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通过核磁共振光谱测定,来自凝血因子VIII C2结构域的膜结合肽形成两亲结构。

Membrane-binding peptide from the C2 domain of factor VIII forms an amphipathic structure as determined by NMR spectroscopy.

作者信息

Gilbert G E, Baleja J D

机构信息

Medicine Department, Brockton-West Roxbury VA Medical Center, Boston, Massachusetts 02132.

出版信息

Biochemistry. 1995 Mar 7;34(9):3022-31. doi: 10.1021/bi00009a033.

Abstract

Factor VIII binds to cell membranes prior to assembling with the serine protease, factor IXa, to form the factor X-activating enzyme complex. In order to better understand the interaction between factor VIII and phosphatidylserine-containing membranes, we have synthesized the membrane-binding peptide from the C2 domain of factor VIII, corresponding to residues 2303-2324. The peptide, fVIII2303-24, with a primary structure of TRYLRIHPQSWVHQIALRMEVL, aggregates at concentrations above 2 microM at pH 7 but is soluble at pH 6. fVIII2303-24 competes with fluorescein-labeled factor VIII (Ki = 3 microM) for binding sites on synthetic phosphatidylserine-containing membranes and for binding sites on stimulated platelets. Circular dichroism spectra indicate that fVIII2303-24 is predominantly a random coil in aqueous solution but adopts a predominantly helical conformation upon interaction with SDS micelles. 1H NMR spectroscopy in the presence of SDS micelles allowed estimation of interproton distances from the nuclear Overhauser effect and estimation of torsion angles from coupling constants indicated by splitting of resonance lines. The distance and angle estimates, processed by distance geometry/simulated annealing software, indicate that fVIII2303-24 has an alpha-helical segment encompassing residues P8-E20 and an extended segment encompassing residues L4-P8. The location of six hydrophobic residues on one face of the structure suggests that hydrophobic interactions contribute to membrane-binding. In addition, two arginines penetrate the hydrophobic plane suggesting that they interact with phosphate moieties in a phospholipid bilayer.

摘要

凝血因子 VIII 在与丝氨酸蛋白酶凝血因子 IXa 组装形成激活凝血因子 X 的酶复合物之前,先与细胞膜结合。为了更好地理解凝血因子 VIII 与含磷脂酰丝氨酸的膜之间的相互作用,我们合成了凝血因子 VIII C2 结构域的膜结合肽,对应于 2303 - 2324 位氨基酸残基。该肽 fVIII2303 - 24 的一级结构为 TRYLRIHPQSWVHQIALRMEVL,在 pH 7 时,浓度高于 2 μM 会聚集,但在 pH 6 时可溶。fVIII2303 - 24 与荧光素标记的凝血因子 VIII(Ki = 3 μM)竞争合成的含磷脂酰丝氨酸膜上的结合位点以及受刺激血小板上的结合位点。圆二色光谱表明,fVIII2303 - 24 在水溶液中主要呈无规卷曲构象,但与 SDS 胶束相互作用时主要呈螺旋构象。在 SDS 胶束存在下的 1H NMR 光谱可通过核 Overhauser 效应估算质子间距离,并通过共振线分裂所指示的耦合常数估算扭转角。经距离几何/模拟退火软件处理的距离和角度估算结果表明,fVIII2303 - 24 有一个包含 P8 - E20 残基的α - 螺旋片段和一个包含 L4 - P8 残基的延伸片段。结构一侧六个疏水残基的位置表明疏水相互作用有助于膜结合。此外,两个精氨酸穿透疏水平面,表明它们与磷脂双分子层中的磷酸基团相互作用。

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