Activation of axonal growth program is a critical step in successful optic nerve regeneration following injury. Yet the molecular mechanisms that orchestrate this developmental transition are not fully understood. Here we identified a novel regulator, insulin-like growth factor binding protein-like 1 (IGFBPL1), for the growth of retinal ganglion cell (RGC) axons. Expression of IGFBPL1 correlates with RGC axon growth in development, and acute knockdown of IGFBPL1 with shRNA or IGFBPL1 knockout in vivo impaired RGC axon growth. In contrast, administration of IGFBPL1 promoted axon growth. Moreover, IGFBPL1 bound to insulin-like growth factor 1 (IGF-1) and subsequently induced calcium signaling and mammalian target of rapamycin (mTOR) phosphory...
Axonal regeneration is an essential condition to re-establish functional neuronal connections in the...
Diabetic neuropathy (DNP), afflicting sensory and motor nerve fibers, is a major complication in dia...
AbstractNeurons that connect mechanosensory hair cell receptors to the central nervous system derive...
Activation of axonal growth program is a critical step in successful optic nerve regeneration follow...
Axonal regeneration is an essential condition to re-establish functional neuronal connections in the...
Axonal regeneration is an essential condition to re-establish functional neuronal connections in the...
<p>Strategies to improve retinal progenitor cell (RPC) capacity to yield proliferative and multipote...
Abstract Insulin-like growth factor I (IGF-1) is a neurotrophic factor and is the ligand for insulin...
Insulin-like growth factor-I (IGF-I) promotes the proliferation and differentiation of Schwann cells...
Insulin-like growth factor-I (IGF-I) and IGF-II are growth factors which promote cell growth and dif...
Attractive growth cone turning requires Igf2bp1-dependent local translation of β-actin mRNA in respo...
Abstract Development of the retina is regulated by growth factors, such as insulin-li...
Attractive growth cone turning requires Igf2bp1-dependent local translation of β-actin mRNA in respo...
<div><p>Attractive growth cone turning requires Igf2bp1-dependent local translation of β-actin mRNA ...
Insulin-like growth factor I (IGF-I) strongly stimulates the generation of differentiated neurons in...
Axonal regeneration is an essential condition to re-establish functional neuronal connections in the...
Diabetic neuropathy (DNP), afflicting sensory and motor nerve fibers, is a major complication in dia...
AbstractNeurons that connect mechanosensory hair cell receptors to the central nervous system derive...
Activation of axonal growth program is a critical step in successful optic nerve regeneration follow...
Axonal regeneration is an essential condition to re-establish functional neuronal connections in the...
Axonal regeneration is an essential condition to re-establish functional neuronal connections in the...
<p>Strategies to improve retinal progenitor cell (RPC) capacity to yield proliferative and multipote...
Abstract Insulin-like growth factor I (IGF-1) is a neurotrophic factor and is the ligand for insulin...
Insulin-like growth factor-I (IGF-I) promotes the proliferation and differentiation of Schwann cells...
Insulin-like growth factor-I (IGF-I) and IGF-II are growth factors which promote cell growth and dif...
Attractive growth cone turning requires Igf2bp1-dependent local translation of β-actin mRNA in respo...
Abstract Development of the retina is regulated by growth factors, such as insulin-li...
Attractive growth cone turning requires Igf2bp1-dependent local translation of β-actin mRNA in respo...
<div><p>Attractive growth cone turning requires Igf2bp1-dependent local translation of β-actin mRNA ...
Insulin-like growth factor I (IGF-I) strongly stimulates the generation of differentiated neurons in...
Axonal regeneration is an essential condition to re-establish functional neuronal connections in the...
Diabetic neuropathy (DNP), afflicting sensory and motor nerve fibers, is a major complication in dia...
AbstractNeurons that connect mechanosensory hair cell receptors to the central nervous system derive...