Axonal target-derived BMP and neurotrophin signaling are both known to regulate neuronal gene expression, differentiation, and axon growth. In this issue of Neuron, Ji and Jaffrey (2012) discovered that BMP-signaling endosomes depend on BDNF-induced axonal synthesis of SMADs to retrogradely regulate transcription in developing trigeminal neurons, providing a mechanism of integrating the two target-derived signals
Work by Agus and colleagues in this issue of Neuron defines a human mechanism for the rapid learning...
Over the past few decades, brain-derived neurotrophic factor (BDNF)— a member of a small family of s...
Determining which neurite of a differentiating neuron is to become the axon is a crucial step in neu...
SummaryIn many cases, neurons acquire distinct identities as their axons navigate toward target cell...
SummarySomatosensory information from the face is transmitted to the brain by trigeminal sensory neu...
Sensory axon development requires concerted actions of growth factors for the precise control of axo...
SummarySensory axon development requires concerted actions of growth factors for the precise control...
Brain-derived neurotrophic factor (BDNF) is encoded by multiple mRNA variants whose differential sub...
AbstractRetrograde signals influence neuronal survival, differentiation, synaptogenesis, and plastic...
Bone morphogenetic proteins (BMPs) make up a family of morphogens that are critical for patterning, ...
Little is known about extrinsic signals required for the advancement of motor neuron (MN) axons, whi...
AbstractBone Morphogenetic Proteins (BMPs) have multiple activities in the developing spinal cord: t...
Somatosensory information from the face is transmitted to the brain by trigeminal sensory neurons. I...
This dissertation, by Zheng Zeng, explores a role for neuronal activity in modulating brain-derived ...
AbstractWe show that the BMP ortholog Gbb can signal by a retrograde mechanism to regulate synapse g...
Work by Agus and colleagues in this issue of Neuron defines a human mechanism for the rapid learning...
Over the past few decades, brain-derived neurotrophic factor (BDNF)— a member of a small family of s...
Determining which neurite of a differentiating neuron is to become the axon is a crucial step in neu...
SummaryIn many cases, neurons acquire distinct identities as their axons navigate toward target cell...
SummarySomatosensory information from the face is transmitted to the brain by trigeminal sensory neu...
Sensory axon development requires concerted actions of growth factors for the precise control of axo...
SummarySensory axon development requires concerted actions of growth factors for the precise control...
Brain-derived neurotrophic factor (BDNF) is encoded by multiple mRNA variants whose differential sub...
AbstractRetrograde signals influence neuronal survival, differentiation, synaptogenesis, and plastic...
Bone morphogenetic proteins (BMPs) make up a family of morphogens that are critical for patterning, ...
Little is known about extrinsic signals required for the advancement of motor neuron (MN) axons, whi...
AbstractBone Morphogenetic Proteins (BMPs) have multiple activities in the developing spinal cord: t...
Somatosensory information from the face is transmitted to the brain by trigeminal sensory neurons. I...
This dissertation, by Zheng Zeng, explores a role for neuronal activity in modulating brain-derived ...
AbstractWe show that the BMP ortholog Gbb can signal by a retrograde mechanism to regulate synapse g...
Work by Agus and colleagues in this issue of Neuron defines a human mechanism for the rapid learning...
Over the past few decades, brain-derived neurotrophic factor (BDNF)— a member of a small family of s...
Determining which neurite of a differentiating neuron is to become the axon is a crucial step in neu...