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癌胚蛋白受体 ArmC10 可促进神经损伤后的小鼠轴突再生和人诱导多能干细胞源性感觉神经元的突起生长。

The oncomodulin receptor ArmC10 enables axon regeneration in mice after nerve injury and neurite outgrowth in human iPSC-derived sensory neurons.

机构信息

Department of Neurosurgery, Boston Children's Hospital and Harvard Medical School, Boston, MA 02115, USA.

F.M. Kirby Neurobiology Center, Boston Children's Hospital, Boston, MA 02115, USA.

出版信息

Sci Transl Med. 2023 Aug 9;15(708):eadg6241. doi: 10.1126/scitranslmed.adg6241.

Abstract

Oncomodulin (Ocm) is a myeloid cell-derived growth factor that enables axon regeneration in mice and rats after optic nerve injury or peripheral nerve injury, yet the mechanisms underlying its activity are unknown. Using proximity biotinylation, coimmunoprecipitation, surface plasmon resonance, and ectopic expression, we have identified armadillo-repeat protein C10 (ArmC10) as a high-affinity receptor for Ocm. ArmC10 deletion suppressed inflammation-induced axon regeneration in the injured optic nerves of mice. ArmC10 deletion also suppressed the ability of lesioned sensory neurons to regenerate peripheral axons rapidly after a second injury and to regenerate their central axons after spinal cord injury in mice (the conditioning lesion effect). Conversely, Ocm acted through ArmC10 to accelerate optic nerve and peripheral nerve regeneration and to enable spinal cord axon regeneration in these mouse nerve injury models. We showed that ArmC10 is highly expressed in human-induced pluripotent stem cell-derived sensory neurons and that exposure to Ocm altered gene expression and enhanced neurite outgrowth. ArmC10 was also expressed in human monocytes, and Ocm increased the expression of immune modulatory genes in these cells. These findings suggest that Ocm acting through its receptor ArmC10 may be a useful therapeutic target for nerve repair and immune modulation.

摘要

Oncomodulin (Ocm) 是一种髓系细胞衍生的生长因子,可促进视神经损伤或周围神经损伤后的轴突再生,但目前尚不清楚其作用机制。通过邻近生物素化、共免疫沉淀、表面等离子体共振和异位表达,我们已鉴定出角蛋白重复蛋白 C10 (ArmC10) 是 Ocm 的高亲和力受体。ArmC10 缺失抑制了损伤的视神经中的炎症诱导的轴突再生。ArmC10 缺失还抑制了损伤的感觉神经元在第二次损伤后快速再生周围轴突的能力,以及在小鼠脊髓损伤后再生其中枢轴突的能力(条件性损伤效应)。相反,Ocm 通过 ArmC10 作用来加速视神经和周围神经的再生,并使这些小鼠神经损伤模型中的脊髓轴突再生。我们表明,ArmC10 在人诱导多能干细胞衍生的感觉神经元中高度表达,并且暴露于 Ocm 会改变基因表达并增强神经突生长。ArmC10 也在人单核细胞中表达,Ocm 增加了这些细胞中免疫调节基因的表达。这些发现表明,Ocm 通过其受体 ArmC10 作用可能是神经修复和免疫调节的有用治疗靶点。

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