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通过对在酿酒酵母中表达的泡盛曲霉变种河合葡糖淀粉酶进行突变来分析生淀粉结合结构域。

Analysis of the raw starch-binding domain by mutation of a glucoamylase from Aspergillus awamori var. kawachi expressed in Saccharomyces cerevisiae.

作者信息

Goto M, Semimaru T, Furukawa K, Hayashida S

机构信息

Department of Agricultural Chemistry, Kyushu University, Fukuoka, Japan.

出版信息

Appl Environ Microbiol. 1994 Nov;60(11):3926-30. doi: 10.1128/aem.60.11.3926-3930.1994.

Abstract

Carboxy-terminal deletions were introduced into the raw starch-binding domain (A-515 to R-615) encoded by the gene for glucoamylase I (GAI) from Aspergillus awamori var. kawachi. Genes coding for proteins designated GA596 (A-1 to E-596), GA570 (A-1 to A-570), and GA559 (A-1 to N-559) were constructed and resulted in truncated proteins. All of the mutant genes were expressed heterologously in Saccharomyces cerevisiae. GA596 adsorbed to raw starch and digested it. GA570 and GA559 did not adsorb to raw starch or to an alpha-cyclodextrin-Sepharose CL-4B gel under our experimental conditions. However, GA570 was able to digest raw starch, and the digestion of raw starch by GA570 was inhibited by beta-cyclodextrin. Residue Trp-562 of GAI, which was suggested previously to contribute to formation of an inclusion complex with raw starch, was replaced by Leu (GAW562L), Phe (GAW562F), and Gly (GAW562G). GAW562L and GAW562F adsorbed to raw starch and an alpha-cyclodextrin gel, but GAW562G did not. Although GAW562L digested raw starch to the same extent as wild-type GAI (designated GAY), GAW562F and GAW562G exhibited less ability to digest raw starch. On the basis of our results, it appears that the sequence around Trp-562, PL(W-562)YVTVTLPA, is the minimal sequence necessary for digestion of raw starch and that hydrophobic residue Trp-562 contributes to formation of an inclusion complex. The sequence near Trp-589, which has abundant hydrogen bond-forming residues and the charged amino acid residues needed for stable adsorption to raw starch, probably assists in the formation of the inclusion complex.

摘要

将羧基末端缺失引入到泡盛曲霉变种河合的糖化酶I(GAI)基因编码的生淀粉结合结构域(A-515至R-615)中。构建了编码名为GA596(A-1至E-596)、GA570(A-1至A-570)和GA559(A-1至N-559)的蛋白质的基因,得到了截短的蛋白质。所有突变基因都在酿酒酵母中进行了异源表达。GA596吸附到生淀粉上并对其进行消化。在我们的实验条件下,GA570和GA559不吸附到生淀粉或α-环糊精-琼脂糖CL-4B凝胶上。然而,GA570能够消化生淀粉,并且GA570对生淀粉的消化受到β-环糊精的抑制。先前认为有助于与生淀粉形成包合物的GAI的Trp-562残基被Leu(GAW562L)、Phe(GAW562F)和Gly(GAW562G)取代。GAW562L和GAW562F吸附到生淀粉和α-环糊精凝胶上,但GAW562G没有。尽管GAW562L消化生淀粉的程度与野生型GAI(命名为GAY)相同,但GAW562F和GAW562G消化生淀粉的能力较弱。根据我们的结果,似乎Trp-562周围的序列PL(W-562)YVTVTLPA是消化生淀粉所需的最小序列,并且疏水性残基Trp-562有助于形成包合物。Trp-589附近的序列具有丰富的形成氢键的残基和与生淀粉稳定吸附所需的带电荷氨基酸残基,可能有助于包合物的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9735/201917/c6e7342269aa/aem00028-0038-a.jpg

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