Than Manuel E, Henrich Stefan, Huber Robert, Ries Albert, Mann Karlheinz, Kühn Klaus, Timpl Rupert, Bourenkov Gleb P, Bartunik Hans D, Bode Wolfram
Max-Planck-Institut für Biochemie, Am Klopferspitz 18A, 82152 Martinsried, Germany.
Proc Natl Acad Sci U S A. 2002 May 14;99(10):6607-12. doi: 10.1073/pnas.062183499.
Triple-helical collagen IV protomers associate through their N- and C-termini forming a three-dimensional network, which provides basement membranes with an anchoring scaffold and mechanical strength. The noncollagenous (NC1) domain of the C-terminal junction between two adjacent collagen IV protomers from human placenta was crystallized and its 1.9-A structure was solved by multiple anomalous diffraction (MAD) phasing. This hexameric NC1 particle is composed of two trimeric caps, which interact through a large planar interface. Each cap is formed by two alpha 1 fragments and one alpha 2 fragment with a similar previously uncharacterized fold, segmentally arranged around an axial tunnel. Each monomer chain folds into two structurally very similar subdomains, which each contain a finger-like hairpin loop that inserts into a six-stranded beta-sheet of the neighboring subdomain of the same or the adjacent chain. Thus each trimer forms a quite regular, but nonclassical, sixfold propeller. The trimer-trimer interaction is further stabilized by a previously uncharacterized type of covalent cross-link between the side chains of a Met and a Lys residue of the alpha 1 and alpha 2 chains from opposite trimers, explaining previous findings of nonreducible cross-links in NC1. This structure provides insights into NC1-related diseases such as Goodpasture and Alport syndromes.
三螺旋IV型胶原蛋白原聚体通过其N端和C端相互结合,形成三维网络,为基底膜提供锚定支架和机械强度。人胎盘相邻两个IV型胶原蛋白原聚体C端连接处的非胶原蛋白(NC1)结构域被结晶,并通过多波长反常散射(MAD)相位法解析了其1.9埃的结构。这个六聚体NC1颗粒由两个三聚体帽组成,它们通过一个大的平面界面相互作用。每个帽由两个α1片段和一个α2片段形成,具有类似的、以前未表征的折叠方式,围绕轴向通道呈节段性排列。每个单体链折叠成两个结构非常相似的亚结构域,每个亚结构域都包含一个指状发夹环,该环插入同一链或相邻链的相邻亚结构域的六链β折叠中。因此,每个三聚体形成一个相当规则但非经典的六重螺旋桨。三聚体-三聚体相互作用通过来自相反三聚体的α1和α2链的一个甲硫氨酸和一个赖氨酸残基侧链之间以前未表征的共价交联进一步稳定,这解释了之前在NC1中发现的不可还原交联。该结构为深入了解与NC1相关的疾病,如Goodpasture综合征和Alport综合征提供了线索。