Muscle-specific kinase (MuSK) is part of the receptor complex that is involved in the agrin-induced formation of the neuromuscular junction. In the rodent, prominent mRNA expression of MuSK is restricted to skeletal muscle while the expression of agrin can also be detected in brain and certain nonneuronal tissues. The recent identification of Xenopus MuSK reveals that MuSK can be detected in tissues other than skeletal muscle, such as the neural tube, eye vesicles, and spleen. In this study, we describe the cloning and characterization of the chicken ortholog of MuSK and demonstrate that the regulation of MuSK expression in muscle is conserved from avian to rodent. Abundant mRNA expression of MuSK can be detected in early embryonic chick mu...
Muscle Specific Kinase (MuSK) is a transmembrane tyrosine kinase vital for forming and maintaining t...
The muscle-specific-kinase MuSK is required for the formation of acetylcholine receptor clusters dur...
AbstractFormation of the neuromuscular junction depends upon reciprocal inductive interactions betwe...
Muscle-specific kinase (MuSK) is part of the receptor complex that is involved in the agrin-induced ...
Muscle Specific Kinase (MuSK) has been identified to be specific to the lineage of mammalian skeleta...
Muscle Specific Kinase (MuSK) is a receptor tyrosine kinase expressed restrictively in the lineage o...
Audrey J. Caudron1, Agnieszka M. Lichanska2, Helen M. Cooper3 and Peter G. Noakes1. 1School of Biome...
MuSK is a receptor tyrosine kinase that initiates the formation of neuromuscular junctions in respon...
Muscle-specific receptor tyrosine kinase (MuSK) is required for the formation of the neuromuscular j...
Muscle-specific tyrosine kinase (MuSK) is involved in the formation and maintenance of the neuromusc...
AbstractFormation of neuromuscular synapses requires a series of inductive interactions between grow...
AbstractWhile a number of growth factors have been described that are highly specific for particular...
AbstractThe receptor tyrosine kinase, MuSK, is required for the formation of the neuromuscular junct...
During vertebrate neuromuscular junction (NMJ) development, nerve-secreted agrin induces acetylcholi...
Muscle Specific Kinase (MuSK) is a transmembrane tyrosine kinase vital for forming and maintaining t...
Muscle Specific Kinase (MuSK) is a transmembrane tyrosine kinase vital for forming and maintaining t...
The muscle-specific-kinase MuSK is required for the formation of acetylcholine receptor clusters dur...
AbstractFormation of the neuromuscular junction depends upon reciprocal inductive interactions betwe...
Muscle-specific kinase (MuSK) is part of the receptor complex that is involved in the agrin-induced ...
Muscle Specific Kinase (MuSK) has been identified to be specific to the lineage of mammalian skeleta...
Muscle Specific Kinase (MuSK) is a receptor tyrosine kinase expressed restrictively in the lineage o...
Audrey J. Caudron1, Agnieszka M. Lichanska2, Helen M. Cooper3 and Peter G. Noakes1. 1School of Biome...
MuSK is a receptor tyrosine kinase that initiates the formation of neuromuscular junctions in respon...
Muscle-specific receptor tyrosine kinase (MuSK) is required for the formation of the neuromuscular j...
Muscle-specific tyrosine kinase (MuSK) is involved in the formation and maintenance of the neuromusc...
AbstractFormation of neuromuscular synapses requires a series of inductive interactions between grow...
AbstractWhile a number of growth factors have been described that are highly specific for particular...
AbstractThe receptor tyrosine kinase, MuSK, is required for the formation of the neuromuscular junct...
During vertebrate neuromuscular junction (NMJ) development, nerve-secreted agrin induces acetylcholi...
Muscle Specific Kinase (MuSK) is a transmembrane tyrosine kinase vital for forming and maintaining t...
Muscle Specific Kinase (MuSK) is a transmembrane tyrosine kinase vital for forming and maintaining t...
The muscle-specific-kinase MuSK is required for the formation of acetylcholine receptor clusters dur...
AbstractFormation of the neuromuscular junction depends upon reciprocal inductive interactions betwe...