Romero I, Celis H
Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, México D.F.
J Bioenerg Biomembr. 1992 Dec;24(6):617-24. doi: 10.1007/BF00762354.
Chemical modifications with water-soluble carbodiimides (EDC and CMC) were performed to elucidate whether some carboxyl residues are involved in the catalytic activity of membrane-bound pyrophosphatase of Rhodospirillum rubrum. EDC and CMC cause a loss of hydrolytic activity following pseudo-first-order kinetics up to 10 min of reaction. The enzyme was completely protected against EDC inhibition by PPi or Mg2+, whereas PPi or Mg2+ gave partial protection against CMC inactivation. Mg-PPi protected completely against the inhibition caused by both carbodiimides. These data suggest that the carboxyl moiety modified by EDC is at the active site. At longer times of inactivation with both carbodiimides, we could not observe a linear relationship in semilogarithmic plots of residual activity versus time, indicating that at least two carboxyls are involved in the inactivation, which correlates with the partial protection against CMC inactivation by PPi. We found that the activator site for Mg2+ is apparently at or near the active site of the enzyme. This is supported by the fact that PPi protects completely the activator effect of this divalent cation.
使用水溶性碳二亚胺(EDC和CMC)进行化学修饰,以阐明某些羧基残基是否参与了红螺菌膜结合焦磷酸酶的催化活性。EDC和CMC在反应长达10分钟的时间内,按照准一级动力学导致水解活性丧失。PPi或Mg2+可完全保护该酶免受EDC抑制,而PPi或Mg2+对CMC失活仅提供部分保护。Mg-PPi可完全保护该酶免受两种碳二亚胺引起的抑制。这些数据表明,被EDC修饰的羧基部分位于活性位点。在用两种碳二亚胺进行更长时间的失活处理时,我们在残余活性与时间的半对数图中未观察到线性关系,这表明至少有两个羧基参与了失活过程,这与PPi对CMC失活的部分保护作用相关。我们发现Mg2+的激活位点显然在酶的活性位点处或附近。这一观点得到了PPi完全保护该二价阳离子激活作用这一事实的支持。