Figure 5 of Wistow, Mol Vis 2002; 8:171-184.


Figure 5. Lens BTB domain protein

Sequence derived from lens cDNA clone by01b08 is shown in black. Sequence in blue shows the 5' continuation of the predicted ORF up to the nearest ATG, taken from human genome BAC clone (GenBank accession number AF111170). The predicted sequence of the consensus BTB domain is shown in red.

 M  A  A  E  L  Y  A  P  A  S  A  A  A  A  D  L  A  N  S  N         20
ATGGCGGCGGAACTCTACGCTCCCGCCAGCGCCGCGGCCGCGGACCTAGCCAACAGCAAC    60
 A  G  A  A  V  G  R  K  A  G  P  R  S  P  P  S  A  P  A  P         40
GCCGGCGCCGCCGTGGGCAGGAAGGCCGGGCCGCGCAGCCCGCCCAGCGCCCCCGCGCCA   120
 A  P  P  P  P  A  P  A  P  P  T  L  G  N  N  H  Q  E  S  P         60
GCGCCGCCGCCGCCCGCGCCCGCGCCGCCCACACTCGGCAACAACCACCAGGAGAGCCCC   180
 G  W  R  C  C  R  P  T  L  R  E  R  N  A  L  M  F  N  N  E         80
GGCTGGCGGTGCTGCCGCCCCACGCTGCGCGAGAGGAACGCGCTCATGTTCAACAACGAG   240
 L  M  A  D  V  H  F  V  V  G  P  P  G  A  T  R  T  V  P  A        100
CTCATGGCCGACGTGCACTTCGTCGTGGGGCCCCCGGGGGCGACCAGGACGGTGCCCGCC   300
 H  K  Y  V  L  A  V  G  S  S  V  F  Y  A  M  F  Y  G  D  L        120
CACAAGTACGTCTTGGCTGTCGGCAGCTCCGTCTTCTATGCCATGTTCTACGGAGACCTG   360
 A  E  V  K  S  E  I  H  I  P  D  V  E  P  A  A  F  L  I  L        140
GCGGAAGTCAAATCTGAAATTCACATTCCAGACGTGGAGCCCGCAGCCTTTCTGATCCTC   420
 L  K  Y  M  Y  S  D  E  I  D  L  E  A  D  T  V  L  A  T  L        160
TTAAAGTACATGTACAGTGATGAGATCGATCTGGAAGCCGACACGGTGCTGGCCACTCTG   480
 Y  A  A  K  K  Y  I  V  P  A  L  A  K  A  C  V  N  F  L  E        180
TACGCTGCTAAGAAGTACATCGTCCCAGCATTGGCAAAAGCCTGTGTCAACTTTCTGGAG   540
 T  S  L  E  A  K  N  A  C  V  L  L  S  Q  S  R  L  F  E  E        200
ACAAGTTTGGAAGCCAAGAACGCCTGCGTCCTGCTGTCCCAGAGCCGGCTGTTTGAGGAG   600
 P  E  L  T  Q  R  C  W  E  V  I  D  A  Q  A  E  M  A  L  R        220
CCCGAGCTGACGCAGCGCTGCTGGGAGGTCATTGACGCACAGGCCGAGATGGCCCTACGG   660
 S  E  G  F  C  E  I  D  R  Q  T  L  E  I  I  V  T  R  E  A        240
TCCGAAGGCTTCTGTGAGATAGACCGGCAGACGCTGGAGATCATTGTCACTCGGGAGGCC   720
 L  N  T  K  E  A  V  V  F  E  A  V  L  N  W  A  E  A  E  C        260
CTCAACACCAAAGAGGCGGTGGTCTTCGAGGCCGTCCTGAACTGGGCCGAGGCGGAGTGC   780
 K  R  Q  G  L  P  I  T  P  R  N  K  R  H  V  L  G  R  A  L        280
