Nakamura A, Haga K, Yamane K
Institute of Biological Sciences, University of Tsukuba, Ibaraki, Japan.
Biochemistry. 1993 Jul 6;32(26):6624-31. doi: 10.1021/bi00077a015.
Cyclodextrin glucanotransferase (CGTase) catalyzes the formation of cyclodextrins from amylose through an intramolecular transglycosylation reaction. On the basis of the three-dimensional structures of CGTases three histidine residues, which are conserved between CGTases and alpha-amylases, are located at the active center and are proposed to constitute the substrate binding sites. The three histidine residues (His-140, His-233, and His-327) of CGTase from alkalophilic Bacillus sp. 1011 were individually replaced by site-directed mutagenesis to probe their roles in catalysis. Asparagine-replaced CGTases (H140N-, H233N-, and H327N-CGTase) retained cyclization activity but had altered production ratios of alpha-, beta-, and gamma-cyclodextrin. Replacement of histidine by asparagine residues strongly affected the kcat for beta-cyclodextrin-forming, coupling, and hydrolyzing activities, whereas it barely affected the Km values. The activation energies for alpha-cyclodextrin hydrolysis were increased more than 12 kJ/mol by the replacement. Furthermore, the Ki values of acarbose, which is thought to be a transition-state analog of glycosidase catalysis, were 2-3 orders of magnitude larger in asparagine-replaced CGTases than that in wild-type CGTase. Therefore, the three histidine residues participate in the stabilization of the transition state, whereas they participate little in ground-state substrate binding. H327N-CGTase had decreased activity over an alkaline pH range, indicating that His-327 is important for catalysis over an alkaline pH range.
环糊精葡萄糖基转移酶(CGTase)通过分子内转糖基化反应催化直链淀粉形成环糊精。基于CGTases的三维结构,在CGTases和α-淀粉酶之间保守的三个组氨酸残基位于活性中心,并被认为构成底物结合位点。嗜碱芽孢杆菌1011的CGTase的三个组氨酸残基(His-140、His-233和His-327)通过定点诱变分别被取代,以探究它们在催化中的作用。天冬酰胺取代的CGTases(H140N-CGTase、H233N-CGTase和H327N-CGTase)保留了环化活性,但改变了α-、β-和γ-环糊精的生产比例。用天冬酰胺残基取代组氨酸强烈影响β-环糊精形成、偶联和水解活性的kcat,而对Km值几乎没有影响。取代使α-环糊精水解的活化能增加超过12kJ/mol。此外,被认为是糖苷酶催化过渡态类似物的阿卡波糖的Ki值,在天冬酰胺取代的CGTases中比野生型CGTase大2-3个数量级。因此,这三个组氨酸残基参与过渡态的稳定,而它们对基态底物结合的参与很少。H327N-CGTase在碱性pH范围内活性降低,表明His-327对碱性pH范围内的催化很重要。