Gounaris A D, Turkenkopf I, Civerchia L L, Greenlie J
Biochim Biophys Acta. 1975 Oct 20;405(2):492-9.
Pyruvate decarboxylase dissociates into sub-units of one half the molecular weight at alkaline pH. At the same conditions the cofactors thiamine pyrophosphate and Mg2+ are released and can be separated from the protein. Thiamine pyrophosphate is an obligatory cofactor for reconstitution to the oligomer [1]. In this study the effect of thiamine pyrophosphate derivatives (thiamine monophosphate, thiamine, and thiazole pyrophosphate) upon the reconstitution procedure was evaluated. The complete association of sub-units to form active oligomer was attained only when thiamine pyrophosphate was present. It is concluded that both the pyrimidine ring and the pyrophosphate group are required for productive co-enzyme binding and it is proposed that this interaction effects a conformational change which promotes protomer aggregation to form the enzymatically active holoenzyme. In addition data are presented which indicate that the monomer unit is 60 000 +/- 3000 daltons and that the N-terminal amino acid is histidine. Since the molecular weight of the active oligomer is 230 000 it is proposed that pyruvate decarboxylase is a tetramer comprised of four identical or nearly identical monomer units.
丙酮酸脱羧酶在碱性pH条件下会解离成分子量减半的亚基。在相同条件下,辅因子硫胺素焦磷酸和Mg2+会被释放出来,并可与蛋白质分离。硫胺素焦磷酸是重组为寡聚体的必需辅因子[1]。在本研究中,评估了硫胺素焦磷酸衍生物(硫胺素单磷酸、硫胺素和噻唑焦磷酸)对重组过程的影响。只有当存在硫胺素焦磷酸时,亚基才能完全缔合形成有活性的寡聚体。得出的结论是,嘧啶环和焦磷酸基团对于有效的辅酶结合都是必需的,并且有人提出这种相互作用会引起构象变化,从而促进原体聚集形成具有酶活性的全酶。此外,给出的数据表明单体单元的分子量为60 000±3000道尔顿,且N端氨基酸是组氨酸。由于活性寡聚体的分子量为230 000,因此有人提出丙酮酸脱羧酶是由四个相同或几乎相同的单体单元组成的四聚体。