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Sequences

Sequence NM_006433

GTATCTGTGGTAAACCCAGTGACACGGGGGAGATGACATACAAAAAGGGCAGGACCTGAGAAAGATTAAGCTGCAGGCTCCCTGCCCATAAAACAGGGTG
TGAAAGGCATC
TCAGCGGCTGCCCCACCATGGCTACCTGGGCCCTCCTGCTCCTTGCAGCCATGCTCCTGGGCAACCCAGGTCTGGTCTTCTCTCGTCTG
AGC
CCTGAGTACTACGACCTGGCAAGAGCCCACCTGCGTGATGAGGAGAAATCCTGCCCGTGCCTGGCCCAGGAGGGCCCCCAGGGTGACCTGTTGACCA
AAACACAGGAGCTGGGCCGTGACTACAGGACCTGTCTGACGATAGTCCAAAAACTGAAGAAGATGGTGGATAAGCCCACCCAGAGAAGTGTTTCCAATGC
TGCGACCCGGGTGTGTAGGACGGGGAGGTCACGATGGCGCGACGTCTGCAGAAATTTCATGAGGAGGTATCAGTCTAGAGTTACCCAGGGCCTCGTGGCC
GGAGAAACTGCCCAGCAGATCTGTGAGGACCTCAGGTTGTGTATACCTTCTACAGGTCCCCTCTGAGCCCTCTCACCTTGTCCTGTGGAAGAAGCACAGG
CTCCTGTCCTCAGATCCCGGGAACCTCAGCAACCTCTGCCGGCTCCTCGCTTCCTCGATCCAGAATCCACTCTCCAGTCTCCCTCCCCTGACTCCCTCTG
CTGTCCTCCCCTCTCACGAGAATAAAGTGTCAAGCAAGATTTTAGCCGC
  • refseq_GNLY.F1 (forward primer)
  • refseq_GNLY.R1 (reverse primer)
  • Single exon skipping

Frame 0

VSVVNPVTRGR*HTKRAGPEKD*AAGSLPIKQG
VKGI
SAAAPPWLPGPSCSLQPCSWATQVWSSLV*
A
LSTTTWQEPTCVMRRNPARAWPRRAPRVTC*P
KHRSWAVTTGPV*R*SKN*RRWWISPPREVFPM
LRPGCVGRGGHDGATSAEIS*GGISLELPRASWP
EKLPSRSVRTSGCVYLLQVPSEPSHLVLWKKHR
LLSSDPGNLSNLCRLLASSIQNPLSSLPPLTPS
AVLPSHENKVSSKILA

Frame 1

YLW*TQ*HGGDDIQKGQDLRKIKLQAPCP*NRV
*KAS
QRLPHHGYLGPPAPCSHAPGQPRSGLLSS
E
P*VLRPGKSPPA**GEILPVPGPGGPPG*PVDQ
NTGAGP*LQDLSDDSPKTEEDGG*AHPEKCFQC
CDPGV*DGEVTMARRLQKFHEEVSV*SYPGPRG
RRNCPADL*GPQVVYTFYRSPLSPLTLSCGRSTG
SCPQIPGTSATSAGSSLPRSRIHSPVSLP*LPL
LSSPLTRIKCQARF*P

Frame 2

ICGKPSDTGEMTYKKGRT*ERLSCRLPAHKTGC
ERH
LSGCPTMATWALLLLAAMLLGNPGLVFSRL
S
PEYYDLARAHLRDEEKSCPCLAQEGPQGDLLT
KTQELGRDYRTCLTIVQKLKKMVDKPTQRSVSNA
ATRVCRTGRSRWRDVCRNFMRRYQSRVTQGLVA
GETAQQICEDLRLCIPSTGPL*ALSPCPVEEAQ
APVLRSREPQQPLPAPRFLDPESTLQSPSPDSLC
CPPLSRE*SVKQDFSR

