RYK (NM_002958) Human Untagged Clone

CAT#: SC310220

RYK (untagged)-Human RYK receptor-like tyrosine kinase (RYK), transcript variant 2


  "NM_002958" in other vectors (7)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol RYK
Synonyms D3S3195; JTK5; JTK5A; RYK1
Vector pCMV6-XL5
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_002958 edited
GCGCGTCCCGCGGGCAGCCCCCAACTCCGGACGATGCAGCGAGGAGGCGGCGGCGGCGGC
GCGCTCCGGAGGTCTGAAGCCACTGCTGGCTGCCACGGGCCGGCGGTGCGATGAGCTGGG
CAGCCGCCCCCGGCTCGGGGCTGTGAGCGGCTCGGGGCCGGGGGTGGGCGGCGGTGCGGC
GGGCGGCCGACGCTCCTCTTCGGCGGCGGCGGCGGCGGCCATGCGTGGGGCGGCGCGGCT
GGGGCGGCCGGGCCGGAGTTGCCTCCCGGGGGCCCGCGGCCTGAGGGCCCCGCCGCCGCC
GCCGCTGCTGCTTCTGCTTGCGCTGTTGCCGCTGCTGCCCGCGCCTGGCGCTGCCGCCGC
CCCCGCCCCGCGGCCCCCGGAGCTGCAGTCGGCTTCCGCGGGGCCCAGCGTGAGTCTCTA
CCTGAGCGAGGACGAGGTGCGCCGGCTGATCGGTCTTGATGCAGAACTTTATTATGTGAG
AAATGACCTTATTAGTCACTACGCTCTATCCTTTAGTCTGTTAGTACCCAGTGAGACAAA
TTTCCTGCACTTCACCTGGCATGCGAAGTCCAAGGTTGAATATAAGCTGGGATTCCAAGT
GGACAATGTTTTGGCAATGGATATGCCCCAGGTCAACATTTCTGTTCAGGGGGAAGTTCC
ACGCACTTTATCAGTGTTTCGGGTAGAGCTTTCCTGTACTGGCAAAGTAGATTCTGAAGT
TATGATACTAATGCAGCTCAACTTGACAGTAAATTCTTCAAAAAATTTTACCGTCTTAAA
TTTTAAACGAAGGAAAATGTGCTACAAAAAACTTGAAGAAGTAAAAACTTCAGCCTTGGA
CAAAAACACTAGCAGAACTATTTATGATCCTGTACATGCAGCTCCAACCACTTCTACGCG
TGTGTTTTATATTAGTGTAGGGGTTTGTTGTGCAGTAATATTTCTCGTAGCAATAATATT
AGCTGTTTTGCACCTTCATAGTATGAAAAGGATTGAACTGGATGACAGCATTAGTGCCAG
CAGTAGTTCCCAAGGGCTGTCTCAGCCATCCACCCAGACGACTCAGTATCTGAGAGCAGA
CACGCCCAACAATGCAACTCCTATCACCAGTTATCCTACCTTGCGGATAGAGAAGAACGA
CTTGAGAAGTGTCACTCTTTTGGAGGCCAAAGGCAAGGTGAAGGATATAGCAATATCCAG
AGAGAGGATAACTCTAAAAGATGTACTCCAAGAAGGTACTTTTGGGCGTATTTTCCATGG
GATTTTAATAGATGAAAAAGATCCAAATAAAGAAAAACAAGCATTTGTCAAAACAGTTAA
AGATCAAGCTTCTGAAATTCAGGTGACAATGATGCTCACTGAAAGTTGTAAGCTGCGAGG
TCTTCATCACAGAAATCTTCTTCCTATTACTCATGTGTGTATAGAAGAAGGAGAAAAGCC
CATGGTGATATTGCCTTACATGAATTGGGGGAATCTTAAATTGTTTTTACGACAGTGCAA
GTTAGTAGAGGCCAATAATCCACAGGCAATTTCTCAGCAAGACCTGGTACACATGGCTAT
TCAGATTGCCTGTGGAATGAGCTACCTGGCCAGAAGGGAAGTCATCCACAAAGACCTGGC
TGCCAGGAACTGTGTCATTGATGACACACTTCAAGTTAAGATCACAGACAATGCCCTCTC
CAGAGACTTGTTCCCCATGGACTATCACTGTCTGGGGGACAATGAAAACAGGCCAGTTCG
TTGGATGGCTCTTGAAAGTCTGGTTAATAACGAGTTCTCTAGCGCTAGTGATGTGTGGGC
CTTTGGAGTGACGCTGTGGGAACTCATGACTCTGGGCCAGACTCCCTACGTGGACATTGA
CCCCTTCGAGATGGCCGCATACCTGAAAGATGGTTACCGAATAGCCCAGCCAATCAACTG
TCCTGATGAATTATTTGCTGTGATGGCCTGTTGCTGGGCCTTAGATCCAGAGGAGAGGCC
CAAGTTTCAGCAGCTGGTACAGTGCCTAACAGAGTTTCATGCAGCCCTGGGGGCCTACGT
CTGACTCCTCTCCAATCCCACACCATCAGGAAGAAGGTGCCTGTCGGGGCTCACTTGAAG
CCTGTCAGGGATGCTTTGTATCTAACACAACGCCAACAGAAGCACATTTGTCTTCCAGAA
CACCGTGCCTTAGAAATGCTTTAGAATCTGAACTTTTTAAGACAGACTTAATAATGTGGC
ATATTTTCTAGATATCACTTTTATTAGGTTGAACTGAAAGGGTTTTTGTAAATTTTTTGG
CCAAAATTTTTTAAAACATACTTACTTTGGACTAGGGGTACATTCTTACAAAATAAATAA
ACAGTTTTTAAAATTGTTTAGACACAGATATTTGGAATTAGCTATCTTAGTGCCAACTGC
