Mathupala S P, Lowe S E, Podkovyrov S M, Zeikus J G
Department of Biochemistry, Michigan State University, East Lansing 48824.
J Biol Chem. 1993 Aug 5;268(22):16332-44.
The complete nucleotide sequence of the gene encoding the dual active amylopullulanase of Thermoanaerobacter ethanolicus 39E (formerly Clostridium thermohydrosulfuricum) was determined. The structural gene (apu) contained a single open reading frame 4443 base pairs in length, corresponding to 1481 amino acids, with an estimated molecular weight of 162,780. Analysis of the deduced sequence of apu with sequences of alpha-amylases and alpha-1,6 debranching enzymes enabled the identification of four conserved regions putatively involved in substrate binding and in catalysis. The conserved regions were localized within a 2.9-kilobase pair gene fragment, which encoded a M(r) 100,000 protein that maintained the dual activities and thermostability of the native enzyme. The catalytic residues of amylopullulanase were tentatively identified by using hydrophobic cluster analysis for comparison of amino acid sequences of amylopullulanase and other amylolytic enzymes. Asp597, Glu626, and Asp703 were individually modified to their respective amide form, or the alternate acid form, and in all cases both alpha-amylase and pullulanase activities were lost, suggesting the possible involvement of 3 residues in a catalytic triad, and the presence of a putative single catalytic site within the enzyme. These findings substantiate amylopullulanase as a new type of amylosaccharidase.
测定了嗜热栖热放线菌39E(原嗜热硫化梭菌)双活性支链淀粉酶基因的完整核苷酸序列。结构基因(apu)包含一个长度为4443个碱基对的单一开放阅读框,对应1481个氨基酸,估计分子量为162,780。通过将apu推导的序列与α-淀粉酶和α-1,6脱支酶的序列进行分析,确定了四个可能参与底物结合和催化的保守区域。这些保守区域位于一个2.9千碱基对的基因片段内,该片段编码一种分子量为100,000的蛋白质,该蛋白质保持了天然酶的双活性和热稳定性。通过使用疏水簇分析比较支链淀粉酶和其他淀粉分解酶的氨基酸序列,初步确定了支链淀粉酶的催化残基。将Asp597、Glu626和Asp703分别修饰为各自的酰胺形式或替代酸形式,在所有情况下,α-淀粉酶和支链淀粉酶活性均丧失,这表明这3个残基可能参与催化三联体,并且该酶内存在一个假定的单一催化位点。这些发现证实了支链淀粉酶是一种新型的淀粉糖苷酶。