Sequence NM_012483

GTATCTGTGGTAAACCCAGTGACACGGGGGAGATGACATACAAAAAGGGCAGGACCTGAGAAAGATTAAGCTGCAGGCTCCCTGCCCATAAAACAGGGTG
TGAAAGGCATC
TCAGCGGCTGCCCCACCATGGCTACCTGGGCCCTCCTGCTCCTTGCAGCCATGCTCCTGGGCAACCCAGCCCCTGCCTCCGCATCTGCG
TGGTGAAGGCCATTGGCCCTCATCGGTGGATCTGCGTTTCCTCGGGCCTACACTGTCTAGGATTGTGCGGGGCTGGTGAGAGAACAAGATCTCTTCTGTG
TTCAAGGCAGACTTCCTGCCCCCTGCACCCTGCTCTCTCCCAGGCCTTGAGGTCAGTGTGAGCCCCAAGGGCAAGAACACTTCTGGAAGGGAGAGTGGAT
TTGGCTGGGCCATCTGGATGGAAG
GTCTGGTCTTCTCTCGTCTGAGCCCTGAGTACTACGACCTGGCAAGAGCCCACCTGCGTGATGAGGAGAAATCCTG
CCCGTGCCTGGCCCAGGAGGGCCCCCAGGGTGACCTGTTGACCAAAACACAGGAGCTGGGCCGTGACTACAGGACCTGTCTGACGATAGTCCAAAAACTG
AAGAAGATGGTGGATAAGCCCACCCAGAGAAGTGTTTCCAATGCTGCGACCCGGGTGTGTAGGACGGGGAGGTCACGATGGCGCGACGTCTGCAGAAATT
TCATGAGGAGGTATCAGTCTAGAGTTACCCAGGGCCTCGTGGCCGGAGAAACTGCCCAGCAGATCTGTGAGGACCTCAGGTTGTGTATACCTTCTACAGG
TCCCCTCTGAGCCCTCTCACCTTGTCCTGTGGAAGAAGCACAGGCTCCTGTCCTCAGATCCCGGGAACCTCAGCAACCTCTGCCGGCTCCTCGCTTCCTC
GATCCAGAATCCACTCTCCAGTCTCCCTCCCCTGACTCCCTCTGCTGTCCTCCCCTCTCACGAGAATAAAGTGTCAAGCAAGATTTTAGCCGC
  • refseq_GNLY.F1 (forward primer)
  • refseq_GNLY.R1 (reverse primer)
  • Single exon skipping

Frame 0

VSVVNPVTRGR*HTKRAGPEKD*AAGSLPIKQG
VKGI
SAAAPPWLPGPSCSLQPCSWATQPLPPHLR
GEGHWPSSVDLRFLGPTLSRIVRGW*ENKISSV
FKADFLPPAPCSLPGLEVSVSPKGKNTSGRESG
FGWAIWME
GLVFSRLSPEYYDLARAHLRDEEKSC
PCLAQEGPQGDLLTKTQELGRDYRTCLTIVQKL
KKMVDKPTQRSVSNAATRVCRTGRSRWRDVCRN
FMRRYQSRVTQGLVAGETAQQICEDLRLCIPSTG
PL*ALSPCPVEEAQAPVLRSREPQQPLPAPRFL
DPESTLQSPSPDSLCCPPLSRE*SVKQDFSR

Frame 1

YLW*TQ*HGGDDIQKGQDLRKIKLQAPCP*NRV
*KAS
QRLPHHGYLGPPAPCSHAPGQPSPCLRIC
VVKAIGPHRWICVSSGLHCLGLCGAGERTRSLLC
SRQTSCPLHPALSQALRSV*APRARTLLEGRVD
LAGPSGWK
VWSSLV*ALSTTTWQEPTCVMRRNP
ARAWPRRAPRVTC*PKHRSWAVTTGPV*R*SKN*
RRWWISPPREVFPMLRPGCVGRGGHDGATSAEI
S*GGISLELPRASWPEKLPSRSVRTSGCVYLLQ
VPSEPSHLVLWKKHRLLSSDPGNLSNLCRLLASS
IQNPLSSLPPLTPSAVLPSHENKVSSKILA

Frame 2

ICGKPSDTGEMTYKKGRT*ERLSCRLPAHKTGC
ERH
LSGCPTMATWALLLLAAMLLGNPAPASASA
W*RPLALIGGSAFPRAYTV*DCAGLVREQDLFC
VQGRLPAPCTLLSPRP*GQCEPQGQEHFWKGEWI
WLGHLDGR
SGLLSSEP*VLRPGKSPPA**GEIL
PVPGPGGPPG*PVDQNTGAGP*LQDLSDDSPKT
EEDGG*AHPEKCFQCCDPGV*DGEVTMARRLQKF
HEEVSV*SYPGPRGRRNCPADL*GPQVVYTFYR
SPLSPLTLSCGRSTGSCPQIPGTSATSAGSSLP
RSRIHSPVSLP*LPLLSSPLTRIKCQARF*P

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