Related to receptor tyrosine kinase

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Identifiers
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External IDsGeneCards: [1]
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SpeciesHumanMouse
Entrez
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The related to receptor tyrosine kinase (RYK) gene encodes the protein Ryk. The protein encoded by this gene is an atypical member of the family of growth factor receptor protein tyrosine kinases, differing from other members at a number of conserved residues in the activation and nucleotide binding domains. This gene product belongs to a subfamily whose members do not appear to be regulated by phosphorylation in the activation segment. It has been suggested that mediation of biological activity by recruitment of a signaling-competent auxiliary protein may occur through an as yet uncharacterized mechanism. Two alternative splice variants have been identified, encoding distinct isoforms.[1]

History[edit | edit source]

The gene encoding mouse RYK was first identified in 1992.[2] Subsequently, cDNA encoding the RYK protein have been isolated from the following species.[3]

Structure[edit | edit source]

In common with other receptor tyrosine kinase family members, RYK is composed of three domains, an N-terminal, extracellular ligand-binding domain, a transmembrane spanning domain and a C-terminal intracellular domain. However, in contrast to other receptor tyrosine kinases the C-terminal domain of RYK is devoid of detectable kinase activity.[3]

Function[edit | edit source]

RYK is involved in regulation of axon growth during development of the nervous system.[4]

References[edit | edit source]

  1. "Entrez Gene: RYK RYK receptor-like tyrosine kinase".
  2. Hovens, CM, Stacker, SA (1992). "RYK, a receptor tyrosine kinase-related molecule with unusual kinase domain motifs". Proc. Natl. Acad. Sci. USA. 89 (24): 11818–11822. doi:10.1073/pnas.89.24.11818. PMC 50648. PMID 1334548.
  3. 3.0 3.1 Halford, MM; Stacker, S.A. (2001). "Revelations of the RYK receptor". BioEssays. 23 (1): 34–45. doi:10.1002/1521-1878(200101)23:1<34::AID-BIES1005>3.0.CO;2-D. PMID 11135307.
  4. Edmund R Hollis, Nao Ishiko, Ting Yu, Chin-Chun Lu, Ariela Haimovich, Kristine Tolentino, Alisha Richman, Anna Tury, Shih-Hsiu Wang, Maysam Pessian, Euna Jo, Alex Kolodkin, Yimin Zou. Ryk controls remapping of motor cortex during functional recovery after spinal cord injury. Nature Neuroscience 2016; doi: 10.1038/nn.4282

Further reading[edit | edit source]


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