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Sequences

Sequence NM_145182

GAGGGCGCGATCCTGGCGTCCCCCGACGGCCTGGGGCCCCAATCCAGAGGCCTGGGTGGGAGGGGACCAAGGGTGTAGTAAGGAAGCGCCTTTTGCTGGA
GGGCAACGGACCGGGGCGGGGAGTCGGGAGACCAGAGTGGGAGGAAGGCGGGGAGTCCAGGTTCCGCCCCGGAGCCGACTTCCTCCTGGTCGGCGGCTGC
AGCGGGGTGAGCGGCGGCAGCGGCCGGGGATCCTGGAGCCATGGGGCGCGCGCGCGACGCCATCCTGGATGCGCTGGAGAACCTGACCGCCGAGGAGCTC
AAGAAGTTCAAGCTGAAGCTGCTGTCGGTGCCGCTGCGCGAGGGCTACGGGCGCATCCCGCGGGGCGCGCTGCTGTCCATGGACGCCTTGGACCTCACCG
ACAAGCTGGTCAGCTTCTACCTGGAGACCTACGGCGCCGAGCTCACCGCTAACGTGCTGCGCGACATGGGCCTGCAGGAGATGGCCGGGCAGCTGCAGGC
GGCCACGCACCAGGGCCTGCACTTTATAGACCAGCACCGGGCTGCGCTTATCGCGAGGGTCACAAACGTTGAGTGGCTGCTGGATGCTCTGTACGGGAAG
GTCCTGACGGATGAGCAGTACCAGGCAGTGCGGGCCGAGCCCACCAACCCAAGCAAGATGCGGAAGCTCTTCAGTTTCACACCAGCCTGGAACTGGACCT
GCAAGGACTTGCTCCTCCAGGCCCTAAGGGAGTCCCAGTCCTACCTGGTGGAGGACCTGGAGCGGAGCTGAGGCTCCTTCCCAGCAACACTCCGGTCAGC
CCCTGGCAATCCCACCAAATCATCCTGAATCTGATCTTTTTATACACAATATACGAAAAGCCAGCTTGAA
  • refseq_PYCARD.F1 (forward primer)
  • refseq_PYCARD.R1 (reverse primer)
  • Single exon skipping

Frame 0

EGAILASPDGLGPQSRGLGGRGPRV**GSAFCW
RATDRGGESGDQSGRKAGSPGSAPEPTSSWSAAA
AG*AAAAAGDPGAMGRARDAILDALENLTAEEL
KKFKLKLLSVPLREGYGRIPRGALLSMDALDLT
DKLVSFYLETYGAELTANVLRDMGLQEMAGQLQA
ATHQGLHFIDQHRAALIARVTNVEWLLDALYGK
VLTDEQYQAVRAEPTNPSKMRKLFSFTPAWNWT
CKDLLLQALRESQSYLVEDLERS*GSFPATLRSA
PGNPTKSS*I*SFYTQYTKSQLE

Frame 1

RARSWRPPTAWGPNPEAWVGGDQGCSKEAPFAG
GQRTGAGSRETRVGGRRGVQVPPRSRLPPGRRL
QRGERRQRPGILEPWGARATPSWMRWRT*PPRSS
RSSS*SCCRCRCARATGASRGARCCPWTPWTSP
TSWSASTWRPTAPSSPLTCCATWACRRWPGSCR
RPRTRACTL*TSTGLRLSRGSQTLSGCWMLCTGR
S*RMSSTRQCGPSPPTQARCGSSSVSHQPGTGP
ARTCSSRP*GSPSPTWWRTWSGAEAPSQQHSGQ
PLAIPPNHPESDLFIHNIRKASL

Frame 2

GRDPGVPRRPGAPIQRPGWEGTKGVVRKRLLLE
GNGPGRGVGRPEWEEGGESRFRPGADFLLVGGC
SGVSGGSGRGSWSHGARARRHPGCAGEPDRRGA
QEVQAEAAVGAAARGLRAHPAGRAAVHGRLGPHR
QAGQLLPGDLRRRAHR*RAARHGPAGDGRAAAG
GHAPGPALYRPAPGCAYREGHKR*VAAGCSVRE
GPDG*AVPGSAGRAHQPKQDAEALQFHTSLELDL
QGLAPPGPKGVPVLPGGGPGAELRLLPSNTPVS
PWQSHQIILNLIFLYTIYEKPA*

