Greenhill N S, Rüger B M, Hasan Q, Davis P F
Renal Research Unit, Department of Medicine, Wellington School of Medicine, P.O. Box 7343, Wellington South, New Zealand.
Matrix Biol. 2000 Feb;19(1):19-28. doi: 10.1016/s0945-053x(99)00053-0.
The short chain collagen variant, type VIII, is considered to be comprised of two distinct gene products, the alpha1 and alpha2 polypeptide chains. However, recent in vitro translation studies suggest that these chains can form homotrimers. We report here data from biochemical, immunohistochemical and molecular biological experiments, which together provide evidence that alpha1 and alpha2 polypeptides of type VIII collagen exist as homotrimers in cells and tissues. High-performance liquid chromatographic separation of type VIII collagen isolated from Descemet's membrane consistently demonstrated equimolar quantities of the two chains (alpha1:alpha2 1. 03+/-0.02 (S.E.M.); n=41). The availability of highly specific antibodies for the two polypeptides has assisted the in vivo characterisation of type VIII collagen. Immunoprecipitation of trimeric type VIII collagen from Descemet's membrane with purified anti-alpha1(VIII) and anti-alpha2(VIII) yielded fractions that contained only the alpha1(VIII) and alpha2(VIII) chains, respectively. Cultured human mesangial cells synthesised both polypeptides, but the alpha1(VIII) chain was found exclusively in the cell pellet, while the media contained only the alpha2(VIII) chain. The RNA from human mesangial cells and cornea showed message for both chains. However, in peritoneal fibroblast and mesothelial cell RNA, only alpha1(VIII) mRNA was detectable, demonstrating that the transcription of these two genes was not always co-ordinated. Immunohistochemistry showed that both polypeptides were present in cornea, optic nerve, aorta and umbilical cord but did not always co-localise. These results indicate the alpha1(VIII) and alpha2(VIII) chains preferentially form pepsin-resistant, homotrimeric molecules and so can exist as two distinct proteins.
短链VIII型胶原变体被认为由两种不同的基因产物α1和α2多肽链组成。然而,最近的体外翻译研究表明,这些链可以形成同三聚体。我们在此报告生化、免疫组织化学和分子生物学实验的数据,这些数据共同提供了证据,表明VIII型胶原的α1和α2多肽在细胞和组织中以同三聚体形式存在。从Descemet膜分离的VIII型胶原经高效液相色谱分离始终显示两条链的量呈等摩尔比(α1:α2 1.03±0.02(标准误);n = 41)。针对这两种多肽的高特异性抗体的可得性有助于对VIII型胶原进行体内特性鉴定。用纯化的抗α1(VIII)和抗α2(VIII)从Descemet膜免疫沉淀三聚体VIII型胶原,得到的组分分别仅含有α1(VIII)和α2(VIII)链。培养的人系膜细胞合成这两种多肽,但α1(VIII)链仅存在于细胞沉淀中;而培养基中仅含有α2(VIII)链。人系膜细胞和角膜的RNA显示有这两条链的信息。然而,在腹膜成纤维细胞和间皮细胞的RNA中,仅可检测到α1(VIII)mRNA,这表明这两个基因的转录并不总是协调的。免疫组织化学显示,这两种多肽都存在于角膜、视神经、主动脉和脐带中,但并不总是共定位。这些结果表明,α1(VIII)和α2(VIII)链优先形成抗胃蛋白酶的同三聚体分子,因此可以作为两种不同的蛋白质存在。