TTTTTATTTTTTTACTTCATCAAGGTGATGTAAGTGACTCACCTTTAAAGTTTTTTTAGT
GTTATTTTTTATCACTACTCTGGGAAATGGTTTGTCTTCAAGATGCAATACTTTTCTTAG
TAAAGGAAAAACAGCATAAAAAGATACCTGGTCTGCCTTGTACAAGAAAAGGCAATATTA
GAGGAAGAAAATTTAAAGAAAAGCTAGAGGAAAAAAAAATTTTTTTAAAAATACTTATTA
GAAGCAAACTGCCCTTGCATGGAAAACTGTTTATTTTTTTCAGTGAAAAGGAATTCTGCT
TTCGTGTTTTTGGGAAAGCAGGAACTGAGTTCATTACATCTTTAATTTGGCAGAAATTAG
CCTTTCTGTGAACCAGATGTGGTTTGGGGCAGATCTGTAGTAAACAATGGTGATTTTATT
TATTTTTACTCTCTGGAAAAGGAGATAATACAATTCCAGAAAGTGAACTCATATTTCTAA
GGTTAAGATTCCCTTTTATTGCACCTAGAATAGTGCTATGCACAGAGCGGGTGCTTGAGT
TGTTGTCGTTTTTTGTTTGTTTTTTAAATGTAAACTGGTAAATTTTGTGCTTATCTTCAA
GGCTGGCTTAAGTATAAAATTGTTTTTTAAACACTTGAAAAATTAAAGGATTTGTTTTAT
ATTAAAAAAAAAAAAAAAAAA
>OriGene 5' read for NM_002958 unedited
GTTACCATTTNGTATACGACTCACTATAGGCGGCCGCGAATTCGCACGAGGCGCGTCCCG
CGGGCAGCCCCCAACTCCGGACGATGCAGCGAGGAGGCGGCGGCGGCGGCGCGCTCCGGA
GGTCTGAAGCCACTGCTGGCTGCCACGGGCCGGCGGTGCGATGAGCTGGGCAGCCGCCCC
CGGCTCGGGGCTGTGAGCGGCTCGGGGCCGGGGGTGGGCGGCGGTGCGGCGGGCGGCCGA
CGCTCCTCTTCGGCGGCGGCGGCGGCGGCCATGCGTGGGGCGGCGCGGCTGGGGCGGCCG
GGCCGGAGTTGCCTCCCGGGGGCCCGCGGCCTGAGGGCCCCGCCGCCGCCGCCGCTGCTG
CTTCTGCTTGCGCTGTTGCCGCTGCTGCCCGCGCCTGGCGCTGCCGCCGCCCCCGCCCCG
CGGCCCCCGGAGCTGCAGTCGGCTTCCGCGGGGCCCAGCGTGAGTCTCTACCTGAGCGAT
GACGATGTGCGCCGGCTGATCGGTCTTGATGCANAACTTTATTATGTGAGAAATGACCTT
ATTAATCACTATGCTCTATCCTTTATTCTGTTAATACCCAGTGAGACAAATTTCCTGCAC
TTCAACTGGCATGCCAAATCTAAGGTTGAATATAAGCTGCGGATTCCAAGTGGACAATGT
TTTTGGCAATGGATATGCCCCATGTCAACATTTCTTGTTCAGGCCGAATTTTTCCGCACG
TTTTTACGTGTTTCCGGTTAGAGCCTTTTCTTTTCTGTGACAAGTTCATTTTTAAATTTT
TAAGCCTAATGGCCAGTTAACTTTTTCCGTTAGATTTTTTACAAGAATTTTTTTTCCCCC
GTAACAATTTAAAACGAC
Restriction Sites Please inquire     
ACCN NM_002958
ORF Size 1824 bp
Insert Size 3100
OTI Disclaimer Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP).
OTI Annotation The open reading frame of this TrueClone was fully sequenced and found to be a perfect match to the protein associated to this reference.
Reference Data
RefSeq NM_002958.2, NP_002949.2
RefSeq Size 2951
RefSeq ORF 1824
Locus ID 6259
Domains pkinase, TyrKc, S_TKc, WIF
Protein Families Druggable Genome, Protein Kinase, Transmembrane
Gene Summary 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. The encoded protein has a leucine-rich extracellular domain with a WIF-type Wnt binding region, a single transmembrane domain, and an intracellular tyrosine kinase domain. This protein is involved in stimulating Wnt signaling pathways such as the regulation of axon pathfinding. Alternative splicing results in multiple transcript variants encoding distinct isoforms. [provided by RefSeq, Feb 2012]
Transcript Variant: This variant (2) uses an alternate in-frame splice site in the coding region, compared to variant 1, resulting in a shorter protein (isoform 2).

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