Pages that link to "Q24564570"
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The following pages link to Targeted mutation in the neurotrophin-3 gene results in loss of muscle sensory neurons (Q24564570):
Displaying 50 items.
- Loss of brain-derived neurotrophic factor-dependent neural crest-derived sensory neurons in neurotrophin-4 mutant mice (Q22253215) (← links)
- Sortilin associates with Trk receptors to enhance anterograde transport and neurotrophin signaling (Q24307989) (← links)
- Sensory ataxia and muscle spindle agenesis in mice lacking the transcription factor Egr3 (Q24311639) (← links)
- A chemoattractant role for NT-3 in proprioceptive axon guidance (Q24796305) (← links)
- Neurotrophic Factors and Their Potential Applications in Tissue Regeneration. (Q26776474) (← links)
- Promoting myelin repair and return of function in multiple sclerosis (Q26862803) (← links)
- Molecular control of the neural crest and peripheral nervous system development (Q28082003) (← links)
- Association of NTRK3 and its interaction with NGF suggest an altered cross-regulation of the neurotrophin signaling pathway in eating disorders (Q28265175) (← links)
- Identification of an essential nonneuronal function of neurotrophin 3 in mammalian cardiac development (Q28292260) (← links)
- Endogenous brain-derived neurotrophic factor and neurotrophin-3 antagonistically regulate survival of axotomized corticospinal neurons in vivo (Q28364069) (← links)
- A local action of neurotrophin-3 prevents the death of proliferating sensory neuron precursor cells (Q28508014) (← links)
- Peripheral NT3 signaling is required for ETS protein expression and central patterning of proprioceptive sensory afferents (Q28508902) (← links)
- Glial precursors clear sensory neuron corpses during development via Jedi-1, an engulfment receptor (Q28512922) (← links)
- Muscle spindle-derived neurotrophin 3 regulates synaptic connectivity between muscle sensory and motor neurons (Q28513632) (← links)
- Evidence for the involvement of neurotrophins in muscle transdifferentiation and acetylcholine receptor transformation in the esophagus of Myf5(-/-):MyoD(-/-) and NT-3(-/-) embryos (Q28585157) (← links)
- Cdc25b phosphatase is required for resumption of meiosis during oocyte maturation (Q28587532) (← links)
- The Mos/mitogen-activated protein kinase (MAPK) pathway regulates the size and degradation of the first polar body in maturing mouse oocytes (Q28590245) (← links)
- Pacinian corpuscle development involves multiple Trk signaling pathways (Q28593891) (← links)
- LIG family receptor tyrosine kinase-associated proteins modulate growth factor signals during neural development (Q28594886) (← links)
- The molecular basis of making spiral ganglion neurons and connecting them to hair cells of the organ of Corti (Q28742834) (← links)
- Cationic lipid-mediated delivery of proteins enables efficient protein-based genome editing in vitro and in vivo (Q30614255) (← links)
- Trophic dependencies of rodent corticospinal neurons (Q32113727) (← links)
- Peripheral nerve regeneration and neurotrophic factors (Q33607698) (← links)
- Null mutations of NT-3 and Bax affect trigeminal ganglion cell number but not brainstem barrelette pattern formation (Q33660228) (← links)
- Development of specific connectivity between premotor neurons and motoneurons in the brain stem and spinal cord (Q33881274) (← links)
- Ras-guanine nucleotide exchange factor sos2 is dispensable for mouse growth and development (Q33965185) (← links)
- Construction of a eukaryotic expression plasmid for human retina-derived neurotrophin-3. (Q34094461) (← links)
- Neurotrophic factors and gene therapy in spinal cord injury (Q34279632) (← links)
- Scaling proprioceptor gene transcription by retrograde NT3 signaling (Q34429372) (← links)
- Regulation of neurogenesis by neurotrophins in developing spinal sensory ganglia (Q34657616) (← links)
- The TrkC receptor induces apoptosis when the dependence receptor notion meets the neurotrophin paradigm. (Q34661111) (← links)
- Targeting oligodendrocyte protection and remyelination in multiple sclerosis (Q34782075) (← links)
- Neurotrophins modulate the expression of chemokine receptors in the brain (Q34802758) (← links)
- Neuronal NT-3 is not required for synaptic transmission or long-term potentiation in area CA1 of the adult rat hippocampus. (Q35039365) (← links)
- Diabetic neuropathy and nerve regeneration (Q35131671) (← links)
- Egr3-dependent muscle spindle stretch receptor intrafusal muscle fiber differentiation and fusimotor innervation homeostasis (Q35307613) (← links)
- Neurotrophin-3 in the development of the enteric nervous system (Q35618349) (← links)
- Sensory axon regeneration: rebuilding functional connections in the spinal cord (Q35803072) (← links)
- Specification of neural crest into sensory neuron and melanocyte lineages (Q35957140) (← links)
- Polylactic-co-glycolic acid microspheres containing three neurotrophic factors promote sciatic nerve repair after injury (Q36222830) (← links)
- Transcriptional regulation of myotube fate specification and intrafusal muscle fiber morphogenesis (Q36321590) (← links)
- Differential Trk expression in explant and dissociated trigeminal ganglion cell cultures (Q36588280) (← links)
- Targeted deletion of all isoforms of the trkC gene suggests the use of alternate receptors by its ligand neurotrophin-3 in neuronal development and implicates trkC in normal cardiogenesis (Q36831757) (← links)
- Two restricted sites on the surface of the nerve growth factor molecule independently determine specific TrkA receptor binding and activation (Q36851760) (← links)
- The skin as a neurotrophic organ (Q36888598) (← links)
- Specificity of neurotrophin-3 determined by loss-of-function mutagenesis (Q36890277) (← links)
- Prenatal exposure to elevated NT3 disrupts synaptic selectivity in the spinal cord (Q36925704) (← links)
- Visualizing mechanosensory endings of TrkC-expressing neurons in HS3ST-2-hPLAP mice (Q36959357) (← links)
- Neurotrophin-3 is a survival factor in vivo for early mouse trigeminal neurons (Q37208132) (← links)
- Runx transcription factors in neuronal development (Q37252537) (← links)