Herrchen M, Legler G
Eur J Biochem. 1984 Feb 1;138(3):527-31. doi: 10.1111/j.1432-1033.1984.tb07947.x.
[3H] Conduritol C cis-epoxide (1,2-anhydro-epi-inositol, I) was synthesized as an active-site-directed inhibitor for lacZ beta-galactosidase from Escherichia coli. A considerable kinetic isotope effect was noted in the reduction by [3H]NaBH4 of the p-benzoquinone-derived precursor for I. Complete loss of beta-galactosidase activity occurred on incorporation of 4 mol I/mol beta-galactosidase tetramer. The inhibitor was very labile in the denatured enzyme at pH greater than 8, implying the formation of an ester bond between I and a carboxylate at the active site. The radioactive material released from the labeled enzyme was identified as allo-inositol. The stereochemistry of the expoxide reaction (trans-diaxial ring opening) is thus the same as for beta-glucosidases with the corresponding epoxides. The binding site for I was identified as Glu-461 by the isolation and partial sequence analysis of a radioactive octapeptide from the cyanogen bromide and pepsin fragments of the labeled enzyme. A failure to determine the N-terminal amino acid of the labeled peptide is ascribed to the great reactivity of the esterified gamma-carboxyl group of its N-terminal Glu-461 which causes rapid cyclisation of this residue to pyroglutamate, even under weakly basic conditions. The participation of the carboxylate of Glu-461 in catalysis is discussed.
[3H] 金刚糖醇C顺式环氧化物(1,2-脱水表肌醇,I)被合成为大肠杆菌β-半乳糖苷酶的活性位点导向抑制剂。在用[3H]NaBH4还原I的对苯醌衍生前体的过程中观察到了显著的动力学同位素效应。每摩尔β-半乳糖苷酶四聚体掺入4摩尔I后,β-半乳糖苷酶活性完全丧失。该抑制剂在pH大于8的变性酶中非常不稳定,这意味着I与活性位点的羧酸盐之间形成了酯键。从标记酶中释放出的放射性物质被鉴定为别肌醇。因此,环氧化物反应的立体化学(反式双轴开环)与相应环氧化物的β-葡萄糖苷酶相同。通过从标记酶的溴化氰和胃蛋白酶片段中分离出放射性八肽并进行部分序列分析,确定I的结合位点为Glu-461。未能确定标记肽的N端氨基酸归因于其N端Glu-461的酯化γ-羧基具有很高的反应活性,即使在弱碱性条件下,该残基也会迅速环化为焦谷氨酸。讨论了Glu-461的羧酸盐在催化中的作用。