Leoncini R, Pagani R, Marinello E, Keleti T
Institute of Biological Chemistry, University of Siena, Italy.
Biochim Biophys Acta. 1989 Jan 19;994(1):52-8. doi: 10.1016/0167-4838(89)90061-7.
The inhibition of highly purified rat liver L-threonine dehydratase (L-threonine hydro-lyase (deaminating), EC 4.2.1.16) by aminothiols (L-cysteine, D-cysteine, cysteamine) has been studied. Single inhibition experiments evaluated by Lineweaver-Burk and Dixon plots showed, in a given concentration range, partially (parabolic) competitive inhibitions, indicating two binding sites for each inhibitor. Double inhibition experiments revealed that the inhibition was antagonistic, the two inhibitors weakening each other's effect. Formation of EI1 and EI2 binary complexes, and ESI1, ESI2 and EI1I2 ternary complexes was demonstrated, while formation of the quaternary complex ESI1I2 was ruled out. It is assumed that one inhibitor-binding site coincides with the substrate-binding center while the second inhibitor-binding (allosteric, regulatory) site may comprise the pyridoxal-phosphate-binding SH group(s). The comparison between Km and Ki values and the evaluation of intracellular concentrations of L-threonine, L-cysteine and cysteamine suggest a possible physiological role of the inhibition.
已对氨基硫醇(L-半胱氨酸、D-半胱氨酸、半胱胺)对高度纯化的大鼠肝脏L-苏氨酸脱水酶(L-苏氨酸水解酶(脱氨基),EC 4.2.1.16)的抑制作用进行了研究。通过Lineweaver-Burk和Dixon作图评估的单抑制实验表明,在给定浓度范围内,存在部分(抛物线型)竞争性抑制,这表明每种抑制剂有两个结合位点。双抑制实验表明抑制作用具有拮抗性,两种抑制剂会相互削弱彼此的作用。已证实形成了EI1和EI2二元复合物以及ESI1、ESI2和EI1I2三元复合物,同时排除了四元复合物ESI1I2的形成。据推测,一个抑制剂结合位点与底物结合中心重合,而第二个抑制剂结合(变构、调节)位点可能包含与磷酸吡哆醛结合的SH基团。Km和Ki值的比较以及对细胞内L-苏氨酸、L-半胱氨酸和半胱胺浓度的评估表明这种抑制作用可能具有生理作用。