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整合素信号网络通过Src-Ephexin-RhoA GTP 酶信号轴促进轴突再生。

The Integrin Signaling Network Promotes Axon Regeneration via the Src-Ephexin-RhoA GTPase Signaling Axis.

机构信息

Division of Biological Science, Graduate School of Science, Nagoya University, Nagoya 464-8602, Japan.

Division of Biological Science, Graduate School of Science, Nagoya University, Nagoya 464-8602, Japan

出版信息

J Neurosci. 2021 Jun 2;41(22):4754-4767. doi: 10.1523/JNEUROSCI.2456-20.2021. Epub 2021 May 7.

Abstract

Axon regeneration is an evolutionarily conserved process essential for restoring the function of damaged neurons. In hermaphrodites, initiation of axon regeneration is regulated by the RhoA GTPase-ROCK (Rho-associated coiled-coil kinase)-regulatory nonmuscle myosin light-chain phosphorylation signaling pathway. However, the upstream mechanism that activates the RhoA pathway remains unknown. Here, we show that axon injury activates TLN-1/talin via the cAMP-Epac (exchange protein directly activated by cAMP)-Rap GTPase cascade and that TLN-1 induces multiple downstream events, one of which is integrin inside-out activation, leading to the activation of the RhoA-ROCK signaling pathway. We found that the nonreceptor tyrosine kinase Src, a key mediator of integrin signaling, activates the Rho guanine nucleotide exchange factor EPHX-1/ephexin by phosphorylating the Tyr-568 residue in the autoinhibitory domain. Our results suggest that the integrin signaling network regulates axon regeneration via the Src-RhoGEF-RhoA axis. The ability of axons to regenerate after injury is governed by cell-intrinsic regeneration pathways. We have previously demonstrated that the RhoA GTPase-ROCK (Rho-associated coiled-coil kinase) pathway promotes axon regeneration by inducing MLC-4 phosphorylation. In this study, we found that axon injury activates TLN-1/talin through the cAMP-Epac (exchange protein directly activated by cAMP)-Rap GTPase cascade, leading to integrin inside-out activation, which promotes axonal regeneration by activating the RhoA signaling pathway. In this pathway, SRC-1/Src acts downstream of integrin activation and subsequently activates EPHX-1/ephexin RhoGEF by phosphorylating the Tyr-568 residue in the autoinhibitory domain. Our results suggest that the integrin signaling network regulates axon regeneration via the Src-RhoGEF-RhoA axis.

摘要

轴突再生是一种进化上保守的过程,对于恢复受损神经元的功能至关重要。在雌雄同体中,轴突再生的启动受 RhoA GTPase-ROCK(Rho 相关卷曲螺旋激酶)-调节性非肌肉肌球蛋白轻链磷酸化信号通路的调节。然而,激活 RhoA 途径的上游机制尚不清楚。在这里,我们表明,轴突损伤通过 cAMP-Epac(cAMP 直接激活的交换蛋白)-Rap GTPase 级联激活 TLN-1/塔林,并且 TLN-1 诱导多种下游事件,其中之一是整合素的内-外激活,导致 RhoA-ROCK 信号通路的激活。我们发现,非受体酪氨酸激酶Src,整合素信号的关键介质,通过磷酸化自身抑制域中的 Tyr-568 残基激活 Rho 鸟嘌呤核苷酸交换因子 EPHX-1/ephexin。我们的结果表明,整合素信号网络通过 Src-RhoGEF-RhoA 轴调节轴突再生。损伤后轴突再生的能力受细胞内在再生途径的控制。我们之前已经证明,RhoA GTPase-ROCK(Rho 相关卷曲螺旋激酶)途径通过诱导 MLC-4 磷酸化来促进轴突再生。在这项研究中,我们发现轴突损伤通过 cAMP-Epac(cAMP 直接激活的交换蛋白)-Rap GTPase 级联激活 TLN-1/塔林,导致整合素内-外激活,通过激活 RhoA 信号通路促进轴突再生。在该途径中,SRC-1/Src 作为整合素激活的下游分子,随后通过磷酸化自身抑制域中的 Tyr-568 残基激活 EPHX-1/ephexin RhoGEF。我们的结果表明,整合素信号网络通过 Src-RhoGEF-RhoA 轴调节轴突再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5095/8260174/715646e36aec/SN-JNSJ210280F001.jpg

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