Cid A, Vara F, Serrano R
Arch Biochem Biophys. 1987 Feb 1;252(2):496-500. doi: 10.1016/0003-9861(87)90056-7.
The inhibition of the proton-pumping ATPases of yeast and oat root plasma membranes by dicyclohexylcarbodiimide (DCCD) can be correlated with the covalent incorporation of the inhibitor. Full inhibition of the yeast enzyme required the incorporation of about 1 mol DCCD/mol of the ATPase polypeptide of 100 kDa. A kinetic study of the interaction of DCCD with the yeast and oat ATPases indicates a second-order rate constant of about 500 M-1 min-1 and a stoichiometry of 1 mol DCCD/mol of enzyme, in agreement with the amount of DCCD incorporated by the yeast enzyme. It is proposed that DCCD reacts with a single carboxylic group present in a hydrophobic region of these proton-pumping ATPases and which could participate in proton binding and transport.
二环己基碳二亚胺(DCCD)对酵母和燕麦根细胞质膜质子泵ATP酶的抑制作用与抑制剂的共价掺入有关。酵母酶的完全抑制需要每摩尔100 kDa的ATP酶多肽掺入约1摩尔DCCD。对DCCD与酵母和燕麦ATP酶相互作用的动力学研究表明,二级速率常数约为500 M-1 min-1,化学计量比为每摩尔酶1摩尔DCCD,这与酵母酶掺入的DCCD量一致。有人提出,DCCD与这些质子泵ATP酶疏水区域中存在的单个羧基反应,该羧基可能参与质子结合和转运。