Robinson J A, Robinson H C
Biochem J. 1981 Mar 15;194(3):839-46. doi: 10.1042/bj1940839.
Embryonic-chicken epiphyseal cartilage was incubated in vitro with a variety of beta-xylosides and the amount of [3H]acetate incorporation into chondroitin sulphate was determined under conditions when normal protein core production was inhibited by cycloheximide. The ability of the different beta-xylosides to relieve thea cycloheximide-mediated inhibition of chondroitin sulphate synthesis was influenced by the nature of the aglycan group of te xyloside. beta-Xylosides with apolar and uncharged aglycan groups were most effective and produced a severalfold stimulation of chondroitin sulphate biosynthesis. beta-Xylosides with charged aglycan groups were less effective initiators of chondroitin sulphate synthesis. The rate of galactose transfer from UDP-galactose to each of the beta-xylosides, catalysed by a cell-free microsomal preparation from embryonic cartilage, was measured. This study showed that the nature of the aglycan group of the beta-xyloside was a factor determining the capacity of the xyloside to act as an acceptor for galactosyltransferase I, the enzyme that catalyses the first galactose transfer reaction of chondroitin sulphate synthesis. The aglycan group of the xyloside also appeared to influence other steps leading to chondroitin sulphate chain initiation in vitro.
将鸡胚骺软骨在体外与多种β-木糖苷一起孵育,并在正常蛋白质核心产生被环己酰亚胺抑制的条件下,测定[3H]乙酸掺入硫酸软骨素的量。不同β-木糖苷缓解环己酰亚胺介导的硫酸软骨素合成抑制的能力受木糖苷糖苷配基基团性质的影响。具有非极性且不带电荷的糖苷配基基团的β-木糖苷最为有效,能使硫酸软骨素生物合成受到几倍的刺激。带有带电荷的糖苷配基基团的β-木糖苷作为硫酸软骨素合成的引发剂效果较差。测定了由胚胎软骨的无细胞微粒体制剂催化的从UDP-半乳糖向每种β-木糖苷的半乳糖转移速率。这项研究表明,β-木糖苷的糖苷配基基团性质是决定木糖苷作为半乳糖基转移酶I受体能力的一个因素,该酶催化硫酸软骨素合成的第一个半乳糖转移反应。木糖苷的糖苷配基基团似乎也影响体外导致硫酸软骨素链起始的其他步骤。