Hiscock D R, Canfield A, Gallagher J T
University of Manchester, CRC Department of Medical Oncology, UK.
Biochim Biophys Acta. 1995 May 11;1244(1):104-12. doi: 10.1016/0304-4165(94)00206-d.
The distribution and structure of heparan sulphate (HS) synthesised by bovine aortic endothelial cells (BAEC) has been studied. Confluent cultures were harvested and analysed as three separate compartments: (a) the culture medium, (b) the detergent-soluble cell-associated material and (c) the detergent-insoluble matrix material extracted with 6 M urea. HS was present in all three of the culture compartments, but the molecular size of the HS proteoglycans (PG) and the free polysaccharide chains varied according to compartment origin. The matrix pool accounted for almost 50% of the total HS which was present as a large HSPG possessing polysaccharide chains of 79 kDa. When studied in more detail, these large HS chains displayed an N-sulphate content and distribution (determined by low pH nitrous acid treatment) similar to that seen in the majority of other mammalian heparan sulphates. Extended iduronate sequences were also identified (i.e., heparitinase-resistant sequences); however, apart from these regions, the degree of O-sulphation was relatively low. In addition, the presence of heparin-like sequences (GlcNSO3(+/- 6S)-IdoA(2S)), characterised by heparinase sensitivity, accounted for only 5% of the disaccharides and such sequences appeared to be located with an ordered distribution, mainly in relatively short sulphated domains within the intact molecule. Given the strategic location of the large matrix-associated HSPG within the BAEC system studied, it is conceivable that the HS structure may be important in a number of functions such as cell attachment processes and/or the binding of growth factors.
对牛主动脉内皮细胞(BAEC)合成的硫酸乙酰肝素(HS)的分布和结构进行了研究。将汇合培养物收获并分为三个独立部分进行分析:(a)培养基,(b)去污剂可溶的细胞相关物质,以及(c)用6M尿素提取的去污剂不溶的基质物质。HS存在于所有三个培养部分中,但HS蛋白聚糖(PG)和游离多糖链的分子大小根据部分来源而有所不同。基质池占总HS的近50%,其以具有79kDa多糖链的大型HSPG形式存在。当进行更详细的研究时,这些大型HS链显示出与大多数其他哺乳动物硫酸乙酰肝素中所见相似的N-硫酸化含量和分布(通过低pH亚硝酸处理确定)。还鉴定出了延伸的艾杜糖醛酸序列(即抗肝素酶序列);然而,除了这些区域外,O-硫酸化程度相对较低。此外,以对肝素酶敏感为特征的类肝素序列(GlcNSO3(+/- 6S)-IdoA(2S))仅占二糖的5%,并且这些序列似乎以有序分布存在,主要位于完整分子内相对较短的硫酸化结构域中。鉴于在所研究的BAEC系统中与基质相关的大型HSPG的战略位置,可以想象HS结构在许多功能中可能很重要,例如细胞附着过程和/或生长因子的结合。