首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Characterization of the monovalent and divalent cation requirements for the xenobiotic carboxylic acid: CoA ligases of bovine liver mitochondria
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Characterization of the monovalent and divalent cation requirements for the xenobiotic carboxylic acid: CoA ligases of bovine liver mitochondria

机译:异源羧酸的单价和二价阳离子需求的表征:牛肝线粒体的CoA连接酶

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摘要

The XL-I, XL-II and XL-III forms of xenobiotic/medium-chain fatty acid: CoA ligase were found to be inactive toward benzoate in the absence of either monovalent or divalent cations. The absolute requirement for monovalent cation was satisfied by either K~+, Rb~+, or NH_4~+. Na~+ only supported a very low rate. Varying the nature of the anion had only a minor effect. For XL-I and XL-II, the optimum concentration of K~+ was 50 mM; higher (physiologic) concentrations led to a decrease in activity. K~+ did not inhibit XL-III. The absolute requirement for divalent cation was satisfied by Mg~(2+) or Mn~(2+), or to a lesser extent by Co~(2+) or Fe~(2+). For the XL-I and XL-II, excess uncomplexed Mg~(2+) or Mn~(2+) decreased the rate; the optimum concentration of Mn~(2+) was approximately the same as the concentration of ATP in the assay, and the optimum concentration of Mg~(2+) was approximately double the concentration of ATP in the assay. This is consistent with the concept that the divalent cation is required to complex with ATP and with the known stability constants for the ATP complexes of these two divalent cations. XL-III was not inhibited by uncomplexed divalent cations. Uncomplexed ATP was a moderate inhibitor of XL-I and XL-II, and a weak inhibitor of XL-III. The data indicate that in vivo benzoate conjugation is K~+ and Mg~(2+) dependent, and that the cation effects are complex and differ for XL-I and XL-II as compared with XL-III.
机译:发现在没有一价或二价阳离子的情况下,异种生物/中链脂肪酸:CoA连接酶的XL-1,XL-II和XL-III形式对苯甲酸酯无活性。单价阳离子的绝对要求通过K〜+,Rb〜+或NH_4〜+满足。 Na〜+仅支持非常低的速率。改变阴离子的性质只有很小的作用。对于XL-I和XL-II,K〜+的最佳浓度为50 mM。较高的(生理)浓度导致活性降低。 K +没有抑制XL-III。 Mg〜(2+)或Mn〜(2+)满足二价阳离子的绝对要求,或者Co〜(2+)或Fe〜(2+)满足程度较低。对于XL-I和XL-II,过量的未络合的Mg〜(2+)或Mn〜(2+)降低了速率。 Mn〜(2+)的最佳浓度与测定中的ATP浓度大致相同,Mg〜(2+)的最佳浓度约为测定中的ATP浓度的两倍。这与需要二价阳离子与ATP络合的概念以及这两个二价阳离子的ATP络合物的已知稳定性常数相一致。 XL-III不受未络合的二价阳离子的抑制。未复合的ATP是XL-1和XL-II的中度抑制剂,是XL-III的弱抑制剂。数据表明,体内苯甲酸酯结合是K〜+和Mg〜(2+)依赖性的,并且与XL-III相比,XL-1和XL-II的阳离子作用复杂且不同。

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