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. 2000 Nov 14;67(6):1437–1451. doi: 10.1086/316908
Group 8:
 3F ATM, 5′-GCCCAGAACCTCCGAATGACG-3′; and 3R-2 ATM, 5′-GCCGTGAAGCGAAAGAGGCG-3′ (0.25 μM)
 11F ATM,5′-TTTTTGGCAAGGTGAGTATGTTGGC-3′; and 11R ATM, 5′-TGCGAACTTGGTGATGATTGTCAGC-3′ (0.25 μM)
 14F ATM, 5′-GCAAGTCCCCTCACCAGCAACAC-3′; and 14R ATM, 5′-GATGCCTTCCCATCATCCTGATACC-3′ (0.25 μM)
 23F-2 ATM, 5′-GGTGGAATCTGGTCTAGTTACCC-3′; and 23R ATM, 5′-TGGCATAAGCACACGGAAACTCTCC-3′ (0.25 μM)
 27F ATM, 5′-CAGGGCACACAGGGTACAGTGTAGG-3′; and 27R ATM, 5′-TCAGTTCAGACCATCTCATGCCTCC-3′ (0.188 μM)
 29R ATM, 5′-CAAAGACTGAGAGCTGAGCCCAGTG-3′; and 29R ATM, 5′-GCACAATCTCCTCCTTTCTGCTGC-3′ (0.125 μM)
 30F ATM, 5′-TGGTTTAGAAATGCCTTCAGCCCC-3′; and 30R-2 ATM, 5′-CAGCCAGTCCAACATAAATCAG-3′ (0.25 μM)
 31F ATM, 5′-GCCATGTCAGTGCCCAACTTGAAG-3′; and 31R ATM, 5′-TTGGTGCTGCGTTTGGAATCTTG-3′ (0.25 μM)
Group 7:
 7R ATM, 5′-GCTGTCAAGCTGCATCAGCGTTAG-3′; and 7F-2 ATM, 5′-GTTGGATTACCATGTTCACCAG-3′ (.188 μM)
 10F ATM, 5′-GCCCTAGCCCCAGTGTATGTGGAG-3′and 10R-2 ATM, 5′-GCAGAGATAATCATGGGCAGG-3′ (0.25 μM)
 15F ATM, 5′-TCTGGGAAGAAGTTACGCAGGGAAC-3′; and 15R-2 ATM, 5′-TGGGGAGACTATGGTAAAAGAGG-3′ (0.31 μM)
 16F ATM, 5′-GGCGGAATGAATGTGAGTTATGCG-3′; and 16R ATM, 5′-CCAGGTGATTTCTCCATCCCGTG-3′ (0.25 μM)
 20F ATM, 5′-CCAGTAGGGGGTCCCTCATTTCC-3′; and 20R ATM, 5′-TGAGAAGCTGGGAGTGTTTCTGCC-3′ (0.25 μM)
 25F ATM, 5′-CAGTCATGGTTCTGGGGAGAGAAGC-3′; and 25R-2 ATM, 5′-CTATCAATATCTAGCTCTGGGGC-3′ (0.15 μM)
 28F ATM, 5′-CAGGGGGATGATAGTGATGATGTGG-3′; and 28R ATM, 5′-TTCAAAACATACATGCCCTGCCTTC-3′ (0.5 μM)