Burkart T, Wiesmann U N
Dev Biol. 1987 Apr;120(2):447-56. doi: 10.1016/0012-1606(87)90248-x.
Sulfation and desulfation of total glycosaminoglycans (GAG) as well as of chondroitin sulfates (A + C), dermatan sulfate, and heparan sulfate were quantified in the developing cerebrum and cerebellum of mice by labeling with [35S]sulfate combined with chases started 24 hr after [35S]sulfate injection. In both the developing cerebrum and cerebellum, the rate of biosynthesis of total sulfated GAG was highest shortly after birth (2 days), decreased sharply thereafter, and reached a plateau after 14 days. The biosynthetic activities of chondroitin sulfates and heparan sulfate decreased sharply up to 14 days and retained constant levels afterward. By contrast, the rates of biosynthesis of dermatan sulfate increased up to 14 days. The biodegradation rates of total sulfated GAG as well as of chondroitin sulfates, heparan sulfate, and dermatan sulfate were strongly correlated with the corresponding rates of biosynthesis during the first 2 postnatal weeks. Total and individual sulfated GAG showed high degradation rates resulting in half-life times of a few hours up to 1 1/2 days. Thus sulfated GAG are synthesized in excess and the actual net content seems to be co-regulated to a high degree by lysosomal degradation. In both brain parts, a proportional increase of the sulfated GAG content vs the total GAG content from 40% at birth to 90% at 28 days was observed. Since during development heparan sulfate and dermatan sulfate manifested a relative increase in their daily net synthesis besides a decrease of chondroitin sulfates, a developmental increase of the sulfate groups linked to GAG is evidenced. This molecular differentiation resulting in microenvironmental changes may be of high functional significance.
通过用[35S]硫酸盐标记并在[35S]硫酸盐注射24小时后开始追踪,对小鼠发育中的大脑和小脑中总糖胺聚糖(GAG)以及硫酸软骨素(A + C)、硫酸皮肤素和硫酸乙酰肝素的硫酸化和去硫酸化进行了定量。在发育中的大脑和小脑中,总硫酸化GAG的生物合成速率在出生后不久(2天)最高,此后急剧下降,并在14天后达到平稳状态。硫酸软骨素和硫酸乙酰肝素的生物合成活性在14天前急剧下降,此后保持恒定水平。相比之下,硫酸皮肤素的生物合成速率在14天前增加。在出生后的前两周,总硫酸化GAG以及硫酸软骨素、硫酸乙酰肝素和硫酸皮肤素的生物降解速率与相应的生物合成速率密切相关。总硫酸化GAG和单个硫酸化GAG显示出高降解速率,半衰期为几小时至1.5天。因此,硫酸化GAG合成过量,实际净含量似乎在很大程度上由溶酶体降解共同调节。在两个脑区,均观察到硫酸化GAG含量与总GAG含量的比例从出生时的40%增加到28天时的90%。由于在发育过程中,除了硫酸软骨素减少外,硫酸乙酰肝素和硫酸皮肤素的每日净合成相对增加,因此证明了与GAG相连的硫酸基团在发育过程中的增加。这种导致微环境变化的分子分化可能具有重要的功能意义。