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The crystal structure of modified bovine fibrinogen

机译:改性牛纤维蛋白原的晶体结构

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Here we report the crystal structure at ≈4-A resolution of a selectively proteolyzed bovine fibrinogen. This key component in hemostasis is an elongated 340-kDa glycoprotein in the plasma that upon activation by thrombin self-assembles to form the fibrin clot. The crystals are unusual because they are made up of end- to-end bonded molecules that form flexible filaments. We have visualized the entire coiled-coil region of the molecule, which has a planar sigmoidal shape. The primary polymerization receptor pockets at the ends of the molecule face the same way throughout the end-to-end bonded filaments, and based on this con formation, we have developed an improved model of the two-stranded protofibril that is the basic building block in fibrin. Near the middle of the coiled-coil region, the plasmin-sensitive segment is a hinge about which the molecule adopts different conformations. This segment also includes the boundary between the three- and four-stranded portions of the coiled coil, indicating the location on the backbone that anchors the extended flexible Aα arm. We suggest that a flexible branch point in the molecule may help accommodate variability in the structure of the fibrin clot.
机译:在这里,我们报告了选择性蛋白水解的牛纤维蛋白原在≈4-A分辨率下的晶体结构。止血中的这一关键成分是血浆中延长的340 kDa糖蛋白,在凝血酶激活后会自我组装形成纤维蛋白凝块。晶体是不寻常的,因为它们由形成柔性细丝的端对端键合分子组成。我们已经看到了分子的整个盘绕线圈区域,该区域具有平面的S形。分子末端的主要聚合受体腔在端对端键合长丝中以相同的方式面对,并且基于此构象,我们开发了一种改进的双链原纤维模型,这是基本的构建模块在纤维蛋白中。在卷曲螺旋区域的中间附近,纤溶酶敏感区段是一个铰链,分子围绕该铰链采取不同的构象。该部分还包括盘绕线圈的三链部分和四链部分之间的边界,指示在骨架上锚定延伸的柔性Aα臂的位置。我们建议分子中的柔性分支点可能有助于适应血纤蛋白凝块结构的变化。

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