Park Kwang-Hyun, Jung Jong-Hyun, Park Sung-Goo, Lee Myeong-Eun, Holden James F, Park Cheon-Seok, Woo Eui-Jeon
Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 305-806, Republic of Korea.
Graduate School of Biotechnology and Institute of Life Science and Resources, Kyung Hee University, Yongin 446-701, Republic of Korea.
Acta Crystallogr D Biol Crystallogr. 2014 Jun;70(Pt 6):1659-68. doi: 10.1107/S1399004714006567. Epub 2014 May 30.
A novel maltose-forming α-amylase (PSMA) was recently found in the hyperthermophilic archaeon Pyrococcus sp. ST04. This enzyme shows <13% amino-acid sequence identity to other known α-amylases and displays a unique enzymatic property in that it hydrolyzes both α-1,4-glucosidic and α-1,6-glucosidic linkages of substrates, recognizing only maltose units, in an exo-type manner. Here, the crystal structure of PSMA at a resolution of 1.8 Å is reported, showing a tight ring-shaped tetramer with monomers composed of two domains: an N-domain (amino acids 1-341) with a typical GH57 family (β/α)7-barrel fold and a C-domain (amino acids 342-597) composed of α-helical bundles. A small closed cavity observed in proximity to the catalytic residues Glu153 and Asp253 at the domain interface has the appropriate volume and geometry to bind a maltose unit, accounting for the selective exo-type maltose hydrolysis of the enzyme. A narrow gate at the putative subsite +1 formed by residue Phe218 and Phe452 is essential for specific cleavage of glucosidic bonds. The closed cavity at the active site is connected to a short substrate-binding channel that extends to the central hole of the tetramer, exhibiting a geometry that is significantly different from classical maltogenic amylases or β-amylases. The structural features of this novel exo-type maltose-forming α-amylase provide a molecular basis for its unique enzymatic characteristics and for its potential use in industrial applications and protein engineering.
最近在嗜热古菌火球菌属ST04中发现了一种新型的形成麦芽糖的α-淀粉酶(PSMA)。该酶与其他已知的α-淀粉酶的氨基酸序列同一性小于13%,并表现出独特的酶学性质,即它以外切型方式水解底物的α-1,4-糖苷键和α-1,6-糖苷键,只识别麦芽糖单元。在此,报道了分辨率为1.8 Å的PSMA晶体结构,显示出紧密的环状四聚体,单体由两个结构域组成:具有典型GH57家族(β/α)7桶状折叠的N结构域(氨基酸1-341)和由α-螺旋束组成的C结构域(氨基酸342-597)。在结构域界面处靠近催化残基Glu153和Asp253处观察到一个小的封闭腔,其具有合适的体积和几何形状以结合一个麦芽糖单元,这解释了该酶选择性的外切型麦芽糖水解。由残基Phe218和Phe452在假定的亚位点+1处形成的狭窄通道对于糖苷键的特异性切割至关重要。活性位点处的封闭腔与一个短的底物结合通道相连,该通道延伸至四聚体的中心孔,呈现出与经典的产麦芽糖淀粉酶或β-淀粉酶显著不同的几何形状。这种新型外切型形成麦芽糖的α-淀粉酶的结构特征为其独特的酶学特性以及在工业应用和蛋白质工程中的潜在用途提供了分子基础。