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来自核盘菌的一种主要产生麦芽三糖的α-淀粉酶ScAmy43的纯化、表征及部分一级序列分析

Purification, characterization, and partial primary sequence of a major-maltotriose-producing alpha-amylase, ScAmy43, from Sclerotinia sclerotiorum.

作者信息

Ben Abdelmalek-Khedher Imen, Urdaci Maria Camino, Limam Ferid, Schmitter Jean Marie, Marzouki M Nejib, Bressollier Philippe

机构信息

Institut National des Sciences Appliquees et de Technologie (INSAT), Centre Urbain Nord 676-1080 Tunis Cedex, Tunisia.

出版信息

J Microbiol Biotechnol. 2008 Sep;18(9):1555-63.

Abstract

A novel alpha-amylase (alpha-1,4-alpha-D-glucan glucanohydrolase, E.C. 3.2.1.1), ScAmy43, was found in the culture medium of the phytopathogenic fungus Sclerotinia sclerotiorum grown on oats flour. Purified to homogeneity, ScAmy43 appeared as a 43 kDa monomeric enzyme, as estimated by SDS-PAGE and Superdex 75 gel filtration. The MALDI peptide mass fingerprint of ScAmy43 tryptic digest as well as internal sequence analyses indicate that the enzyme has an original primary structure when compared with other fungal alpha- amylases. However, the sequence of the 12 N-terminal residues is homologous with those of Aspergillus awamori and Aspergillus kawachii amylases, suggesting that the new enzyme belongs to the same GH13 glycosyl hydrolase family. Assayed with soluble starch as substrate, this enzyme displayed optimal activity at pH 4 and 55oC with an apparent Km value of 1.66 mg/ml and Vmax of 0.1 micromol glucose x min-1 x ml-1. ScAmy43 activity was strongly inhibited by Cu2+, Mn2+, and Ba2+, moderately by Fe2+, and was only weakly affected by Ca2+ addition. However, since EDTA and EGTA did not inhibit ScAmy43 activity, this enzyme is probably not a metalloprotein. DTT and beta-mercaptoethanol strongly increased the enzyme activity. Starting with soluble starch as substrate, the end products were mainly maltotriose, suggesting for this enzyme an endo action.

摘要

在燕麦粉培养基上生长的植物病原真菌核盘菌的培养基中发现了一种新型α-淀粉酶(α-1,4-α-D-葡聚糖葡聚糖水解酶,E.C. 3.2.1.1),即ScAmy43。经SDS-PAGE和Superdex 75凝胶过滤估计,纯化至同质的ScAmy43呈现为一种43 kDa的单体酶。ScAmy43胰蛋白酶消化产物的MALDI肽质量指纹图谱以及内部序列分析表明,与其他真菌α-淀粉酶相比,该酶具有独特的一级结构。然而,其12个N端残基的序列与泡盛曲霉和河合曲霉淀粉酶的序列同源,表明这种新酶属于同一个GH13糖基水解酶家族。以可溶性淀粉为底物进行测定时,该酶在pH 4和55℃下表现出最佳活性,表观Km值为1.66 mg/ml,Vmax为0.1 μmol葡萄糖·min-1·ml-1。ScAmy43的活性受到Cu2+、Mn2+和Ba2+的强烈抑制,受到Fe2+的中度抑制,添加Ca2+对其影响较弱。然而,由于EDTA和EGTA不抑制ScAmy43的活性,该酶可能不是金属蛋白。DTT和β-巯基乙醇可显著提高该酶的活性。以可溶性淀粉为底物时,终产物主要是麦芽三糖,表明该酶具有内切作用。

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