Muller Y A, Kelley R F, de Vos A M
Forschungsgruppe Kristallographie, Max-Delbrück-Centrum für Molekulare Medizin, Berlin-Buch, Germany.
Protein Sci. 1998 May;7(5):1106-15. doi: 10.1002/pro.5560070504.
Tissue factor (TF), a member of the cytokine receptor superfamily, is the obligate cofactor of coagulation factor VIIa (FVIIa), and has a pivotal role in initiating the extrinsic pathway of blood coagulation through formation of the TF x FVIIa complex. The crystal structure of the extracellular portion of rabbit TF has been solved at 2.35 A resolution and refined to a crystallographic R-value of 19.1% (free R-value, 27.7%). Like the human homologue, the extracellular portion consists of two fibronectin type III domains connected by a short alpha-helical segment. Unexpectedly, the two molecules in the crystallographic asymmetric unit differ in their relative domain-domain orientation, revealing unsuspected hinge motion consisting of a rotation of about 12.7 degrees around an axis intersecting the linker segment at residue 106. Superposition of rabbit tissue factor with free and bound human tissue factor allows for the detection of an identical, albeit smaller, hinge motion in human TF induced upon binding of FVIIa. This raises the possibility that a very similar hinge axis may be present in other members of the cytokine receptor superfamily.
组织因子(TF)是细胞因子受体超家族的成员,是凝血因子VIIa(FVIIa)的必需辅因子,通过形成TF×FVIIa复合物在启动凝血外源性途径中起关键作用。兔TF细胞外部分的晶体结构已在2.35 Å分辨率下解析,并精修至晶体学R值为19.1%(自由R值为27.7%)。与人类同源物一样,细胞外部分由两个通过短α螺旋段连接的纤连蛋白III型结构域组成。出乎意料的是,晶体学不对称单元中的两个分子在其相对结构域-结构域取向上不同,揭示了意想不到的铰链运动,该运动由围绕与残基106处连接段相交的轴旋转约12.7度组成。兔组织因子与游离和结合的人组织因子的叠加允许检测在FVIIa结合时人TF中相同但较小的铰链运动。这增加了细胞因子受体超家族其他成员中可能存在非常相似的铰链轴的可能性。