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黑曲霉葡糖淀粉酶1结构域间连接子变体的稳定性与功能

Stability and function of interdomain linker variants of glucoamylase 1 from Aspergillus niger.

作者信息

Sauer J, Christensen T, Frandsen T P, Mirgorodskaya E, McGuire K A, Driguez H, Roepstorff P, Sigurskjold B W, Svensson B

机构信息

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

出版信息

Biochemistry. 2001 Aug 7;40(31):9336-46. doi: 10.1021/bi010515i.

Abstract

Several variants of glucoamylase 1 (GA1) from Aspergillus niger were created in which the highly O-glycosylated peptide (aa 468--508) connecting the (alpha/alpha)(6)-barrel catalytic domain and the starch binding domain was substituted at the gene level by equivalent segments of glucoamylases from Hormoconis resinae, Humicola grisea, and Rhizopus oryzae encoding 5, 19, and 36 amino acid residues. Variants were constructed in which the H. resinae linker was elongated by proline-rich sequences as this linker itself apparently was too short to allow formation of the corresponding protein variant. Size and isoelectric point of GA1 variants reflected differences in linker length, posttranslational modification, and net charge. While calculated polypeptide chain molecular masses for wild-type GA1, a nonnatural proline-rich linker variant, H. grisea, and R. oryzae linker variants were 65,784, 63,777, 63,912, and 65,614 Da, respectively, MALDI-TOF-MS gave values of 82,042, 73,800, 73,413, and 90,793 Da, respectively, where the latter value could partly be explained by an N-glycosylation site introduced near the linker C-terminus. The k(cat) and K(m) for hydrolysis of maltooligodextrins and soluble starch, and the rate of hydrolysis of barley starch granules were essentially the same for the variants as for wild-type GA1. beta-Cyclodextrin, acarbose, and two heterobidentate inhibitors were found by isothermal titration calorimetry to bind to the catalytic and starch binding domains of the linker variants, indicating that the function of the active site and the starch binding site was maintained. The stability of GA1 linker variants toward GdnHCl and heat, however, was reduced compared to wild-type.

摘要

构建了黑曲霉葡糖淀粉酶1(GA1)的几种变体,其中连接(α/α)(6)-桶状催化结构域和淀粉结合结构域的高度O-糖基化肽段(氨基酸468 - 508)在基因水平上被来自树脂毛霉、灰腐质霉和米根霉的葡糖淀粉酶的等效片段所取代,这些片段分别编码5、19和36个氨基酸残基。构建了变体,其中树脂毛霉的连接子通过富含脯氨酸的序列进行了延长,因为该连接子本身显然太短,无法形成相应的蛋白质变体。GA1变体的大小和等电点反映了连接子长度、翻译后修饰和净电荷的差异。虽然野生型GA1、非天然富含脯氨酸连接子变体、灰腐质霉和米根霉连接子变体的计算多肽链分子量分别为65,784、63,777、63,912和65,614 Da,但基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)给出的值分别为82,042、73,800、73,413和90,793 Da,后者的值部分可以通过在连接子C末端附近引入的一个N-糖基化位点来解释。对于麦芽寡糖糊精和可溶性淀粉水解的k(cat)和K(m),以及大麦淀粉颗粒的水解速率,这些变体与野生型GA1基本相同。通过等温滴定量热法发现,β-环糊精、阿卡波糖和两种异双齿抑制剂与连接子变体的催化和淀粉结合结构域结合,表明活性位点和淀粉结合位点的功能得以维持。然而,与野生型相比,GA1连接子变体对盐酸胍和热的稳定性降低。

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