Schittny J C, Yurchenco P D
Department of Pathology, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854-5635.
J Cell Biol. 1990 Mar;110(3):825-32. doi: 10.1083/jcb.110.3.825.
Laminin self-assembles into large polymers by a cooperative two-step calcium-dependent mechanism (Yurchenco, P. D., E. C. Tsilibary, A. S. Charonis, and H. Furthmayr. 1985. J. Biol. Chem. 260:7636-7644). The domain specificity of this process was investigated using defined proteolytically generated fragments corresponding to the NH2-terminal globule and adjacent stem of the short arm of the B1 chain (E4), a complex of the two short arms of the A and B2 chains attached to the proximal stem of a third short arm (E1'), a similar complex lacking the globular domains (P1'), and the distal half of the long arm attached to the adjacent portion of the large globule (E8). Polymerization, followed by an increase of turbidity at 360 nm in neutral isotonic TBS containing CaCl2 at 35 degrees C, was quantitatively inhibited in a concentration-dependent manner with laminin fragments E4 and E1' but not with fragments E8 and P1'. Affinity retardation chromatography was used for further characterization of the binding of laminin domains. The migration of fragment E4, but not of fragments E8 and P1', was retarded in a temperature- and calcium-dependent fashion on a laminin affinity column but not on a similar BSA column. These data are evidence that laminin fragments E4 and E1' possess essential terminal binding domains for the self-aggregation of laminin, while fragments E8 and P1' do not. Furthermore, the individual domain-specific interactions that contribute to assembly are calcium dependent and of low affinity.
层粘连蛋白通过一种依赖钙的两步协同机制自组装成大聚合物(Yurchenco, P. D., E. C. Tsilibary, A. S. Charonis, and H. Furthmayr. 1985. J. Biol. Chem. 260:7636 - 7644)。使用对应于B1链短臂的NH2末端球状体和相邻茎干(E4)、连接到第三条短臂近端茎干的A链和B2链两条短臂的复合物(E1')、缺乏球状结构域的类似复合物(P1')以及连接到大球状体相邻部分的长臂远端一半(E8)的特定蛋白酶水解产生的片段,研究了该过程的结构域特异性。在35℃含有CaCl2的中性等渗TBS中,聚合反应后360nm处的浊度增加,层粘连蛋白片段E4和E1'以浓度依赖性方式定量抑制聚合反应,而片段E8和P1'则无此作用。亲和阻滞色谱用于进一步表征层粘连蛋白结构域的结合。片段E4而非片段E8和P1'在层粘连蛋白亲和柱上以温度和钙依赖性方式迁移受阻,但在类似的牛血清白蛋白柱上则不然。这些数据证明层粘连蛋白片段E4和E1'具有层粘连蛋白自我聚集的必需末端结合结构域,而片段E8和P1'则没有。此外,有助于组装的各个结构域特异性相互作用是钙依赖性的且亲和力较低。