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通过在参与底物与大麦α-淀粉酶1催化(β/α)8桶结构域结合的第四个β-α环处进行随机诱变获得了改善的活性和调节的作用模式。

Improved activity and modulated action pattern obtained by random mutagenesis at the fourth beta-alpha loop involved in substrate binding to the catalytic (beta/alpha)8-barrel domain of barley alpha-amylase 1.

作者信息

Matsui I, Svensson B

机构信息

Carlsberg Laboratory, Department of Chemistry, Gamle Carlsberg Vej 10, DK-2500 Copenhagen Valby, Denmark.

出版信息

J Biol Chem. 1997 Sep 5;272(36):22456-63. doi: 10.1074/jbc.272.36.22456.

Abstract

The functionality of the sequence Arg183-Gly184-Tyr185 of the substrate binding fourth beta-alpha loop in the (beta/alpha)8-barrel of barley alpha-amylase isozyme 1 (AMY1) was studied by random mutagenesis. A motif of polar Gly184 hydrophobic residues was present in active mutants, selected by starch plate screening of yeast transformants. Gly184 was important, probably due to the carbonyl group binding to Ca2+ and the spatial proximity of Phe181. Mutation of both flanking residues as in Ser183-Gly184-Met185 (SGM-) and TGL-AMY1 decreased the Ca2+ affinity. SGM-AMY1 has 2-fold increased activity for amylose but reduced activity on maltooligosaccharides, whereas KGY-AMY1 has up to 3-fold elevated activity toward the oligosaccharides. TGL-AMY1 has modest activity on all substrates. Shifted action pattern on maltooligosaccharides for NGY-, SGM-, and TGL-AMY1 support that Arg183 in wild type is located at subsites +1 and +2, accommodating two sugar rings toward the reducing end from the site of cleavage. In the crystal structure of barley alpha-amylase 2 (AMY2), Lys182 (equivalent to AMY1 Arg183) is hydrogen-bonded with sugar OH-3 in subsite +2. Higher Ki app for acarbose inhibition of KGY-AMY1 and parent AMY1 compared with the other mutants suggests favorable substrate interactions for Arg/Lys183. KGY-AMY1 was not inhibited by the AMY2-specific proteinaceous barley alpha-amylase/subtilisin inhibitor, although Lys182 of AMY2 is salt-linked to the inhibitor.

摘要

通过随机诱变研究了大麦α-淀粉酶同工酶1(AMY1)(β/α)8桶中底物结合第四β-α环的序列Arg183-Gly184-Tyr185的功能。通过对酵母转化体进行淀粉平板筛选,在活性突变体中发现了极性Gly184疏水残基的基序。Gly184很重要,可能是由于羰基与Ca2+结合以及Phe181的空间接近性。像Ser183-Gly184-Met185(SGM-)和TGL-AMY1那样两侧残基的突变降低了Ca2+亲和力。SGM-AMY1对直链淀粉的活性增加了2倍,但对麦芽低聚糖的活性降低,而KGY-AMY1对低聚糖的活性提高了多达3倍。TGL-AMY1对所有底物的活性适中。NGY-、SGM-和TGL-AMY1对麦芽低聚糖的作用模式发生改变,这支持野生型中的Arg183位于亚位点+1和+2,从切割位点向还原端容纳两个糖环。在大麦α-淀粉酶2(AMY2)的晶体结构中,Lys182(相当于AMY1的Arg183)与亚位点+2中的糖OH-3形成氢键。与其他突变体相比,KGY-AMY1和亲本AMY1对阿卡波糖抑制的Ki app更高,这表明Arg/Lys183具有良好的底物相互作用。KGY-AMY1不受AMY2特异性蛋白质大麦α-淀粉酶/枯草杆菌蛋白酶抑制剂的抑制,尽管AMY2的Lys182与该抑制剂形成盐键。

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