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嗜热栖热菌α-葡萄糖苷酶的结构:对GH31中结构域保守性和底物识别的影响

Structure of the Sulfolobus solfataricus alpha-glucosidase: implications for domain conservation and substrate recognition in GH31.

作者信息

Ernst Heidi A, Lo Leggio Leila, Willemoës Martin, Leonard Gordon, Blum Paul, Larsen Sine

机构信息

Biophysical Chemistry Group, Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100 Copenhagen Ø, Denmark.

出版信息

J Mol Biol. 2006 May 12;358(4):1106-24. doi: 10.1016/j.jmb.2006.02.056. Epub 2006 Mar 13.

Abstract

The crystal structure of alpha-glucosidase MalA from Sulfolobus solfataricus has been determined at 2.5Angstrom resolution. It provides a structural model for enzymes representing the major specificity in glycoside hydrolase family 31 (GH31), including alpha-glucosidases from higher organisms, involved in glycogen degradation and glycoprotein processing. The structure of MalA shows clear differences from the only other structure known from GH31, alpha-xylosidase YicI. MalA and YicI share only 23% sequence identity. Although the two enzymes display a similar domain structure and both form hexamers, their structures differ significantly in quaternary organization: MalA is a dimer of trimers, YicI a trimer of dimers. MalA and YicI also differ in their substrate specificities, as shown by kinetic measurements on model chromogenic substrates. In addition, MalA has a clear preference for maltose (Glc-alpha1,4-Glc), whereas YicI prefers isoprimeverose (Xyl-alpha1,6-Glc). The structural origin of this difference occurs in the -1 subsite where MalA residues Asp251 and Trp284 could interact with OH6 of the substrate. The structure of MalA in complex with beta-octyl-glucopyranoside has been determined. It reveals Arg400, Asp87, Trp284, Met321 and Phe327 as invariant residues forming the +1 subsite in the GH31 alpha-glucosidases. Structural comparisons with other GH families suggest that the GH31 enzymes belong to clan GH-D.

摘要

已确定嗜热栖热菌α-葡萄糖苷酶MalA的晶体结构,分辨率为2.5埃。它为糖苷水解酶家族31(GH31)中具有主要特异性的酶提供了一个结构模型,该家族包括来自高等生物的α-葡萄糖苷酶,参与糖原降解和糖蛋白加工。MalA的结构与GH31中唯一已知的另一种结构α-木糖苷酶YicI有明显差异。MalA和YicI的序列同一性仅为23%。尽管这两种酶显示出相似的结构域结构且都形成六聚体,但它们的结构在四级组织上有显著差异:MalA是三聚体的二聚体,YicI是二聚体的三聚体。如对模型显色底物的动力学测量所示,MalA和YicI在底物特异性上也有所不同。此外,MalA明显偏好麦芽糖(Glc-α1,4-Glc),而YicI更喜欢异樱草糖(Xyl-α1,6-Glc)。这种差异的结构起源发生在-1亚位点,MalA的Asp251和Trp284残基可能与底物的OH6相互作用。已确定MalA与β-辛基葡萄糖苷复合物的结构。它揭示了Arg400、Asp87、Trp284、Met321和Phe327是在GH31α-葡萄糖苷酶中形成+1亚位点的不变残基。与其他GH家族的结构比较表明,GH31酶属于GH-D家族。

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