AAGAGGCAGGGGCTGCCAATCACCCCACGAAACAAGAGGCATGTTCTGGGGCGAGCCCTC   840
 Y  L  V  R  I  P  T  M  T  L  E  E  F  A  N  G  A  A  Q  S        300
TATCTGGTCCGAATTCCAACCATGACCCTAGAGGAGTTTGCCAACGGCGCTGCCCAGTCA   900
 D  I  L  T  L  E  E  T  H  S  I  F  L  W  Y  T  A  T  N  K        320
GACATCCTGACTCTGGAGGAGACCCACAGCATCTTCCTGTGGTACACGGCCACCAACAAG   960
 P  R  L  D  F  P  L  T  K  R  K  G  L  A  P  Q  R  C  H  R        340
CCCCGCCTGGACTTTCCCCTGACCAAGAGGAAGGGCCTCGCCCCGCAGAGGTGCCACCGA  1020
 F  Q  S  S  A  Y  R  S  N  Q  W  R  Y  R  G  R  C  D  S  I        360
TTCCAGTCTTCTGCCTACCGCAGCAACCAGTGGCGGTACCGCGGGCGCTGCGACAGCATC  1080
 Q  F  A  V  D  R  R  V  F  I  A  G  L  G  L  Y  G  S  S  S        380
CAGTTTGCAGTGGACAGAAGGGTATTTATTGCAGGGCTGGGCCTGTATGGCTCCAGCTCT  1140
 G  K  A  E  Y  S  V  K  I  E  L  K  R  L  G  V  V  L  A  Q        400
GGGAAGGCTGAGTACAGCGTGAAGATTGAGCTCAAGCGGCTCGGGGTGGTTCTGGCTCAG  1200
 N  L  T  K  F  M  S  D  G  S  S  N  T  F  P  V  W  F  E  H        420
AACTTGACCAAGTTCATGTCAGACGGATCCAGTAACACCTTCCCGGTCTGGTTTGAACAC  1260
 P  V  Q  V  E  Q  D  T  F  Y  T  A  S  A  V  L  D  G  S  E        440
CCGGTCCAGGTTGAACAAGACACCTTCTACACGGCCAGTGCCGTCCTGGACGGCAGCGAA  1320
 L  S  Y  F  G  Q  E  G  M  T  E  V  Q  C  G  K  V  A  F  Q        460
CTCAGCTACTTTGGGCAGGAGGGGATGACGGAAGTGCAGTGTGGAAAGGTGGCCTTCCAG  1380
 F  Q  C  S  S  D  S  T  N  G  T  G  V  Q  G  G  Q  I  P  E        480
TTCCAGTGCTCCTCGGACAGCACCAACGGGACTGGGGTCCAGGGTGGGCAGATCCCTGAG  1440
 L  I  F  Y  A  *                                                  485
CTCATTTTCTATGCCTGAGGTGCCCGGGGAGGCTGCAGCAGGTCAGCGAGTGAGTGGAGG  1500
GGAAGTCAAGATGCTAACTGCTTCTTGACACCATGAAAGGCTGCTCTTAACTTTGTCTCT  1560
CTTTGACATGTAGTCAGCTGAAGCTTGACTGTGTAGAGACATTTTCCACACAGCCAGAAC  1620
CCAGGGATTGGAGTCTTAGGCATCTCTGGTACAGTGGGGTGCACGTCTCAGGTGGAGGAA  1680
GATTTACGGCTCAAGACAGGCCCCAGATCCCCTCCCAGTGGCACCCATGCCACCTGCTTT  1740
GAGGGGTTGGATCTTCCTGCTACCCTCTTGGATTCTAAGTGGTTCCAAGCTTAACTTGAG  1800
ACCTTCCCTTCAAATCTAAAATTGGCAAAAAGTCACTTAAAATAGTGGACTTCTGTAATA  1860
AAGGTTGCCTAAAATAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA       1915

Wistow, Mol Vis 2002; 8:171-184 <http://www.molvis.org/molvis/v8/a24/>
©2002 Molecular Vision <http://www.molvis.org/molvis/>
ISSN 1090-0535