Abe Akemi, Yoshida Hiromi, Tonozuka Takashi, Sakano Yoshiyuki, Kamitori Shigehiro
Graduate School of Medicine, Kagawa University, Japan.
FEBS J. 2005 Dec;272(23):6145-53. doi: 10.1111/j.1742-4658.2005.05013.x.
Thermoactinomyces vulgaris R-47 alpha-amylase 1 (TVAI) has unique hydrolyzing activities for pullulan with sequence repeats of alpha-(1,4), alpha-(1,4), and alpha-(1,6) glycosidic linkages, as well as for starch. TVAI mainly hydrolyzes alpha-(1,4) glycosidic linkages to produce a panose, but it also hydrolyzes alpha-(1,6) glycosidic linkages with a lesser efficiency. X-ray structures of three complexes comprising an inactive mutant TVAI (D356N or D356N/E396Q) and a pullulan model oligosaccharide (P2; [Glc-alpha-(1,6)-Glc-alpha-(1,4)-Glc-alpha-(1,4)]2 or P5; [Glc-alpha-(1,6)-Glc-alpha-(1,4)-Glc-alpha-(1,4)]5) were determined. The complex D356N/P2 is a mimic of the enzyme/product complex in the main catalytic reaction of TVAI, and a structural comparison with Aspergillus oryzaealpha-amylase showed that the (-) subsites of TVAI are responsible for recognizing both starch and pullulan. D356N/E396Q/P2 and D356N/E396Q/P5 provided models of the enzyme/substrate complex recognizing the alpha-(1,6) glycosidic linkage at the hydrolyzing site. They showed that only subsites -1 and -2 at the nonreducing end of TVAI are effective in the hydrolysis of alpha-(1,6) glycosidic linkages, leading to weak interactions between substrates and the enzyme. Domain N of TVAI is a starch-binding domain acting as an anchor in the catalytic reaction of the enzyme. In this study, additional substrates were also found to bind to domain N, suggesting that domain N also functions as a pullulan-binding domain.
嗜热放线菌R-47α-淀粉酶1(TVAI)对具有α-(1,4)、α-(1,4)和α-(1,6)糖苷键序列重复的支链淀粉以及淀粉具有独特的水解活性。TVAI主要水解α-(1,4)糖苷键生成潘糖,但它也能以较低效率水解α-(1,6)糖苷键。测定了由无活性突变体TVAI(D356N或D356N/E396Q)和支链淀粉模型寡糖(P2;[Glc-α-(1,6)-Glc-α-(1,4)-Glc-α-(1,4)]2或P5;[Glc-α-(1,6)-Glc-α-(1,4)-Glc-α-(1,4)]5)组成的三种复合物的X射线结构。复合物D356N/P2模拟了TVAI主要催化反应中的酶/产物复合物,与米曲霉α-淀粉酶的结构比较表明,TVAI的(-)亚位点负责识别淀粉和支链淀粉。D356N/E396Q/P2和D356N/E396Q/P5提供了在水解位点识别α-(1,6)糖苷键的酶/底物复合物模型。它们表明,TVAI非还原端只有-1和-2亚位点对α-(1,6)糖苷键的水解有效,导致底物与酶之间的相互作用较弱。TVAI的结构域N是一个淀粉结合结构域,在酶的催化反应中起锚定作用。在本研究中,还发现其他底物也与结构域N结合,表明结构域N也作为支链淀粉结合结构域发挥作用。