶失活。通过葡聚糖凝胶色谱法测定,肌醇环化酶的表观分子量为2.15×10⁵。