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血红素与激活蛋白 C 相互作用的分子见解和功能后果。

Molecular Insights and Functional Consequences of the Interaction of Heme with Activated Protein C.

机构信息

Pharmaceutical Biochemistry and Bioanalytics, Pharmaceutical Institute, University of Bonn, Bonn, Germany.

Institute of Experimental Hematology and Transfusion Medicine, University Hospital Bonn, Bonn, Germany.

出版信息

Antioxid Redox Signal. 2021 Jan 1;34(1):32-48. doi: 10.1089/ars.2019.7992. Epub 2020 Aug 20.

DOI:10.1089/ars.2019.7992
PMID:32705892
Abstract

In hemolysis, which is accompanied by increased levels of labile redox-active heme and is often associated with hemostatic abnormalities, a decreased activity of activated protein C (APC) is routinely detected. APC is a versatile enzyme that exerts its anticoagulant function through inactivation of clotting factors Va and VIIIa. APC has not been demonstrated to be affected by heme as described for other clotting factors and, thus, is a subject of investigation. We report the interaction of heme with APC and its impact on the protein function by employing spectroscopic and physiologically relevant methods. Binding of heme to APC results in inhibition of its amidolytic and anticoagulant activity, increase of the peroxidase-like activity of heme, and protection of human umbilical vein endothelial cells from heme-induced hyperpermeability. To define the sites that are responsible for heme binding, we mapped the surface of APC for potential heme-binding motifs. TGWGYHSSR and WIHGHIRDK, both located on the basic exosite, turned out as potential heme-binding sites. Molecular docking employing a homology model of full-length APC indicated Tyr and His as the Fe(III)-coordinating amino acids. The results strongly suggest that hemolysis-derived heme may directly influence the protein C pathway through binding to APC, conceivably explaining the decreased activity of APC under hemolytic conditions. Further, these results extend our understanding of heme as a multifaceted effector molecule within coagulation and may allow for an improved understanding of disease development in hemostasis under hemolytic conditions. Our study identifies APC as a heme-binding protein and provides insights into the functional consequences.

摘要

在伴有不稳定的氧化还原活性血红素水平升高且常伴有止血异常的溶血中,通常会检测到活化蛋白 C (APC) 活性降低。APC 是一种多功能酶,通过灭活凝血因子 Va 和 VIIIa 发挥其抗凝作用。APC 的活性未像其他凝血因子那样受到血红素的影响,因此成为研究的对象。我们采用光谱和生理相关方法研究了血红素与 APC 的相互作用及其对蛋白质功能的影响。血红素与 APC 结合会抑制其蛋白水解和抗凝活性,增加血红素的过氧化物酶样活性,并保护人脐静脉内皮细胞免受血红素诱导的通透性增加。为了确定负责血红素结合的位点,我们绘制了 APC 表面的潜在血红素结合基序图。位于碱性外位点的 TGWGYHSSR 和 WIHGHIRDK 均被证明是潜在的血红素结合位点。采用全长 APC 同源模型进行分子对接表明,Tyr 和 His 是 Fe(III)配位的氨基酸。这些结果强烈表明,源自溶血的血红素可能通过与 APC 结合直接影响蛋白 C 途径,这可以解释在溶血条件下 APC 活性降低的原因。此外,这些结果扩展了我们对血红素作为凝血中多面效应分子的理解,并可能有助于更好地理解在溶血条件下止血中的疾病发展。我们的研究确定 APC 为血红素结合蛋白,并提供了对功能后果的深入了解。

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