Penninga D, Strokopytov B, Rozeboom H J, Lawson C L, Dijkstra B W, Bergsma J, Dijkhuizen L
Department of Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute (GBB), University of Groningen, Haren, The Netherlands.
Biochemistry. 1995 Mar 14;34(10):3368-76. doi: 10.1021/bi00010a028.
Tyrosine 195 is located in the center of the active site cleft of cyclodextrin glycosyltransferase (EC 2.4.1.19) from Bacillus circulans strain 251. Alignment of amino acid sequences of CGTases and alpha-amylases, and the analysis of the binding mode of the substrate analogue acarbose in the active site cleft [Strokopytov, B., et al. (1995) Biochemistry 34, (in press)], suggested that Tyr195 plays an important role in cyclization of oligosaccharides. Tyr195 therefore was replaced with Phe (Y195F), Trp (Y195W), Leu (Y195L), and Gly (Y195G). Mutant proteins were purified and crystallized, and their X-ray structures were determined at 2.5-2.6 angstrum resolution, allowing a detailed comparison of their biochemical properties and three-dimensional structures with those of the wild-type CGTase protein. The mutant proteins possessed significantly reduced cyclodextrin forming and coupling activities but were not negatively affected in the disproportionation and saccharifying reactions. Also under production process conditions, after a 45 h incubation with a 10% starch solution, the Y195W, Y195L, and Y195G mutants showed a lower overall conversion of starch into cyclodextrins. These mutants produced a considerable amount of linear maltooligosaccharides. The presence of aromatic amino acids (Tyr or Phe) at the Tyr195 position thus appears to be of crucial importance for an efficient cyclization reaction, virtually preventing the formation of linear products. Mass spectrometry of the Y195L reaction mixture, but not that of the other mutants and the wild type, revealed a shift toward the synthesis (in low yields) of larger products, especially of beta- and gamma- (but no alpha-) cyclodextrins and minor amounts of delta-, epsilon-, zeta- and eta-cyclodextrins.(ABSTRACT TRUNCATED AT 250 WORDS)
酪氨酸195位于环状芽孢杆菌251菌株的环糊精糖基转移酶(EC 2.4.1.19)活性位点裂隙的中心。环糊精糖基转移酶(CGTases)和α-淀粉酶氨基酸序列的比对,以及底物类似物阿卡波糖在活性位点裂隙中的结合模式分析[斯特罗科皮托夫,B.等人(1995年)《生物化学》34卷,(即将出版)]表明,酪氨酸195在寡糖环化过程中起重要作用。因此,将酪氨酸195替换为苯丙氨酸(Y195F)、色氨酸(Y195W)、亮氨酸(Y195L)和甘氨酸(Y195G)。对突变蛋白进行了纯化和结晶,并在2.5 - 2.6埃分辨率下测定了它们的X射线结构,从而能够将它们的生化特性和三维结构与野生型CGTase蛋白进行详细比较。突变蛋白的环糊精形成和偶联活性显著降低,但歧化反应和糖化反应未受到负面影响。同样在生产工艺条件下,用10%淀粉溶液孵育45小时后,Y195W、Y195L和Y195G突变体的淀粉向环糊精的总体转化率较低。这些突变体产生了大量的线性麦芽寡糖。因此,酪氨酸195位置存在芳香族氨基酸(酪氨酸或苯丙氨酸)对于高效环化反应似乎至关重要,实际上可防止线性产物的形成。Y195L反应混合物的质谱分析显示(产量较低)向合成更大产物的方向转变,尤其是β-和γ-(但没有α-)环糊精以及少量δ-、ε-、ζ-和η-环糊精,而其他突变体和野生型则没有这种情况。(摘要截取自250词)