Department of Neuroscience and Neuroscience Training Program, University of Wisconsin, Madison, Wisconsin 53706, USA.
J Neurosci. 2013 Jan 2;33(1):273-85. doi: 10.1523/JNEUROSCI.2142-12.2013.
Intracellular Ca(2+) signals control the development and regeneration of spinal axons downstream of chemical guidance cues, but little is known about the roles of mechanical cues in axon guidance. Here we show that transient receptor potential canonical 1 (TRPC1) subunits assemble mechanosensitive (MS) channels on Xenopus neuronal growth cones that regulate the extension and direction of axon outgrowth on rigid, but not compliant, substrata. Reducing expression of TRPC1 by antisense morpholinos inhibits the effects of MS channel blockers on axon outgrowth and local Ca(2+) transients. Ca(2+) influx through MS TRPC1 activates the protease calpain, which cleaves the integrin adaptor protein talin to reduce Src-dependent axon outgrowth, likely through altered adhesion turnover. We found that talin accumulates at the tips of dynamic filopodia, which is lost upon cleavage of talin by active calpain. This pathway may also be important in axon guidance decisions since asymmetric inhibition of MS TRPC1 is sufficient to induce growth cone turning. Together our results suggest that Ca(2+) influx through MS TRPC1 on filopodia activates calpain to control growth cone turning during development.
细胞内 Ca(2+)信号控制化学导向线索下游脊髓轴突的发育和再生,但机械线索在轴突导向中的作用知之甚少。在这里,我们表明瞬时受体电位经典型 1 (TRPC1)亚基在非洲爪蟾神经元生长锥上组装机械敏感 (MS)通道,调节轴突在刚性而非顺应性基底上的延伸和方向。通过反义形态发生素来降低 TRPC1 的表达会抑制 MS 通道阻滞剂对轴突生长和局部 Ca(2+)瞬变的影响。通过 MS TRPC1 的 Ca(2+)内流激活蛋白酶钙蛋白酶,钙蛋白酶切割整合素衔接蛋白 talin,从而减少 Src 依赖性轴突生长,可能通过改变粘附周转率。我们发现 talin 聚集在动态丝状伪足的尖端,而在活性钙蛋白酶切割 talin 后,丝状伪足的尖端会丢失。由于不对称抑制 MS TRPC1 足以诱导生长锥转向,因此该途径在轴突导向决策中也可能很重要。总之,我们的结果表明,丝状伪足上的 MS TRPC1 介导的 Ca(2+)内流激活钙蛋白酶来控制发育过程中生长锥的转向。