Table 2 of Dekomien, Mol Vis 2007; 13:174-180.


Table 2. Primers for amplification of exonic regions of CACNA2D3, HT017, and WNT5A including exon/intron boundaries

The intronic primer sequence for amplification of corresponding exons and 50 intronic bases on either end of the exons and the product sizes are shown.

                                                       Size
  Gene      Exon          Sequence (5'-3')             (bp)
--------   ------   --------------------------------   ----
CACNA2D3   1F       GGTGCTGGCAGTTTCTACCC               268
           1R       ATCGCTTCCTGCCACCAC
           2F       AAGAGAGGCAGTCCTATTTATTCCTTG        329
           2R       GAACAACTGAGTCAACTTCACTCTTTG
           3F       AAGGCTCCAGGTCATAATGCAC             261
           3R       CTTACCATTTCTTGTTTGGCAGC
           4F       GACACCCTTACCTGGCTTTGC              355
           4R       TGTCCCCCATACCCTCTGTTC
           5F       CTCATGCTGCTATTGCCAGC               326
           5R       TCATTTTCCCCTATTGGGAGG
           6+7F     CAGGGCTGGTCATTGCATG                546
           6+7R     AGGCGGGACATCTAATGCTG
           8F       GGTACCCCTCAAATGATTAATTGTG          201
           8R       TAGGTTTGTATCATGACCCTTGATG
           9F       CCATTCCAGTCTGAGACTCGTTG            311
           9R       GCCAAGGCTAACCATAATGCTG
           10F      GGGAAATGCTTATCGTGTAGGTTC           422
           10R      AGAGCCATAGTATTCGGTTTGGTC
           11F      CCTACAGATGGGAAGCCTGG               277
           11R      CTCTTAACTATCCCAACTTGCGC
           12F      TGAGAGGTGGGTTTATGGTTGAC            394
           12R      GGTTAACACGGTCTTCTGGAATTAAC
           13F      TTGCCAGTGGTGACCAAATG               208
           13R      GTACTGAATGCACAAAATCATGGAG
           14F      ACTGGTCTGTTCCCAATGGC               266
           14R      CACCAGAGCTTGAGTCAGAGAATG
           15F      AAACTTTGAGAAGGCACCAGATG            248
           15R      AGGTATCTTGGACGCTTAGTCCTG
           16F      TGAATTCACCAGGGAGCCAG               221
           16R      AAACGCTGCTGCAAAAGTGTC
           17F      GCTTCTCTCCAATATCCCTCCAC            279
           17R      TGGCCTCCAGGTACAGAACTG
           18+19F   AGCATGCTGACTTGGTGCC                693
           18+19R   CACTCTTTCCAGCCTTTTGGC
           20F      AAACCAACACCAACTATAATCAGTGG         310
           20R      TCTTTCATTAATCCAATGACTGGC
           21+22F   GGGAGATGCAAGTGAGGAGG               637
           21+22R   GCTGGATTTGATGGGACCG
           23F      AGAACTGTTCCATATTTTCAGCTGG          406
           23R      TCGAGCTCTTGTGGTTTGGAG
           24F      TTGCATTCTGTGCTTGGTGC               359
           24R      ATCAAGAAACGCAAGCCTCC
           25F      TCTCCACACTTTCGCCAACAC              484
           25R      GGCCAATATTCAACACTGCCTC
           26F      CACAGCAGCTATGGCGTCAC               410
           26R      ACCAGCTGTCAGAATCTTGAATTG
           27F      TGCTTGCATCAGCTTCTTGC               251
           27R      GCACTTTTAGGCTCCGGGTAC
           28F      TAAGTGGCAATCATAGCAGATGC            232
           28R      TCAGGAGCAATCTGTCAGACAAG
           29F      CCATGGCCTTAACTCCTAGAGC             381
           29R      GGCTGTGACATTTTTAGAGGGATAG
           30F      TCCTGATTCTTCTCTGGTGCTTG            231
           30R      GGCTTGCTTTATTTGACCTTGG
           31F      GACTTTGCATGTTCCTGGTTTG             304
           31R      CACAGATAAAGATATGCTCACGCTC
           32F      GGTATCCAACCATGTTCTTCTTGTAG         373
           32R      TGGTCTCAGCTTTCAATATTTCGAG
           33F      GGGTAACACAACCAACCATACTGTAC         290
           33R      TGTATGTTTGTCCATCCTTGGTG
           34F      GAGCGGAACTGGGTTCTGAG               352
           34R      TCTAGCGAAGCCAAATGATGC
           35+36F   GGGAGTTTTCCTCAGGATCTTTG            551
           35+36R   ATGAGACTCTCATGGTGAATCTGG
           37F      AAGACTTGATTCCTACTTTGGAGAGC         630
           37R      AAGTCTCTGCCAACAACCATCC
HT017      1F       GCGTTGAAGAAAAGCACAAGC              209
           1R       AGTCCCTTCCTCCCACGG
           2aF      ATTCCTTGTGACTTCAGAGGGAC            487
           2aR      GGAGCTTGATTTGTCATCAAACA
           2bF      GCAGACTTTTCCACTCCCTCC              319
           2bR      CCTGCGTGTTACCAGCCTAGT
           3F       GCTGTATATATTCCATCTGCCTGAG          605
           3R       GTGAATGCATCAACCCTACTCATATAC
WNT5A      1F       GTAAAGTCTTTTGCACAATCACGC           468
           1R       AAAAAGTGGCGAGCGTCG
           2F       AACTCAACGGAGGAGAAGCG               302
           2R       AATAAAACAAAGCATATGTACTTAGAAGGAAC
           3F       ACTTTGTCATGAGGACAAGCAGG            440
           3R       TCTTCAGGAGAACACTTGATCCG
           4F       GGGTCAGAGTGGAGACGCC                503
           4R       TTGTCAGGCAGCATCAGGC
           5F       GGAGCGGAGCTTTGGTAACC               599
           5R       AAATAAGTGGGTCCTGGGAGC

Dekomien, Mol Vis 2007; 13:174-180 <http://www.molvis.org/molvis/v13/a20/>
©2007 Molecular Vision <http://www.molvis.org/molvis/>
ISSN 1090-0535