Little is known about the molecular and cellular mechanisms involved in the formation of the cranial peripheral sensory system in vertebrates. To identify genes involved in the formation of these circuits, we performed a forward genetic screen utilizing a transgenic zebrafish line (p2rx3.2:gfpsl1) that expresses green fluorescent protein (gfp) in sensory neurons of the Vth, VIIth, IXth and Xth cranial ganglia. Here, we describe a novel zebrafish mutant in which a missense mutation in the adam19b gene selectively affects the epibranchial sensory circuits.</p
The myelin sheath insulates axons in the vertebrate nervous system, allowing rapid propagation of ac...
Amyloid-beta precursor protein (APP) is an evolutionarily conserved transmembrane protein expressed ...
The peripheral nervous system (PNS) is an intricately patterned network of axons and glial cells tha...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
The formation of functional neuronal circuits relies on accurate migration and proper axonal outgrow...
Proper function of the nervous system requires the precise wiring of neuronal circuitry, which is es...
Proper function of the nervous system requires the precise wiring of neuronal circuitry, which is es...
Brain development requires a coordinated genetic code to regulate initial cell identity determinatio...
The myelin sheath insulates axons in the vertebrate nervous system, allowing rapid propagation of ac...
Amyloid-beta precursor protein (APP) is an evolutionarily conserved transmembrane protein expressed ...
The peripheral nervous system (PNS) is an intricately patterned network of axons and glial cells tha...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
Little is known about the molecular and cellular mechanisms involved in the formation of the cranial...
The formation of functional neuronal circuits relies on accurate migration and proper axonal outgrow...
Proper function of the nervous system requires the precise wiring of neuronal circuitry, which is es...
Proper function of the nervous system requires the precise wiring of neuronal circuitry, which is es...
Brain development requires a coordinated genetic code to regulate initial cell identity determinatio...
The myelin sheath insulates axons in the vertebrate nervous system, allowing rapid propagation of ac...
Amyloid-beta precursor protein (APP) is an evolutionarily conserved transmembrane protein expressed ...
The peripheral nervous system (PNS) is an intricately patterned network of axons and glial cells tha...