Optic nerve regeneration requires the intracellular domain of LIFRα/CD118

Identifying factors that govern retinal ganglion cells' (RGCs) ability to extend axons is an important step in developing therapies to achieve recovery after optic nerve injury. Here we report that the intracellular domain of the leukemia inhibitory factor receptor (LIFR/CD118) is essential for mature RGCs' ability to regenerate injured axons independent of the cognate ligand (LIF) and other therapies. Overexpression of LIFR in adult RGCs induces neurite outgrowth in cultured RGCs and axon regeneration in vivo while strongly amplifying RGCs' response to LIF itself and to unrelated growth factors. Conversely, downregulation of LIFR strongly suppresses the pro-regenerative effects of Pten deletion and other potent stimuli. LIFR modulation alters the constitutive activity of the MAP kinase pathway, in contrast to LIF itself, which primarily activates pSTAT3. The extracellular-domain-truncated LIFR construct retains substantial pro-regenerative activity, whereas mutation of intracellular signaling motifs reduces the full regenerative effect of LIFR. Together, these findings identify LIFR as a key cell-autonomous regulator of optic nerve regeneration in mature RGCs.

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Publication Details

Journal
JCI Insight
Published
2026-09-01
DOI
https://doi.org/10.1172/jci.insight.202223
Primary Topic
Nerve injury and regeneration
Type
article
Field-Weighted Citation Impact
0.00

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article

Optic nerve regeneration requires the intracellular domain of LIFRα/CD118

蔡秉翰, Yuerong Ren, Lili Xie, 段祥伟 et al.
JCI Insight
Nerve injury and regeneration
article

Optic nerve regeneration requires the intracellular domain of LIFRα/CD118

蔡秉翰, Yuerong Ren, Lili Xie, 段祥伟, Larry I. Benowitz, Jian Li, Peiyun Duan, Changzhong Xu, Ke Tian, Ke Liu, Bing Jiang, Cong Wang, Qian Jiang, Ningli Wang
article en

Abstract

Identifying factors that govern retinal ganglion cells' (RGCs) ability to extend axons is an important step in developing therapies to achieve recovery after optic nerve injury. Here we report that the intracellular domain of the leukemia inhibitory factor receptor (LIFR/CD118) is essential for mature RGCs' ability to regenerate injured axons independent of the cognate ligand (LIF) and other therapies. Overexpression of LIFR in adult RGCs induces neurite outgrowth in cultured RGCs and axon regeneration in vivo while strongly amplifying RGCs' response to LIF itself and to unrelated growth factors. Conversely, downregulation of LIFR strongly suppresses the pro-regenerative effects of Pten deletion and other potent stimuli. LIFR modulation alters the constitutive activity of the MAP kinase pathway, in contrast to LIF itself, which primarily activates pSTAT3. The extracellular-domain-truncated LIFR construct retains substantial pro-regenerative activity, whereas mutation of intracellular signaling motifs reduces the full regenerative effect of LIFR. Together, these findings identify LIFR as a key cell-autonomous regulator of optic nerve regeneration in mature RGCs.

JCI Insight
Boston Children's Hospital (US), Harvard University (US), Central South University (CN), Capital Medical University (CN)
National Natural Science Foundation of China
Good health and well-being
Openalex Percentile: Top 16%
Nerve injury and regeneration
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Optic nerve regeneration requires the intracellular domain of LIFRα/CD118 — 蔡秉翰, Yuerong Ren, et al. · JCI Insight (2026) | TGRS Research Map | TGRS