Volpi N, Dondi M, Bolognani A M
Department of "Biologia Animale", Department of Biological Chemistry Section, via Berengario 14, University of Modena, 41100 Modena, Italy.
Biochim Biophys Acta. 1998 Apr 10;1380(2):239-48. doi: 10.1016/s0304-4165(97)00146-3.
A small chondroitin sulfate proteoglycan was isolated and partially characterized for core protein and glycosaminoglycan structures from the mucus surrounding embryos in the developmental pouch of Viviparus ater (Mollusca Gastropoda). The protein bearing polysaccharide nature was confirmed by gel-permeation chromatography separation of fractions positive to the uronic acid dosage, 7.5% SDS-PAGE under reducing conditions, sequential staining with alcian blue and ammoniacal silver. Its molecular mass was calculated at about 228,800. After degradation of the galactosaminoglycan components by chondroitinase ABC in the presence of proteinase inhibitors, the molecular mass of the core protein was determined at about 72,200. Treatment of the proteoglycan with keratanase did not modify its electrophoretic migration. Isoelectric focusing of the core protein demonstrated a micro-heterogeneity with the presence of two isoforms with different isoelectric point, pI=8.2 and 6.6, in a ratio of about 1:2.2. The glycosaminoglycan component of the proteoglycan was characterized as chondroitin sulfate with a molecular mass of about 30,750 composed of 5% non-sulfated unsaturated disaccharide, 94% monosulfated disaccharides (4-monosulfated to 6-monosulfated disaccharide ratio of 1.36) and 1. 5% disulfated disaccharides (in particular 1.3% 2,6-disulfated disaccharide) with a sulfate to carboxyl ratio of 0.96. Degradation of the chondroitin sulfate with chondroitinase ABC and ACII permitted to determine a percentage of glucuronic acid of about 78.4. The proteoglycan isolated from the mucus surrounding the embryos of Viviparus ater is formed by a small core protein bearing about five chondroitin sulfate chains (80% chondroitin sulfate/20% dermatan sulfate) with potential function in the developmental processes of molluscs embryos.
从静水椎实螺(软体动物腹足纲)发育袋中胚胎周围的黏液中分离出一种小硫酸软骨素蛋白聚糖,并对其核心蛋白和糖胺聚糖结构进行了部分表征。通过对糖醛酸定量呈阳性的级分进行凝胶渗透色谱分离、在还原条件下进行7.5% SDS-PAGE、依次用阿尔辛蓝和氨性银染色,证实了该蛋白具有多糖性质。其分子量计算约为228,800。在蛋白酶抑制剂存在下用硫酸软骨素酶ABC降解半乳糖胺聚糖成分后,核心蛋白的分子量测定约为72,200。用角蛋白酶处理该蛋白聚糖未改变其电泳迁移率。核心蛋白的等电聚焦显示出微异质性,存在两种不同等电点(pI = 8.2和6.6)的同工型,比例约为1:2.2。该蛋白聚糖的糖胺聚糖成分被表征为硫酸软骨素,分子量约为30,750,由5%的非硫酸化不饱和二糖、94%的单硫酸化二糖(4-单硫酸化与6-单硫酸化二糖的比例为1.36)和1.5%的双硫酸化二糖(特别是1.3%的2,6-双硫酸化二糖)组成,硫酸与羧基的比例为0.96。用硫酸软骨素酶ABC和ACII降解硫酸软骨素后,测得葡萄糖醛酸的百分比约为78.4。从静水椎实螺胚胎周围黏液中分离出的蛋白聚糖由一个带有约五条硫酸软骨素链(80%硫酸软骨素/20%硫酸皮肤素)的小核心蛋白组成,在软体动物胚胎发育过程中可能具有潜在功能。