Yada T, Suzuki S, Kobayashi K, Kobayashi M, Hoshino T, Horie K, Kimata K
Institute for Molecular Science of Medicine, Aichi Medical University, Japan.
J Biol Chem. 1990 Apr 25;265(12):6992-9.
We have prepared a high buoyant density proteoglycan fraction from the vitreous humor of 13-day-old chick embryos. Using immunoblot analysis coupled with chondroitinase digestion, we demonstrate that the purified preparation is composed predominantly of type IX collagen-like chondroitin sulfate proteoglycan with an alpha 1(IX) chain Mr approximately 23,000 shorter than the known alpha 1 in cartilage type IX. Also different from cartilage type IX is the size of the chondroitin sulfate chain attached to the alpha 2(IX) polypeptide; its Mr is approximately 350,000 indicating that it is approximately 10 times larger in vitreous humor than in cartilage. Examination of vitreous bodies at different developmental stages indicates that a transition occurs in the size of alpha 1(IX) in a well defined temporal pattern; at about stage 31, a cartilage-type alpha 1(IX) of Mr 84,000 is the predominant species, whereas at stage 36 and thereafter, a Mr 61,000 species appears with a concomitant disappearance of the Mr 84,000 species. Immunostaining for type IX collagen followed by electron microscopic observation of 13-day-old chick embryo vitreous humor reveals a regular D-periodic arrangement of vitreous type IX collagen proteoglycan along thin fibrils. It seems possible that the chondroitin sulfate chains of extraordinarily high viscosity and high molecular weight may extend away from the fibrils, thus contributing to structural as well as functional properties of this unique matrix.
我们从13日龄鸡胚的玻璃体液中制备了高浮力密度的蛋白聚糖组分。通过免疫印迹分析结合软骨素酶消化,我们证明纯化后的制剂主要由IX型胶原样硫酸软骨素蛋白聚糖组成,其α1(IX)链的分子量比软骨中已知的α1链小约23,000。与软骨IX型不同的还有连接在α2(IX)多肽上的硫酸软骨素链的大小;其分子量约为350,000,表明它在玻璃体液中的大小比在软骨中大约大10倍。对不同发育阶段玻璃体的检查表明,α1(IX)的大小以明确的时间模式发生转变;在大约第31阶段,分子量为84,000的软骨型α1(IX)是主要类型,而在第36阶段及之后,出现了分子量为61,000的类型,同时分子量为84,000的类型消失。对IX型胶原进行免疫染色,然后对13日龄鸡胚玻璃体液进行电子显微镜观察,发现玻璃体液IX型胶原蛋白聚糖沿细纤维呈规则的D周期排列。粘度和分子量极高的硫酸软骨素链似乎可能从纤维延伸出去,从而有助于这种独特基质的结构和功能特性。