Abe Akemi, Tonozuka Takashi, Sakano Yoshiyuki, Kamitori Shigehiro
Department of Biotechnology and Life Science, Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan.
J Mol Biol. 2004 Jan 16;335(3):811-22. doi: 10.1016/j.jmb.2003.10.078.
The X-ray structures of complexes of Thermoactinomyces vulgaris R-47 alpha-amylase 1 (TVAI) with an inhibitor acarbose and an inactive mutant TVAI with malto-hexaose and malto-tridecaose have been determined at 2.6, 2.0 and 1.8A resolution, and the structures have been refined to R-factors of 0.185 (R(free)=0.225), 0.184 (0.217) and 0.164 (0.200), respectively, with good chemical geometries. Acarbose binds to the catalytic site of TVAI, and interactions between acarbose and the enzyme are very similar to those found in other structure-solved alpha-amylase/acarbose complexes, supporting the proposed catalytic mechanism. Based on the structure of the TVAI/acarbose complex, the binding mode of pullulan containing alpha-(1,6) glucoside linkages could be deduced. Due to the structural difference caused by the replaced amino acid residue (Gln396 for Glu) in the catalytic site, malto-hexaose and malto-tridecaose partially bind to the catalytic site, giving a mimic of the enzyme/product complex. Besides the catalytic site, four sugar-binding sites on the molecular surface are found in these X-ray structures. Two sugar-binding sites in domain N hold the oligosaccharides with a regular helical structure of amylose, which suggests that the domain N is a starch-binding domain acting as an anchor to starch in the catalytic reaction of the enzyme. An assay of hydrolyzing activity for the raw starches confirmed that TVAI can efficiently hydrolyze raw starch.
已分别在2.6埃、2.0埃和1.8埃分辨率下测定了嗜热放线菌R - 47α -淀粉酶1(TVAI)与抑制剂阿卡波糖以及与麦芽六糖和麦芽十三糖形成的无活性突变体TVAI复合物的X射线结构,且这些结构已分别精修至R因子为0.185(R自由 = 0.225)、0.184(0.217)和0.164(0.200),化学几何结构良好。阿卡波糖与TVAI的催化位点结合,且阿卡波糖与该酶之间的相互作用与在其他已解析结构的α -淀粉酶/阿卡波糖复合物中发现的相互作用非常相似,支持了所提出的催化机制。基于TVAI/阿卡波糖复合物的结构,可以推断出含α-(1,6)糖苷键的支链淀粉的结合模式。由于催化位点中被取代的氨基酸残基(谷氨酰胺396被谷氨酸取代)导致的结构差异,麦芽六糖和麦芽十三糖部分结合到催化位点,形成酶/产物复合物的模拟物。除了催化位点外,在这些X射线结构中还发现分子表面有四个糖结合位点。结构域N中的两个糖结合位点以直链淀粉的规则螺旋结构容纳寡糖,这表明结构域N是一个淀粉结合结构域,在酶的催化反应中作为与淀粉结合的锚定结构域。对生淀粉水解活性的测定证实TVAI能有效水解生淀粉。