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从异丙苯过氧化氢失活的细胞色素P450 3A4中鉴定血红素修饰的肽段。

Identification of the heme-modified peptides from cumene hydroperoxide-inactivated cytochrome P450 3A4.

作者信息

He K, Bornheim L M, Falick A M, Maltby D, Yin H, Correia M A

机构信息

Department of Cellular and Molecular Pharmacology, Liver Center, University of California, San Francisco 94143, USA.

出版信息

Biochemistry. 1998 Dec 15;37(50):17448-57. doi: 10.1021/bi9808464.

DOI:10.1021/bi9808464
PMID:9860860
Abstract

Cumene hydroperoxide-mediated (CuOOH-mediated) inactivation of cytochromes P450 (CYPs) results in destruction of their prosthetic heme to reactive fragments that irreversibly bind to the protein. We have attempted to characterize this process structurally, using purified, 14C-heme labeled, recombinant human liver P450 3A4 as the target of CuOOH-mediated inactivation, and a battery of protein characterization approaches [chemical (CNBr) and proteolytic (lysylendopeptidase-C) digestion, HPLC-peptide mapping, microEdman sequencing, and mass spectrometric analyses]. The heme-peptide adducts isolated after CNBr/lysylendopeptidase-C digestion of the CuOOH-inactivated P450 3A4 pertain to two distinct P450 3A4 active site domains. One of the peptides isolated corresponds to the proximal helix L/Cys-region peptide 429-450 domain and the others to the K-region (peptide 359-386 domain). Although the precise residue(s) targeted remain to be identified, we have narrowed down the region of attack to within a 17 amino acid peptide (429-445) stretch of the 55-amino acid proximal helix L/Cys domain. Furthermore, although the exact structures of the heme-modifying fragments and the nature of the adduction remain to be established conclusively, the incremental masses of approximately 302 and 314 Da detected by electrospray mass spectrometric analyses of the heme-modified peptides are consistent with a dipyrrolic heme fragment comprised of either pyrrole ring A-D or B-C, a known soluble product of peroxidative heme degradation, as a modifying species.

摘要

异丙苯过氧化氢介导(CuOOH介导)的细胞色素P450(CYPs)失活会导致其辅基血红素被破坏,生成与蛋白质不可逆结合的反应性片段。我们试图通过一系列蛋白质表征方法[化学(CNBr)和蛋白酶解(赖氨酰内肽酶-C)消化、HPLC肽图分析、微量埃德曼测序和质谱分析],以纯化的、14C血红素标记的重组人肝P450 3A4作为CuOOH介导失活的靶点,从结构上表征这一过程。对经CuOOH失活的P450 3A4进行CNBr/赖氨酰内肽酶-C消化后分离得到的血红素-肽加合物,与两个不同的P450 3A4活性位点结构域相关。分离得到的其中一个肽对应于近端螺旋L/半胱氨酸区域肽429-450结构域,其他肽对应于K区域(肽359-386结构域)。尽管有待确定具体的靶向残基,但我们已将攻击区域缩小到55个氨基酸的近端螺旋L/半胱氨酸结构域的17个氨基酸肽段(429-445)范围内。此外,尽管血红素修饰片段的确切结构和加合性质仍有待最终确定,但通过对血红素修饰肽段的电喷雾质谱分析检测到的约302和314 Da的增量质量,与由吡咯环A-D或B-C组成的二吡咯血红素片段一致,这是一种已知的过氧化血红素降解可溶性产物,作为修饰物种。

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