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血红素与酵母Dap1p和小鼠PGRMC1p结合的光谱学和生化特性分析

Spectroscopic and biochemical characterization of heme binding to yeast Dap1p and mouse PGRMC1p.

作者信息

Ghosh Kaushik, Thompson Alisha M, Goldbeck Robert A, Shi Xiaoli, Whitman Stephanie, Oh Eric, Zhiwu Zhu, Vulpe Chris, Holman Theodore R

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Cruz, California 95064, USA.

出版信息

Biochemistry. 2005 Dec 20;44(50):16729-36. doi: 10.1021/bi0511585.

Abstract

Yeast damage-associated response protein (Dap1p) and mouse progesterone receptor membrane component-1 protein (mPGRMC1p) belong to a highly conserved class of putative membrane-associated progesterone binding proteins (MAPR), with Dap1p and inner zone antigen (IZA), the rat homologue of mPGRMC1p, recently being reported to bind heme. While primary structure analysis reveals similarities to the cytochrome b(5) motif, neither of the two axial histidines responsible for ligation to the heme is present in any of the MAPR proteins. In this paper, EPR, MCD, CD, UV-vis, and general biochemical methods have been used to characterize the nature of heme binding in both Dap1p and a His-tagged, membrane anchor-truncated mPGRMC1p. As isolated, Dap1p is a tetramer which can be converted to a dimer upon addition of 150 mM salt. The heme is noncovalently attached, with a maximal, in vitro, heme loading of approximately 30%, for both proteins. CD and fluorescence spectroscopies indicate a well-ordered structure, suggesting the low level of heme loading is probably not due to improperly folded protein. EPR confirmed a five-coordinate, high-spin, ferric resting state for both proteins, indicating one axial amino acid ligand, in contrast to the six-coordinate, low-spin, ferric state of cytochrome b(5). The MCD spectrum confirmed this conclusion for Dap1p and indicated the axial ligand is most likely a tyrosine and not a histidine, or a cysteine; however, an aspartic acid residue could not be conclusively ruled out. Potential axial ligands, which are conserved in all MAPRs, were mutated (Y78F, D118A, and Y138F) and purified to homogeneity. The Y78F and D118A mutants were found to bind heme; however, Y138F did not. This result is consistent with the MCD data and indicates that Tyr138 is most likely the axial ligand to the heme in Dap1p.

摘要

酵母损伤相关反应蛋白(Dap1p)和小鼠孕激素受体膜成分-1蛋白(mPGRMC1p)属于一类高度保守的假定膜相关孕激素结合蛋白(MAPR),最近有报道称Dap1p和mPGRMC1p的大鼠同源物内环抗原(IZA)能结合血红素。虽然一级结构分析显示与细胞色素b(5)基序有相似性,但负责与血红素连接的两个轴向组氨酸在任何MAPR蛋白中都不存在。在本文中,采用电子顺磁共振(EPR)、磁圆二色性(MCD)、圆二色性(CD)、紫外可见光谱以及一般生化方法来表征Dap1p和一个带有His标签、膜锚定截短的mPGRMC1p中血红素结合的性质。刚分离出来时,Dap1p是四聚体,加入150 mM盐后可转化为二聚体。两种蛋白的血红素均以非共价方式结合,体外血红素最大负载量约为30%。CD和荧光光谱表明其结构有序,这表明血红素负载量低可能并非由于蛋白折叠不当。EPR证实两种蛋白的静止状态均为五配位、高自旋、三价铁,表明存在一个轴向氨基酸配体,这与细胞色素b(5)的六配位、低自旋、三价铁状态不同。MCD光谱证实了Dap1p的这一结论,并表明轴向配体很可能是酪氨酸而非组氨酸或半胱氨酸;然而,不能完全排除天冬氨酸残基。对所有MAPR中保守的潜在轴向配体进行了突变(Y78F、D118A和Y138F)并纯化至同质。发现Y78F和D118A突变体能够结合血红素;然而,Y138F不能。这一结果与MCD数据一致,表明Tyr138很可能是Dap1p中血红素的轴向配体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee36/2577039/5ec030cbf7cc/nihms60847f1.jpg

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