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  • Coronin-1 and calcium signaling governs sympathetic final target innervation.

Coronin-1 and calcium signaling governs sympathetic final target innervation.

The Journal of neuroscience : the official journal of the Society for Neuroscience (2015-03-06)
Dong Suo, Juyeon Park, Samuel Young, Takako Makita, Christopher D Deppmann
摘要

Development of a functional peripheral nervous system requires axons to rapidly innervate and arborize into final target organs and then slow but not halt their growth to establish stable connections while keeping pace with organ growth. Here we examine the role of the NGF-TrkA effector protein, Coronin-1, on postganglionic sympathetic neuron final target innervation. In the absence of Coronin-1 we find that NGF-TrkA-PI3K signaling drives robust axon growth and branching in part by suppressing GSK3β. In contrast, the presence of Coronin-1 (wild-type neurons) suppresses but does not halt NGF-TrkA-dependent growth and branching. This relative suppression in axon growth behaviors is due to Coronin-1-dependent calcium release via PLC-γ1 signaling, which releases PI3K-dependent suppression of GSK3β. Finally, we demonstrate that Coro1a(-/-) mice display sympathetic axon overgrowth and overbranching phenotypes in the developing heart. Together with previous work demonstrating the Coronin-1 expression is NGF dependent, this work suggests that periods before and after NGF-TrkA-induced Coronin-1 expression (and likely other factors) defines two distinct axon growth states, which are critical for proper circuit formation in the sympathetic nervous system.

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抗酪氨酸羟化酶抗体, Chemicon®, from sheep
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离子霉素 来源于密团链霉菌, ≥98% (HPLC)
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LY-294,002 盐酸盐, solid, ≥98% (HPLC)
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U-73122 水合物, powder
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DL-酪氨酸, 99%
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GSK3β抑制剂XIX, IM-12, The GSK3β Inhibitor XIX, IM-12 controls the biological activity of GSK3β. This small molecule/inhibitor is primarily used for Phosphorylation & Dephosphorylation applications.