Choi Kyung H, Lai Vicky, Foster Christine E, Morris Aaron J, Tolan Dean R, Allen Karen N
Department of Physiology and Biophysics, Boston University School of Medicine, 715 Albany Street, Boston, Massachusetts 02118-2394, USA.
Biochemistry. 2006 Jul 18;45(28):8546-55. doi: 10.1021/bi060239d.
Enzymes that utilize a Schiff-base intermediate formed with their substrates and that share the same alpha/beta barrel fold comprise a mechanistically diverse superfamily defined in the SCOPS database as the class I aldolase family. The family includes the "classical" aldolases fructose-1,6-(bis)phosphate (FBP) aldolase, transaldolase, and 2-keto-3-deoxy-6-phosphogluconate aldolase. Moreover, the N-acetylneuraminate lyase family has been included in the class I aldolase family on the basis of similar Schiff-base chemistry and fold. Herein, we generate primary sequence identities based on structural alignment that support the homology and reveal additional mechanistic similarities beyond the common use of a lysine for Schiff-base formation. The structural and mechanistic correspondence comprises the use of a catalytic dyad, wherein a general acid/base residue (Glu, Tyr, or His) involved in Schiff-base chemistry is stationed on beta-strand 5 of the alpha/beta barrel. The role of the acid/base residue was probed by site-directed mutagenesis and steady-state and pre-steady-state kinetics on a representative member of this family, FBP aldolase. The kinetic results are consistent with the participation of this conserved residue or position in the protonation of the carbinolamine intermediate and dehydration of the Schiff base in FBP aldolase and, by analogy, the class I aldolase family.
那些与底物形成席夫碱中间体且具有相同α/β桶状折叠的酶,构成了一个在机制上具有多样性的超家族,在SCOPS数据库中被定义为I类醛缩酶家族。该家族包括“经典”醛缩酶,即果糖-1,6-二磷酸(FBP)醛缩酶、转醛缩酶和2-酮-3-脱氧-6-磷酸葡萄糖酸醛缩酶。此外,基于相似的席夫碱化学性质和折叠结构,N-乙酰神经氨酸裂解酶家族也被纳入I类醛缩酶家族。在此,我们基于结构比对生成了一级序列同一性,这支持了它们的同源性,并揭示了除了赖氨酸在席夫碱形成中的共同用途之外的其他机制相似性。结构和机制上的对应包括使用催化二元组,其中参与席夫碱化学的一般酸/碱残基(Glu、Tyr或His)位于α/β桶的β链5上。通过定点诱变以及对该家族的一个代表性成员FBP醛缩酶进行稳态和预稳态动力学研究,探究了酸/碱残基的作用。动力学结果与该保守残基或位置参与FBP醛缩酶中甲醇胺中间体的质子化以及席夫碱的脱水过程一致,并且类推到I类醛缩酶家族。