Perkins S J, Nealis A S
Department of Biochemistry and Chemistry, Royal Free Hospital School of Medicine, Hampstead, London, U.K.
Biochem J. 1989 Oct 15;263(2):463-9. doi: 10.1042/bj2630463.
C1r2C1s2 is a subcomponent of first component C1 of the complement cascade. Previously two distinct models for its structure have been described, in which C1r2C1s2 is either a linear rod-like assembly of the globular domains found in each of C1s and C1r, or these domains are arranged to form an asymmetric X-shaped structure. These two models were evaluated by using hydrodynamic simulations and neutron scattering. The data on C1s, C1s2 and C1r are readily represented by straight hydrodynamic cylinders, but not C1r2 or C1r2C1s2. Tests of the X-structure for C1r2 and C1r2C1s2 successfully predicted the experimental sedimentation coefficients, thus supporting this model. Neutron scattering analyses on C1s and C1r2 are consistent with a linear structure for C1s, but not for C1r2. An X-shaped structure for C1r2 was found to give a good account of the neutron data at large scattering angles. The total length of the C1s and C1r monomers was determined as 17-20 nm, which is compatible with electron microscopy. On the basis of the known sequences of C1r and C1s, this length is accounted for by a linear arrangement of a serine-proteinase domain (length 4 nm), two short consensus repeat domains (2 x 4 nm), and a globular entity containing the I, II and III domains (4-7 nm).
C1r2C1s2是补体级联反应第一成分C1的一个亚组分。此前已描述了两种不同的其结构模型,其中C1r2C1s2要么是在C1s和C1r各自中发现的球状结构域的线性杆状组装体,要么这些结构域排列形成不对称的X形结构。通过流体动力学模拟和中子散射对这两种模型进行了评估。关于C1s、C1s2和C1r的数据很容易由直的流体动力学圆柱体表示,但C1r2或C1r2C1s2不行。对C1r2和C1r2C1s2的X结构测试成功预测了实验沉降系数,从而支持了该模型。对C1s和C1r2的中子散射分析与C1s的线性结构一致,但与C1r2不一致。发现C1r2的X形结构能很好地解释大散射角处的中子数据。C1s和C1r单体的总长度确定为17 - 20纳米,这与电子显微镜观察结果相符。根据C1r和C1s的已知序列,该长度由丝氨酸蛋白酶结构域(长度4纳米)、两个短共有重复结构域(2×4纳米)以及包含I、II和III结构域的球状实体(4 - 7纳米)的线性排列来解释。