Kovina M V, Bykova I A, Meshalkina L E, Kochetov G A
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, 119992, Russia.
Biochemistry (Mosc). 2003 Feb;68(2):247-51. doi: 10.1023/a:1022665832515.
It has long been known that formation of a catalytically active holotransketolase from the apoenzyme and thiamine diphosphate (ThDP) is accompanied by appearance, in both the absorption and CD spectra, of a new band. Binding and subsequent conversion of transketolase substrates bring about changes in the intensity of this band. The observation of these changes allows the investigator to monitor the coenzyme-to-apoenzyme binding and the conversion of the substrates during the transketolase reaction and thus to kinetically characterize its individual steps. As regards the new absorption band induced by ThDP binding, its nature, until recently, remained unknown. The reason for its appearance was considered to be either the formation of a charge transfer complex between ThDP and tryptophan (phenylalanine) residue or stacking interaction between the residues of aromatic amino acids. They are thought to be brought together as a result of conformational changes of the apoenzyme during its interaction with the coenzyme. However none of these hypotheses had been substantiated experimentally. According to our hypothesis, the induced absorption band is that of the imino form of ThDP resulting from three contributing features of the ThDP binding site of transketolase: the relative hydrophobicity of this site, hydrogen bonding of the N1;-atom of the ThDP aminopyrimidine ring to Glu418, and base stacking interactions between the aminopyrimidine ring of ThDP and Phe445.
长期以来,人们一直知道,由脱辅基酶和硫胺二磷酸(ThDP)形成具有催化活性的全转酮醇酶时,吸收光谱和圆二色光谱中都会出现一条新带。转酮醇酶底物的结合及随后的转化会导致这条带的强度发生变化。观察这些变化可使研究人员监测转酮醇酶反应过程中辅酶与脱辅基酶的结合以及底物的转化,从而从动力学角度表征其各个步骤。关于ThDP结合诱导产生的新吸收带,直到最近,其本质仍不清楚。其出现的原因被认为要么是ThDP与色氨酸(苯丙氨酸)残基之间形成了电荷转移复合物,要么是芳香族氨基酸残基之间存在堆积相互作用。人们认为,在脱辅基酶与辅酶相互作用过程中,由于其构象变化,这些残基会聚集在一起。然而,这些假设均未得到实验证实。根据我们的假设,诱导吸收带是ThDP的亚氨基形式的吸收带,这是由转酮醇酶的ThDP结合位点的三个特征导致的:该位点的相对疏水性、ThDP氨基嘧啶环的N1原子与Glu418之间的氢键以及ThDP氨基嘧啶环与Phe445之间的碱基堆积相互作用。