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人抗凝蛋白C的疏水氨基酸残基,其有助于该蛋白与磷脂囊泡的功能性结合。

Hydrophobic amino acid residues of human anticoagulation protein C that contribute to its functional binding to phospholipid Vesicles.

作者信息

Christiansen W T, Jalbert L R, Robertson R M, Jhingan A, Prorok M, Castellino F J

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Indiana 46556, USA.

出版信息

Biochemistry. 1995 Aug 22;34(33):10376-82. doi: 10.1021/bi00033a008.

DOI:10.1021/bi00033a008
PMID:7654691
Abstract

The contributions to functional phospholipid (PL) binding of the cluster of amino acid side chains of human protein C (PC) comprising F4, L5, and L8 have been assessed by construction of mutants of PC and activated protein C (APC) designed wherein a hydrophilic side chain replaced the wild-type hydrophobic groups at these positions. The PL-dependent plasma-based anticoagulant activities of [F4Q]-r-APC and [L8Q]r-APC were severely reduced to 5% and < 2%, respectively, of wild-type r-APC. Activity losses of the mutants toward inactivation of coagulation factor VIII, measured in the complete in vitro tenase system, have also been observed. As evidenced through Ca(2+)-induced intrinsic fluorescence changes, both [F4Q]r-PC and [L8Q]r-PC were able to adopt Ca(2+)-dependent conformations that appeared similar to that of wtr-PC, ruling out shortcomings associated with such Ca(2+)-induced transitions as the basis for their anticoagulant activity losses. However, despite this, [L8Q]r-PC showed greatly defective macroscopic binding properties to PL vesicles, as did to a lesser extent [F4Q]r-PC. These findings were similar to those reported previously for [L5Q]r-PC/APC [Zhang, L., & Castellino, F. J. (1994) J. Biol. Chem. 269, 3590-3595]. We thus propose that the PL-dependent activity losses of these mutants are related to their suboptimal binding to PL or to their misorientation on the PL surface leading to poor alignment of the active sites of the r-APC mutants with the complementary cleavage sites on fVIII/fVIIIa and fV/fVa.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过构建人蛋白C(PC)突变体和活化蛋白C(APC)突变体,评估了包含F4、L5和L8的人蛋白C氨基酸侧链簇对功能性磷脂(PL)结合的贡献。设计的突变体中,亲水性侧链取代了这些位置的野生型疏水基团。[F4Q]-r-APC和[L8Q]r-APC基于血浆的PL依赖性抗凝活性分别严重降低至野生型r-APC的5%和<2%。在完整的体外凝血酶原酶系统中测量时,还观察到这些突变体对凝血因子VIII失活的活性损失。通过Ca(2+)诱导的内在荧光变化证明,[F4Q]r-PC和[L8Q]r-PC都能够采用与wtr-PC相似的Ca(2+)依赖性构象,排除了与这种Ca(2+)诱导的转变相关的缺陷作为其抗凝活性损失的基础。然而,尽管如此,[L8Q]r-PC对PL囊泡的宏观结合特性存在严重缺陷,[F4Q]r-PC在较小程度上也是如此。这些发现与先前报道的[L5Q]r-PC/APC的发现相似[Zhang, L., & Castellino, F. J. (1994) J. Biol. Chem. 269, 3590-3595]。因此,我们提出这些突变体的PL依赖性活性损失与其对PL的次优结合或其在PL表面的错误取向有关,导致r-APC突变体的活性位点与fVIII/fVIIIa和fV/fVa上的互补切割位点排列不佳。(摘要截断于250字)

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