Centre for Haematology, Faculty of Medicine, Imperial College London, Hammersmith Hospital Campus, Du Cane Road, London, UK.
Blood. 2011 Jun 16;117(24):6685-93. doi: 10.1182/blood-2010-11-317099. Epub 2011 Apr 20.
Protein S has an important anticoagulant function by acting as a cofactor for activated protein C (APC). We recently reported that the EGF1 domain residue Asp95 is critical for APC cofactor function. In the present study, we examined whether additional interaction sites within the Gla domain of protein S might contribute to its APC cofactor function. We examined 4 residues, composing the previously reported "Face1" (N33S/P35T/E36A/Y39V) variant, as single point substitutions. Of these protein S variants, protein S E36A was found to be almost completely inactive using calibrated automated thrombography. In factor Va inactivation assays, protein S E36A had 89% reduced cofactor activity compared with wild-type protein S and was almost completely inactive in factor VIIIa inactivation; phospholipid binding was, however, normal. Glu36 lies outside the ω-loop that mediates Ca(2+)-dependent phospholipid binding. Using mass spectrometry, it was nevertheless confirmed that Glu36 is γ-carboxylated. Our finding that Gla36 is important for APC cofactor function, but not for phospholipid binding, defines a novel function (other than Ca(2+) coordination/phospholipid binding) for a Gla residue in vitamin K-dependent proteins. It also suggests that residues within the Gla and EGF1 domains of protein S act cooperatively for its APC cofactor function.
蛋白质 S 通过作为激活蛋白 C(APC)的辅因子发挥重要的抗凝作用。我们最近报道称,EGF1 结构域残基天冬氨酸 95 对 APC 辅因子功能至关重要。在本研究中,我们研究了蛋白质 S 的 Gla 结构域内的其他相互作用位点是否可能有助于其 APC 辅因子功能。我们检查了 4 个组成先前报道的“Face1”(N33S/P35T/E36A/Y39V)变体的残基作为单点取代。在这些蛋白质 S 变体中,蛋白质 S E36A 在用校准的自动血栓形成法检测时几乎完全无活性。在因子 Va 失活测定中,与野生型蛋白质 S 相比,蛋白质 S E36A 的辅因子活性降低了 89%,在因子 VIIIa 失活中几乎完全无活性;然而,磷脂结合正常。Glu36 位于介导 Ca(2+)依赖性磷脂结合的ω环之外。然而,使用质谱法证实 Glu36 是 γ-羧化的。我们发现 Gla36 对 APC 辅因子功能很重要,但对磷脂结合不重要,这定义了维生素 K 依赖性蛋白质中 Gla 残基的新功能(除了 Ca(2+)配位/磷脂结合)。这也表明蛋白质 S 的 Gla 和 EGF1 结构域内的残基协同作用以发挥其 APC 辅因子功能。