Kohsaka S, Dokas L A, Agranoff B W
J Neurochem. 1981 Mar;36(3):1166-74. doi: 10.1111/j.1471-4159.1981.tb01714.x.
The activities of uridine kinase (EC 2.7.1.48), uridine monophosphate (UMP) kinase (EC 2.7.1.3.14), and uridine diphosphate (UDP) kinase (EC 2.7.4.6) were measured in retinal high-speed supernatant fractions following unilateral optic nerve crush in the goldfish. The enzyme activities followed a similar time course, with initial increases 2-3 days following nerve crush, peak activity at 4 days, and a gradual return to basal levels by day 21. The magnitude of the stimulation on day 4 was about 35% in each case. Activities of two enzymes of intermediary metabolism, pyruvate kinase (EC 2.7.1.40) and lactic dehydrogenase (EC 1.1.1.27), were not altered, indicating that the coordinate increases in nucleoside and nucleotide kinase activities were specific responses to the nerve injury. The increased labeling could not be explained by altered phosphohydrolytic activities. The nature of the enhancement was further studied in UDP kinase, the most active of the kinases examined. Neither low-molecular-weight components nor substrate availability could account for the observed increase in UDP kinase in the 4 day post-crush retinas. The Km for UDP was unaltered, and a mixing experiment did not support the possibility that stimulatory or inhibitory factors played a role. The enhancement of UDP kinase activity was blocked by injection of actinomycin D following nerve crush. The results suggest that the observed increases in enzymes of uridine metabolism result from their increased formation following nerve crush.
在金鱼单侧视神经挤压后,测定视网膜高速上清液组分中尿苷激酶(EC 2.7.1.48)、尿苷一磷酸(UMP)激酶(EC 2.7.1.3.14)和尿苷二磷酸(UDP)激酶(EC 2.7.4.6)的活性。酶活性呈现相似的时间进程,神经挤压后2 - 3天开始增加,4天时达到峰值活性,到21天时逐渐恢复到基础水平。在每种情况下,第4天刺激的幅度约为35%。中间代谢的两种酶,丙酮酸激酶(EC 2.7.1.40)和乳酸脱氢酶(EC 1.1.1.27)的活性没有改变,这表明核苷和核苷酸激酶活性的协同增加是对神经损伤的特异性反应。标记的增加不能用磷酸水解活性的改变来解释。在检测的最活跃的激酶UDP激酶中进一步研究了增强的性质。低分子量组分和底物可用性都不能解释挤压后4天视网膜中UDP激酶的观察到的增加。UDP的Km没有改变,并且一个混合实验不支持刺激或抑制因子起作用的可能性。神经挤压后注射放线菌素D可阻断UDP激酶活性的增强。结果表明,观察到的尿苷代谢酶的增加是由于神经挤压后它们的形成增加所致。