miR-30b Promotes spinal cord sensory function recovery via the Sema3A/NRP-1/PlexinA1/RhoA/ROCK Pathway.

IF 5.3 2区 医学 Q1 Biochemistry, Genetics and Molecular Biology Journal of Cellular and Molecular Medicine Pub Date : 2020-11-01 Epub Date: 2020-09-25 DOI:10.1111/jcmm.15591
Xin Wang, Bo Li, Zhijie Wang, Fengyan Wang, Jing Liang, Chuanjie Chen, Lei Zhao, Bo Zhou, Xiaoling Guo, Liqun Ren, Xin Yuan, Xueming Chen, Tianyi Wang
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引用次数: 14

Abstract

Spinal cord injury (SCI) induces both motor and sensory dysfunctions. We wondered whether miR-30b could promote primary sensory neuron (PSN) axon growth in inhibitory microenvironment. The neurite growth was promoted by miR-30b agomir and inhibited by antagomir. MiR-30b targeted and degraded sema3A mRNA. MiR-30b regulated the formation of sema3A-NRP-1-PlexinA1 complex via targeting sema3A. The neurite length was induced by the miR-30b agomir, and the application of sema3A protein could reverse the effect of agomir. GTP-RhoA and ROCK expression were down-regulated by miR-30b. Neurite outgrowth that inhibited by sema3A and the miR-30b antagomir was increased by Y-27632. Agomir promoted neurite growth in NogoA inhibitory conditions, which indicated miR-30b could both enhance neuronal intrinsic regenerative ability and promote neurite growth against inhibitory microenvironment via Sema3A/NRP-1/PlexinA1/RhoA/ROCK axis. The agomir could also regulate Sema3A/NRP-1/PlexinA1/RhoA/ROCK axis in vivo and restore spinal cord sensory conductive function. In conclusion, miR-30b could be a novel target for sensation recovery after SCI.

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miR-30b通过Sema3A/NRP-1/PlexinA1/RhoA/ROCK通路促进脊髓感觉功能恢复。
脊髓损伤(SCI)可引起运动和感觉功能障碍。我们想知道miR-30b是否可以促进初级感觉神经元(PSN)轴突在抑制性微环境中的生长。miR-30b阿戈莫可促进神经突生长,安塔戈莫可抑制神经突生长。MiR-30b靶向并降解sema3A mRNA。MiR-30b通过靶向sema3A调控sema3A- nrp -1- plexina1复合物的形成。miR-30b agomir诱导神经突长度,sema3A蛋白的应用可以逆转agomir的作用。miR-30b下调GTP-RhoA和ROCK的表达。被sema3A和miR-30b拮抗莫抑制的神经突生长被Y-27632增加。Agomir促进NogoA抑制条件下的神经突生长,说明miR-30b可以通过Sema3A/ nnp -1/PlexinA1/RhoA/ROCK轴增强神经元内在再生能力,促进神经突生长。agomir还能在体内调节Sema3A/NRP-1/PlexinA1/RhoA/ROCK轴,恢复脊髓感觉传导功能。总之,miR-30b可能是脊髓损伤后感觉恢复的新靶点。
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来源期刊
CiteScore
10.00
自引率
1.90%
发文量
496
审稿时长
28 weeks
期刊介绍: Bridging physiology and cellular medicine, and molecular biology and molecular therapeutics, Journal of Cellular and Molecular Medicine publishes basic research that furthers our understanding of the cellular and molecular mechanisms of disease and translational studies that convert this knowledge into therapeutic approaches.
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