Lau P M, Zucker R S, Bentley D
Neurobiology Division, Department of Molecular and Cell Biology, University of California, Berkeley, California 94720, USA.
J Cell Biol. 1999 Jun 14;145(6):1265-75. doi: 10.1083/jcb.145.6.1265.
In neuronal growth cones, cycles of filopodial protrusion and retraction are important in growth cone translocation and steering. Alteration in intracellular calcium ion concentration has been shown by several indirect methods to be critically involved in the regulation of filopodial activity. Here, we investigate whether direct elevation of [Ca2+]i, which is restricted in time and space and is isolated from earlier steps in intracellular signaling pathways, can initiate filopodial protrusion. We raised [Ca2+]i level transiently in small areas of nascent axons near growth cones in situ by localized photolysis of caged Ca2+ compounds. After photolysis, [Ca2+]i increased from approximately 60 nM to approximately 1 microM within the illuminated zone, and then returned to resting level in approximately 10-15 s. New filopodia arose in this area within 1-5 min, and persisted for approximately 15 min. Elevation of calcium concentration within a single filopodium induced new branch filopodia. In neurons coinjected with rhodamine-phalloidin, F-actin was observed in dynamic cortical patches along nascent axons; after photolysis, new filopodia often emerged from these patches. These results indicate that local transient [Ca2+]i elevation is sufficient to induce new filopodia from nascent axons or from existing filopodia.
在神经元生长锥中,丝状伪足的伸出和回缩循环对于生长锥的迁移和转向至关重要。通过几种间接方法已表明,细胞内钙离子浓度的改变在丝状伪足活动的调节中起着关键作用。在此,我们研究在时间和空间上受到限制且与细胞内信号通路早期步骤相分离的[Ca2+]i直接升高是否能引发丝状伪足的伸出。我们通过笼锁Ca2+化合物的局部光解,在原位生长锥附近新生轴突的小区域内瞬时提高[Ca2+]i水平。光解后,光照区域内的[Ca2+]i从约60 nM增加到约1 μM,然后在约10 - 15秒内恢复到静息水平。在1 - 5分钟内该区域出现了新的丝状伪足,并持续约15分钟。单个丝状伪足内钙离子浓度的升高诱导了新的分支丝状伪足。在共注射罗丹明 - 鬼笔环肽的神经元中,沿新生轴突在动态皮质斑块中观察到F - 肌动蛋白;光解后,新的丝状伪足常常从这些斑块中出现。这些结果表明,局部瞬时[Ca2+]i升高足以从新生轴突或现有丝状伪足诱导出新的丝状伪足。