Duncan K G, Fessler L I, Bächinger H P, Fessler J H
J Biol Chem. 1983 May 10;258(9):5869-77.
Procollagen IV was isolated from culture media of the mouse endodermal cell line PF-HR9. Some of the triple helical procollagen IV molecules were associated at their NH2 ends to tetramers which were identified by electron microscopy, velocity sedimentation, and electrophoresis. The formation of these tetramers in cell cultures and from isolated procollagen IV molecules was investigated. After an initial noncovalent association, which is reversible, disulfide bonds form between molecules. Even alkylated molecules form disulfide-linked tetramers when exposed to a mixture of reduced and oxidized glutathione. This reaction requires an adequate concentration of procollagen and is not facilitated by added laminin, Ca2+, or Mg2+ ions. Cystine, as a normal constituent of cell culture media, interferes in tetramer assembly, presumably by forming mixed disulfides. Tetramers formed normally and under the influence of glutathione are similar, but probably not identical, and resemble those isolated from fragmented basement membranes. We conclude that the NH2 ends of procollagen IV molecules can associate into tetramers without the help of other molecules and that disulfide bridges subsequently stabilize the association in various ways.
Ⅳ型前胶原是从小鼠内胚层细胞系PF-HR9的培养基中分离出来的。一些三螺旋Ⅳ型前胶原分子在其氨基末端与通过电子显微镜、速度沉降和电泳鉴定的四聚体结合。研究了这些四聚体在细胞培养物中以及从分离的Ⅳ型前胶原分子中形成的情况。在最初的可逆非共价结合之后,分子之间形成二硫键。即使是烷基化的分子,当暴露于还原型和氧化型谷胱甘肽的混合物中时,也会形成二硫键连接的四聚体。该反应需要足够浓度的前胶原,添加层粘连蛋白、Ca2+或Mg2+离子并不能促进其反应。胱氨酸作为细胞培养基的正常成分,可以干扰四聚体的组装,可能是通过形成混合二硫键来实现的。在正常情况下以及在谷胱甘肽的影响下形成的四聚体是相似的,但可能不完全相同,并且类似于从破碎的基底膜中分离出来的四聚体。我们得出结论,Ⅳ型前胶原分子的氨基末端可以在没有其他分子帮助的情况下结合形成四聚体,并且二硫键随后以各种方式稳定这种结合。