Nakayama A, Yamamoto K, Tabata S
Nara Prefectural Hospital, Hiramatsu, Nara City, Nara 631-0846, Japan.
J Biol Chem. 2001 Aug 3;276(31):28824-8. doi: 10.1074/jbc.M102192200. Epub 2001 May 25.
Eukaryotic glycogen debranching enzyme (GDE) possesses two different catalytic activities (oligo-1,4-->1,4-glucantransferase/amylo-1,6-glucosidase) on a single polypeptide chain. To elucidate the structure-function relationship of GDE, the catalytic residues of yeast GDE were determined by site-directed mutagenesis. Asp-535, Glu-564, and Asp-670 on the N-terminal half and Asp-1086 and Asp-1147 on the C-terminal half were chosen by the multiple sequence alignment or the comparison of hydrophobic cluster architectures among related enzymes. The five mutant enzymes, D535N, E564Q, D670N, D1086N, and D1147N were constructed. The mutant enzymes showed the same purification profiles as that of wild-type enzyme on beta-CD-Sepharose-6B affinity chromatography. All the mutant enzymes possessed either transferase activity or glucosidase activity. Three mutants, D535N, E564Q, and D670N, lost transferase activity but retained glucosidase activity. In contrast, D1086N and D1147N lost glucosidase activity but retained transferase activity. Furthermore, the kinetic parameters of each mutant enzyme exhibiting either the glucosidase activity or transferase activity did not vary markedly from the activities exhibited by the wild-type enzyme. These results strongly indicate that the two activities of GDE, transferase and glucosidase, are independent and located at different sites on the polypeptide chain.
真核生物糖原脱支酶(GDE)在一条多肽链上具有两种不同的催化活性(寡聚-1,4→1,4-葡聚糖转移酶/淀粉-1,6-葡萄糖苷酶)。为阐明GDE的结构-功能关系,通过定点诱变确定了酵母GDE的催化残基。通过多序列比对或相关酶之间疏水簇结构的比较,选择了N端一半的Asp-535、Glu-564和Asp-670以及C端一半的Asp-1086和Asp-1147。构建了五个突变酶,即D535N、E564Q、D670N、D1086N和D1147N。在β-环糊精-琼脂糖-6B亲和色谱上,突变酶显示出与野生型酶相同的纯化图谱。所有突变酶都具有转移酶活性或葡萄糖苷酶活性。三个突变体D535N、E564Q和D670N失去了转移酶活性,但保留了葡萄糖苷酶活性。相反,D1086N和D1147N失去了葡萄糖苷酶活性,但保留了转移酶活性。此外,表现出葡萄糖苷酶活性或转移酶活性的每个突变酶的动力学参数与野生型酶所表现出的活性相比没有明显变化。这些结果有力地表明,GDE的两种活性,即转移酶和葡萄糖苷酶活性,是独立的,且位于多肽链上的不同位点。