Hammerschlag R, Bobinski J A
J Neurochem. 1981 Mar;36(3):1114-21. doi: 10.1111/j.1471-4159.1981.tb01707.x.
Adenosine triphosphatase (ATPase) activity stimulated by Ca2+ or Mg2+ was characterized in spinal nerve and spinal sensory ganglion of bullfrog. Enzyme activity of homogenates from both sources reached a maximum at a 1-2 mM concentration of either cation, although the level of maximal activity in nerve trunks was approximately twice that in ganglia. Enzyme activation was not observed with 2 mM-Sr2+ or Ba2+. Co2+ or Mn2+, at 2 mM, depressed Ca2+ activation of the enzyme by 50-60% in nerve but had no inhibitory effect on ganglia activity. In intact spinal ganglion/spinal nerve preparations, incubated for 20 h in medium containing 0.2 mM-Co2+, no effect was detected on Ca2+/Mg2+ ATPase activity in ganglia or nerve trunks whereas fast axonal transport was inhibited by 80%. Incubation in medium containing 0.02 mM-Hg2+ depressed enzyme activity in ganglia by 64% and in nerve trunks by 44%, whereas fast transport was again inhibited by 80%. When only nerve trunks were exposed to these ions, Hg2+ but not Co2+ was observed to slow the rate of fast axonal transport. The divalent cation specificity of the Ca2+/Mg2+ ATPase activity is distinct from the ion specificities, determined in previous work, of the Ca2+ requirement during initiation of fast axonal transport in the soma, and of the Ca2+ requirement during translocation in the axon. Thus, previous observations of Ca2+-dependent events in fast axonal transport cannot be taken per se to suggest the involvement of Ca2+/Mg+ ATPase in the transport process.
研究了牛蛙脊神经和脊神经节中由Ca2+或Mg2+刺激的三磷酸腺苷酶(ATPase)活性。两种来源匀浆的酶活性在两种阳离子浓度为1-2 mM时均达到最大值,尽管神经干中的最大活性水平约为神经节中的两倍。2 mM的Sr2+或Ba2+未观察到酶激活作用。2 mM的Co2+或Mn2+使神经中该酶的Ca2+激活作用降低50-60%,但对神经节活性无抑制作用。在完整的脊神经节/脊神经标本中,于含0.2 mM-Co2+的培养基中孵育20小时,未检测到对神经节或神经干中Ca2+/Mg2+ ATPase活性的影响,而快速轴突运输受到80%的抑制。在含0.02 mM-Hg2+的培养基中孵育使神经节中的酶活性降低64%,神经干中的降低44%,而快速运输再次受到80%的抑制。当仅神经干暴露于这些离子时,观察到Hg2+而非Co2+会减慢快速轴突运输的速率。Ca2+/Mg2+ ATPase活性的二价阳离子特异性不同于先前工作中确定的在胞体中快速轴突运输起始时Ca2+需求以及轴突中转运时Ca2+需求的离子特异性。因此,先前在快速轴突运输中对Ca2+依赖性事件的观察本身不能表明Ca2+/Mg+ ATPase参与了运输过程。