Porphyria-induced hepatic porphyrinogen carboxy-lyase inhibitor and its interaction with the active site(s) of the enzyme.

S B de Catabbi, R W de Calmanovici, C Minutolo, C Aldonatti, L C San Martin de Viale
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引用次数: 7

Abstract

Porphyrinogen carboxy-lyase is an enzyme that sequentially decarboxylates uroporphyrinogen III (8-COOH) to yield coproporphyrinogen III (4-COOH). In mammals this enzyme activity is impaired by hexachlorobenzene treatment, through generation of an enzyme inhibitor. The interaction of porphyrinogen carboxy-lyase inhibitor, extracted from the liver of hexachlorobenzene-treated rats, with substrate decarboxylation sites on the enzyme, was studied using four different carboxylated substrates belonging to the isomeric III series of naturally-formed porphyrinogens containing 8-,7-,6- and 5-COOH. Similar inhibitor effects were elicited against all the substrates assayed, with the exception of pentacarboxyporphyrinogen III in which decarboxylation was not inhibited to same extent. Enzyme protection assays in the presence of the different substrates, indicated that each porphyrinogen protects its own decarboxylation from inhibitor action. Preincubation of the inhibitor with normal enzyme increased its inhibitory effect. On the other hand, preincubation of both enzyme and inhibitor with superoxide dismutase or mannitol, did not alter inhibitory activity. Preincubation of the inhibitor with a number of amino acids showed that only arginine and its derivative N alpha-Benzoyl-L-Arginine ethyl ester interact with the inhibitor, noticeably reducing its ability to inhibit porphyrinogen carboxy-lyase. Albumin, histidine, serine, cysteine and imidazol, were unable to quench inhibitor activity. The present results indicate that the inhibitor acts at the binding site of each porphyrinogen. Taking into account that arginine is related to enzyme activity, and that histidine is found at the binding site of the substrates, the results suggest that the inhibitor could bind to arginine residues, blocking the access of substrates to histidine and altering the adequate orientation for decarboxylation by masking the positively charged active site necessary for porphyrinogen binding to the enzyme. In addition an indirect effect of the inhibitor mediated through free radicals could be discarded.

卟啉症诱导的肝卟啉原羧解酶抑制剂及其与酶活性位点的相互作用。
卟啉原羧化酶是一种依次使尿卟啉原III (8-COOH)脱羧,生成同比例卟啉原III (4-COOH)的酶。在哺乳动物中,这种酶的活性受到六氯苯处理的损害,通过产生一种酶抑制剂。从六氯苯处理大鼠肝脏中提取的卟啉原羧解酶抑制剂与酶上底物脱羧位点的相互作用,研究了四种不同的羧化底物,这些底物属于天然形成的含有8-,7-,6-和5-COOH的卟啉原异构体III系列。除五羧基卟啉原III (pentacarboxyporphyrinogen III)脱羧作用不受相同程度的抑制外,所有底物都有类似的抑制作用。在不同底物存在下的酶保护实验表明,每种卟啉原都保护其自身的脱羧作用免受抑制剂的作用。抑制剂与正常酶的预孵育增强了其抑制作用。另一方面,酶和抑制剂与超氧化物歧化酶或甘露醇预孵育不改变抑制活性。与多种氨基酸预孵育表明,只有精氨酸及其衍生物N α -苯甲酰-l -精氨酸乙酯与抑制剂相互作用,显著降低了其抑制卟啉原羧化酶的能力。白蛋白、组氨酸、丝氨酸、半胱氨酸和咪唑不能抑制抑制剂的活性。目前的研究结果表明,该抑制剂作用于每种卟啉原的结合位点。考虑到精氨酸与酶活性相关,而组氨酸位于底物的结合位点,结果表明该抑制剂可以与精氨酸残基结合,阻断底物与组氨酸的接触,并通过掩盖卟啉原与酶结合所必需的正电荷活性位点来改变脱羧的适当方向。此外,通过自由基介导的抑制剂的间接作用可以被丢弃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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