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Biochemical characterization and structural insights into the high substrate affinity of a dimeric and Ca2+ independent Bacillus subtilis alpha-amylase

机译:二聚体和Ca2 +独立芽孢杆菌甲酰基氨基苯并氨基苯并氨基苯并氨基酶的生物化学表征和结构见解

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摘要

An extracellular amylase (AmyKS) produced by a newly isolated Bacillus subtilis strain US572 was purified and characterized. AmyKS showed maximal activity at pH 6 and 60 degrees C with a half-life of 10 min at 70 degrees C. It is a Ca2+ independent enzyme and able to hydrolyze soluble starch into oligosaccharides consisting mainly of maltose and maltotriose. When compared to the studied alpha-amylases, AmyKS presents a high affinity toward soluble starch with a K-m value of 0.252 mg ml(-1). Coupled with the size-exclusion chromatography data, MALDI-TOF/MS analysis indicated that the purified amylase is a dimer with a molecular mass of 136,938.18 Da. It is an unusual feature of a non-maltogenic alpha-amylase. A 3D model and a dimeric model of AmyKS were generated showing the presence of an additional domain suspected to be involved in the dimerization process. This dimer arrangement could explain the high substrate affinity and catalytic efficiency of this enzyme.
机译:通过新分离的芽孢杆菌菌株US572产生的细胞外淀粉酶(AMYK)纯化并表征。 Amyks在pH 6和60摄氏度下显示最大活性,在70摄氏度下半衰期为10分钟。它是Ca2 +独立酶,并且能够将溶解的淀粉水解成主要由麦芽糖和麦芽糖素组成的寡糖。 与所研究的α-淀粉酶相比,AMYKS对溶性淀粉的高亲和力具有0.252mg mL(-1)的K-M值。 与尺寸排阻色谱数据相结合,MALDI-TOF / MS分析表明纯化的淀粉酶是分子量为136,938.18Da的二聚体。 这是非骨髓原α-淀粉酶的不寻常的特征。 产生3D模型和AMYK的二聚体模型,显示出怀疑涉及的附加领域的存在。 该二聚体布置可以解释该酶的高底物亲和力和催化效率。

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