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在血红素分解代谢过程中,钴原卟啉的C2和C4乙烯基还原形成钴中卟啉,并改变金属卟啉在体内的作用性质。

In heme catabolism C2 and C4 vinyl groups reduction of cobalt protoporphyrin forms cobalt mesoporphyrin and alters the nature of action of the metalloporphyrin in vivo.

作者信息

Chandra R, Malhotra R, Dhawan M, Kumaria N

机构信息

B.R. Ambedkar Center for Biomedical Research, University of Delhi, India.

出版信息

Eur J Drug Metab Pharmacokinet. 1996 Jul-Sep;21(3):269-74. doi: 10.1007/BF03189725.

Abstract

Heme is a tetrapyrrolic ring with iron as the central metal atom and acts as a prosthetic group for a number of enzymes, e.g. cytochromes and globins. It also plays an important role in the regulation of transcription, translation, protein translocation and erythroid differentiation. Thus, heme regulation is under strict control in the body. Our studies on the regulatory enzymes of heme anabolism, aminolevulinic acid synthetase (ALA-S), and of catabolism, heme oxygenase (HMOX), in the spleen has revealed that cobalt protoporphyrin acts as an inducer of HMOX. It is revealed that by alteration of side groups at C2 and C4 changes the nature of action of Co-protoporphyrin from an inducer to a strong inhibitor of HMOX activity. All the three analogues Co-protoporphyrin, Co-mesoporphyrin and Co-hematoporphyrin have been shown to induce the ALA-S activity to the similar extent. NADPH-cytochrome c reductase, a microsomal membrane bound enzyme, is required by HMOX for the enzymatic conversion of heme into biliverdin IXc and is also required for NADPH-dependent lipid peroxidation in the microsomes. It has been observed that Co-mesoporphyrin causes an inhibition of HMOX activity and consequently leads to an induced level of microsomal NADPH-dependent lipid peroxidation.

摘要

血红素是一种以铁为中心金属原子的四吡咯环,作为多种酶(如细胞色素和珠蛋白)的辅基。它在转录、翻译、蛋白质转运和红细胞分化的调节中也起着重要作用。因此,血红素调节在体内受到严格控制。我们对脾脏中血红素合成的调节酶氨基乙酰丙酸合成酶(ALA-S)和分解代谢的血红素加氧酶(HMOX)的研究表明,钴原卟啉作为HMOX的诱导剂。研究表明,通过改变C2和C4位的侧链,可使钴原卟啉的作用性质从诱导剂转变为HMOX活性的强抑制剂。已证明钴原卟啉、钴中卟啉和钴血卟啉这三种类似物在相似程度上诱导ALA-S活性。NADPH-细胞色素c还原酶是一种微粒体膜结合酶,HMOX将血红素酶促转化为胆绿素IXc需要该酶,微粒体中NADPH依赖性脂质过氧化也需要该酶。据观察,钴中卟啉会抑制HMOX活性,从而导致微粒体NADPH依赖性脂质过氧化水平升高。

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