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血红素加氧酶抑制剂锡原卟啉的生化特性。与脱辅基肌红蛋白和人血清白蛋白的相互作用。

Biochemical properties of the heme oxygenase inhibitor, Sn-protoporphyrin. Interactions with apomyoglobin and human serum albumin.

作者信息

Breslow E, Chandra R, Kappas A

出版信息

J Biol Chem. 1986 Mar 5;261(7):3135-41.

PMID:3753975
Abstract

Sn-protoporphyrin is a strong competitive inhibitor of heme oxygenase and a potential pharmacological agent for the treatment of neonatal hyperbilirubinemia. Little is otherwise known about the biochemistry of tin porphyrins. We have investigated aspects of the chemistry of tin-protoporphyrin in aqueous solution and of its interactions with heme-binding proteins other than heme oxygenase, specifically apomyoglobin and human serum albumin. In the pH region 7-10, Soret region absorption studies of unbound Sn-protoporphyrin demonstrate a pH-dependent monomer-dimer equilibrium (KD congruent to 10(6) M-1 at pH 7) with little higher aggregation. Dissociation of the dimer is relatively slow at neutral pH, permitting interaction of protein ligands with monomeric and dimeric species to be distinguished and providing insights into kinetic mechanisms of porphyrin binding by heme-binding proteins. In the present study, the kinetics of interaction of Sn-protoporphyrin with apomyoglobin are presented as novel evidence that this binding proceeds by an induced fit mechanism. Binding of Sn-protoporphyrin to both apomyoglobin and serum albumin is unexpectedly weak. Between pH 7 and 9, the apparent affinity of Sn-protoporphyrin for apomyoglobin is less than 1/200 that of heme and, at pH 9, is also significantly less than that of protoporphyrin. The apparent affinity of Sn-protoporphyrin for human serum albumin is less than 1/1000 that of heme and 1/30 to 1/100 that of protoporphyrin. Competition studies between heme and Sn-protoporphyrin and between bilirubin and Sn-protoporphyrin indicate that Sn-protoporphyrin distributes differently among porphyrin-binding sites on serum albumin than does heme and that it is also not an effective competitor with bilirubin for bilirubin-binding sites. These results argue that Sn-protoporphyrin should not significantly alter normal mechanisms for the binding and transport of heme or of preformed bilirubin by serum albumin. From a more general perspective, the results indicate potentially unusual binding site selectivity by tin chelates; possible origins of this selectivity are discussed.

摘要

锡原卟啉是血红素加氧酶的一种强竞争性抑制剂,也是治疗新生儿高胆红素血症的一种潜在药物。除此之外,人们对锡卟啉的生物化学了解甚少。我们研究了锡原卟啉在水溶液中的化学性质,以及它与除血红素加氧酶之外的血红素结合蛋白(特别是脱辅基肌红蛋白和人血清白蛋白)的相互作用。在pH值为7至10的范围内,对未结合的锡原卟啉进行的Soret区吸收研究表明,其存在pH依赖性的单体 - 二聚体平衡(在pH 7时,KD约为10^6 M^-1),几乎没有更高程度的聚集。在中性pH条件下,二聚体的解离相对较慢,这使得能够区分蛋白质配体与单体和二聚体物种的相互作用,并为血红素结合蛋白结合卟啉的动力学机制提供了见解。在本研究中,锡原卟啉与脱辅基肌红蛋白相互作用的动力学作为新的证据表明,这种结合是通过诱导契合机制进行的。锡原卟啉与脱辅基肌红蛋白和血清白蛋白的结合出乎意料地弱。在pH 7至9之间,锡原卟啉对脱辅基肌红蛋白的表观亲和力小于血红素的1/200,在pH 9时,也显著小于原卟啉的表观亲和力。锡原卟啉对人血清白蛋白的表观亲和力小于血红素的1/1000,是原卟啉的1/30至1/100。血红素与锡原卟啉之间以及胆红素与锡原卟啉之间的竞争研究表明,锡原卟啉在血清白蛋白上的卟啉结合位点之间的分布与血红素不同,并且它也不是胆红素结合位点的有效胆红素竞争者。这些结果表明,锡原卟啉不应显著改变血清白蛋白对血红素或预先形成的胆红素的结合和转运的正常机制。从更一般的角度来看,结果表明锡螯合物可能具有不寻常的结合位点选择性;讨论了这种选择性的可能来源。

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