Ernst Heidi A, Lo Leggio Leila, Willemoës Martin, Leonard Gordon, Blum Paul, Larsen Sine
Biophysical Chemistry Group, Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100 Copenhagen Ø, Denmark.
J Mol Biol. 2006 May 12;358(4):1106-24. doi: 10.1016/j.jmb.2006.02.056. Epub 2006 Mar 13.
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.
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。