Brittingham Raymond, Colombo Morgana, Ito Hidetoshi, Steplewski Andrzej, Birk David E, Uitto Jouni, Fertala Andrzej
Department of Dermatology and Cutaneous Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.
J Biol Chem. 2005 Jan 7;280(1):191-8. doi: 10.1074/jbc.M406210200. Epub 2004 Oct 27.
Procollagen VII is a homotrimer of 350-kDa pro-alpha1(VII) chains, each consisting of a central collagenous domain flanked by the noncollagenous N-terminal NC1 domain and the C-terminal NC2 domain. After secretion from cells, procollagen VII molecules form anti-parallel dimers with a C-terminal 60-nm overlap. Characteristic alignment of procollagen VII monomers forming a dimer depends on site-specific binding between the NC2 domain and the triple-helical region adjacent to Cys-2634 of the interacting procollagen VII molecules. Formation of the intermolecular disulfide bonds between Cys-2634 and either Cys-2802 or Cys-2804 is promoted by the cleavage of the NC2 domain by procollagen C-proteinase. By employing recombinant procollagen VII variants harboring G2575R, R2622Q, or G2623C substitutions previously disclosed in patients with dystrophic epidermolysis bullosa, we studied how these amino acid substitutions affect intermolecular interactions. Binding assays utilizing an optical biosensor demonstrated that the G2575R substitution increased affinity between mutant molecules. In contrast, homotypic binding between the R2622Q or G2623C molecules was not detected. In addition, kinetics of heterotypic binding of all analyzed mutants to wild type collagen VII were different from those for binding between wild type molecules. Moreover, solid-state binding assays demonstrated that R2622Q and G2623C substitutions prevent formation of stable assemblies of procollagen C-proteinase-processed mutants. These results indicate that single amino acid substitutions in procollagen VII alter its self-assembly and provide a basis for understanding the pathomechanisms leading from mutations in the COL7A1 gene to fragility of the dermal-epidermal junction seen in patients with dystrophic forms of epidermolysis bullosa.
前胶原VII是由350 kDa的前α1(VII)链组成的同三聚体,每条链由一个中央胶原结构域组成,两侧分别是非胶原性的N端NC1结构域和C端NC2结构域。从前体细胞分泌后,前胶原VII分子形成具有C端60纳米重叠的反平行二聚体。形成二聚体的前胶原VII单体的特征性排列取决于NC2结构域与相互作用的前胶原VII分子中Cys-2634相邻的三螺旋区域之间的位点特异性结合。前胶原C蛋白酶对NC2结构域的切割促进了Cys-2634与Cys-2802或Cys-2804之间分子间二硫键的形成。通过使用携带先前在营养不良性大疱性表皮松解症患者中发现的G2575R、R2622Q或G2623C替代的重组前胶原VII变体我们研究了这些氨基酸替代如何影响分子间相互作用。利用光学生物传感器进行的结合试验表明,G2575R替代增加了突变分子之间的亲和力。相比之下,未检测到R2622Q或G2623C分子之间的同型结合此外,所有分析突变体与野生型胶原VII异型结合的动力学与野生型分子之间的结合动力学不同。此外,固态结合试验表明,R2622Q和G2623C替代阻止了前胶原C蛋白酶处理的突变体形成稳定聚集体这些结果表明,前胶原VII中的单个氨基酸替代改变了其自组装,并为理解从COL7A1基因突变导致营养不良型大疱性表皮松解症患者皮肤-表皮连接脆弱性的发病机制提供了基础。