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黑曲霉葡糖淀粉酶G2中参与催化和底物结合的羧酸残基的鉴定。

Identification of carboxylic acid residues in glucoamylase G2 from Aspergillus niger that participate in catalysis and substrate binding.

作者信息

Svensson B, Clarke A J, Svendsen I, Møller H

机构信息

Department of Chemistry, Carlsberg Laboratory, Copenhagen, Denmark.

出版信息

Eur J Biochem. 1990 Feb 22;188(1):29-38. doi: 10.1111/j.1432-1033.1990.tb15367.x.

Abstract

Functionally important carboxyl groups in glucoamylase G2 from Aspergillus niger were identified using a differential labelling approach which involved modification of the acarbose-inhibited enzyme with 1-ethyl-3-(4-azonia-4,4-dimethylpentyl)carbodiimide (EAC) and inactivation by [3H]EAC following removal of acarbose. Subsequent sequence localization of the substituted acidic residues was facilitated by specific phenylthiohydantoins. The acid cluster Asp176, Glu179 and Glu180 reacted exclusively with [3H]EAC, while Asp112, Asp153, Glu259 and Glu389 had incorporated both [3H]EAC and EAC. It is conceivable that one or two of the [3H]EAC-labelled side chains act in catalysis while the other fully protected residue(s) participates in substrate binding probably together with the partially protected ones. Twelve carboxyl groups that reacted with EAC in the enzyme-acarbose complex were also identified. Asp176, Glu179 and Glu180 are all invariant in fungal glucoamylases. Glu180 was tentatively identified as a catalytic group on the basis of sequence alignments to catalytic regions in isomaltase and alpha-amylase. The partially radiolabelled Asp112 corresponds in Taka-amylase A to Tyr75 situated in a substrate binding loop at a distance from the site of cleavage. A possible correlation between carbodiimide modification of an essential carboxyl group and its role in the glucoamylase catalysis is discussed.

摘要

利用差异标记法鉴定了黑曲霉葡糖淀粉酶G2中功能重要的羧基,该方法包括用1-乙基-3-(4-氮杂-4,4-二甲基戊基)碳二亚胺(EAC)修饰阿卡波糖抑制的酶,并在去除阿卡波糖后用[³H]EAC使其失活。通过特定的苯硫代乙内酰脲促进了取代酸性残基的后续序列定位。酸性簇Asp176、Glu179和Glu180仅与[³H]EAC反应,而Asp112、Asp153、Glu259和Glu389同时结合了[³H]EAC和EAC。可以想象,[³H]EAC标记的侧链中的一个或两个在催化中起作用,而另一个完全受保护的残基可能与部分受保护的残基一起参与底物结合。还鉴定了在酶-阿卡波糖复合物中与EAC反应的12个羧基。Asp176、Glu179和Glu180在真菌葡糖淀粉酶中都是不变的。基于与异麦芽糖酶和α-淀粉酶催化区域的序列比对,Glu180被初步鉴定为催化基团。在Taka-淀粉酶A中,部分放射性标记的Asp112对应于位于底物结合环中距切割位点一定距离处的Tyr75。讨论了必需羧基的碳二亚胺修饰与其在葡糖淀粉酶催化中的作用之间的可能相关性。

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