Sequence NM_013258

GAGGGCGCGATCCTGGCGTCCCCCGACGGCCTGGGGCCCCAATCCAGAGGCCTGGGTGGGAGGGGACCAAGGGTGTAGTAAGGAAGCGCCTTTTGCTGGA
GGGCAACGGACCGGGGCGGGGAGTCGGGAGACCAGAGTGGGAGGAAGGCGGGGAGTCCAGGTTCCGCCCCGGAGCCGACTTCCTCCTGGTCGGCGGCTGC
AGCGGGGTGAGCGGCGGCAGCGGCCGGGGATCCTGGAGCCATGGGGCGCGCGCGCGACGCCATCCTGGATGCGCTGGAGAACCTGACCGCCGAGGAGCTC
AAGAAGTTCAAGCTGAAGCTGCTGTCGGTGCCGCTGCGCGAGGGCTACGGGCGCATCCCGCGGGGCGCGCTGCTGTCCATGGACGCCTTGGACCTCACCG
ACAAGCTGGTCAGCTTCTACCTGGAGACCTACGGCGCCGAGCTCACCGCTAACGTGCTGCGCGACATGGGCCTGCAGGAGATGGCCGGGCAGCTGCAGGC
GGCCACGCACCAGGGCTCTGGAGCCGCGCCAGCTGGGATCCAGGCCCCTCCTCAGTCGGCAGCCAAGCCAGGCCTGCACTTTATAGACCAGCACCGGGCT
GCGCTTATCGCGAGGGTCACAAACGTTGAGTGGCTGCTGGATGCTCTGTACGGGAAGGTCCTGACGGATGAGCAGTACCAGGCAGTGCGGGCCGAGCCCA
CCAACCCAAGCAAGATGCGGAAGCTCTTCAGTTTCACACCAGCCTGGAACTGGACCTGCAAGGACTTGCTCCTCCAGGCCCTAAGGGAGTCCCAGTCCTA
CCTGGTGGAGGACCTGGAGCGGAGCTGAGGCTCCTTCCCAGCAACACTCCGGTCAGCCCCTGGCAATCCCACCAAATCATCCTGAATCTGATCTTTTTAT
ACACAATATACGAAAAGCCAGCTTGAA
  • refseq_PYCARD.F1 (forward primer)
  • refseq_PYCARD.R1 (reverse primer)
  • Single exon skipping

Frame 0

EGAILASPDGLGPQSRGLGGRGPRV**GSAFCW
RATDRGGESGDQSGRKAGSPGSAPEPTSSWSAAA
AG*AAAAAGDPGAMGRARDAILDALENLTAEEL
KKFKLKLLSVPLREGYGRIPRGALLSMDALDLT
DKLVSFYLETYGAELTANVLRDMGLQEMAGQLQA
ATHQGSGAAPAGIQAPPQSAAKPGLHFIDQHRA
ALIARVTNVEWLLDALYGKVLTDEQYQAVRAEP
TNPSKMRKLFSFTPAWNWTCKDLLLQALRESQSY
LVEDLERS*GSFPATLRSAPGNPTKSS*I*SFY
TQYTKSQLE

Frame 1

RARSWRPPTAWGPNPEAWVGGDQGCSKEAPFAG
GQRTGAGSRETRVGGRRGVQVPPRSRLPPGRRL
QRGERRQRPGILEPWGARATPSWMRWRT*PPRSS
RSSS*SCCRCRCARATGASRGARCCPWTPWTSP
TSWSASTWRPTAPSSPLTCCATWACRRWPGSCR
RPRTRALEPRQLGSRPLLSRQPSQACTL*TSTGL
RLSRGSQTLSGCWMLCTGRS*RMSSTRQCGPSP
PTQARCGSSSVSHQPGTGPARTCSSRP*GSPSP
TWWRTWSGAEAPSQQHSGQPLAIPPNHPESDLFI
HNIRKASL

Frame 2

GRDPGVPRRPGAPIQRPGWEGTKGVVRKRLLLE
GNGPGRGVGRPEWEEGGESRFRPGADFLLVGGC
SGVSGGSGRGSWSHGARARRHPGCAGEPDRRGA
QEVQAEAAVGAAARGLRAHPAGRAAVHGRLGPHR
QAGQLLPGDLRRRAHR*RAARHGPAGDGRAAAG
GHAPGLWSRASWDPGPSSVGSQARPALYRPAPG
CAYREGHKR*VAAGCSVREGPDG*AVPGSAGRAH
QPKQDAEALQFHTSLELDLQGLAPPGPKGVPVL
PGGGPGAELRLLPSNTPVSPWQSHQIILNLIFL
YTIYEKPA*

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