AGTTGAGCTTTGCCAGCCGAACGAAGAAGTCGAACTCGACGCTGCGTCTCTTTGCGTGTTGGTTTTCCCAATACAAATCT CTCAGTTCGTGTCCGCGCTTTAGAAAACTGAAAACCCAAAGAAGCAGCAATATCACTCGCAGCAGCAGCAGCAGCAACTG CTACAGCAGCAACATCACTCGCAGCAGCAGCAGCAGCGGCAGCAGCAATAAAATCAAAACACGTTTTACTCCCGCACATT GAAAACGCATTTCCCACATACAAAGAGGATTTAATTTCCAATTGAAAAACCATTTAAATTGGTTTATAATTTCCGAAAAT ATTTGTGTTTGTGTTTTTTGAATGAAAGTGTGTAACCAAAAATATGGAAATTTCGCTCATAAATATTGATGTGTAATATT GAATATTTGTGTCTTTTACTTTGAAGCCGGTTTCGTTTCTGTGTCGATATTTTGCATTATTAATTACAATTTACGTTCAT CAAGTGGAAACAGTCAAACAAATTGAGAGACAATTCAGAGACAAAACATGGAAAACTATGTGTGAACGATAAAAGGCTAC TGAACTGGTTTTAACGCATCTCGACGTGTTTGTTTGGTGGTAATGTGATCGGCGCGATCTTCGGGAGCAATTAGAAGACT AAACAAAAGGAGAAAAGGCTTCGGTAAAGCAGCTTACCAACTGGCAACGCGAAGGCGTCAAAGGGAATCGAAAGGAGTGC AGGCAAATTGAAAAGGACTATTCGCACACTGTGGCCAGCGGAGGAGGAGGAAATCGAACCGAATGCAGTATCTCAACTAC GCTCTGCAGACATCCACGCGACTGCTGACGTACCAGGGCCCGAACCAGGATCTATATCCTGACCAGACAGGAGTAGCCTC CGCCCACGAGGAGGAAATCAAGCACGCCTGCTGCAGTCGCGGCGCTCAGCTGCTGAGATTGCGCCACCGAGAGCTGGCCA AGCGACGAGCTCTCGAGGATCAGATTAACGCCAATCAAGAGGAGCAGGAGGAGACGGAGGAGGACTCTCGGGATCAGCAG GAGCCGCTGCCGGAGGAGTTGGACAGCGAGCAGGGAGCCGTCGGCGGGGAGCAACTGCATCCGCAGCCAGTCCAATGAAA CTTACTCTCATTTAATGTCCAACTGGCGCGCAGCAAGCTGCTATCGTTCTTCAACCGCGACATGGCCGCCACCGATGGCC AAATCATATTGGCCGCCTCCCGATTCGGCGATGCCACGCCCGTTTACCTGCGCGACTTTTCCAAGCAGCCGCTGCCGGCG GTGGCCAAGATCATCAAGGGCCAGCACCAGGCGCTGGGGGTGCCCACATTGTCGGCCCCATCTCTGCAGAGCACCGCCCT ATTTCTGAGCGCCGGCAAGAAGTACCAGATCCTGGCCCAGCCCATCAAGATCAAGGAGGGTCGCAAGCCCACCAATGTGG GCGCCAAGGTGCTCATCCCGGAGACCTACGGCGGCTACTTCGAGCTCCTCAGCGAGGATGGTCGCTCCACGCGATGCATT GACTCCGTGCTGGAGCTCTCGCGACGGCGAAACGCCCGCGTCCTGGTGCGGGAGACCTTTCGATGCCAGCAGATGAACCG GACTATCCACGCCGGCGAACTGCTGACCACCATGAACGACAACGGGAAGTACCTGCAGTGCAGGAACATCAAGGACGAGA TCATCAATCTGCCACTCGATACCAAAGCCAAGTTCTCGCCGATCGCCAGGGAGGACAGCATCAGCGGTGTCCACACCGTC AAGAATCTGCTGCTCAAGCGGATGCCAGTCATCGTGAGACTCGTTCACGGCAGTGCGCCCAAGGGTCTGAAACAGCCATT TGTGCCCGAACTGCGACTGCTGGGCTGCGTGGAGATCGACAGGATATTCGCGTTGCCACTGCAAAAGGACACGGATCTGG TGCCGGTGCCGCTGAATGCCAAGATCAAGCTGCAGCGAGCCAAGAACATGGAGCAACTGGAGCACTTCATCGAGTACTCG CGATTCCTGGACAAGGCGCAGCGATTGCTGGCCGATGCACGCGATCGCCTGCAGATCGTCGATCTCAAGCTGAGCGAGAA GGAGAAGAAAGACTCCAAGTTCAATAGTCGCAATGGGGGCAGGTTGCCGGTGGTCATGCTGCCATCTGCAGCGGGAATGG CCAGTGGACTGGCGGAAAGTGGTTATGTGCTGCGCAAGAGTGCCAGTTGTGATTCGTGGTCGAAGCAACAGCAGCAGGCA CTGAGCAGCAGCGAGATTGCGGAGGAGTACAACGAGATCGATCATATATATGATTATGTGAGGGGCCTGACGCCGCTCTC GAAGGGATTGGCCCGCTTCGAGCCCATCTGCGAATCACCCACTCTGCGGTCCCATCACACGGACAGCGGCAGTGGCAACT ATTGCAGTTTGATCAGGGCTCCGGTTCACCAGCAGGCCACCACCTCCGGCAACAACAACTACAGCAGCTTGGAGTCGAAC AAGCACAGCAGTAGCGGCGGTGGCCATCATCCCGGTAGCCACCATCACCACCATCATCACGTGGTTAATCACTACCATCA TGGCCATATTCAGGAGGACATCAAGCCGGTGCCGCCGCCCATTGAAACGATTCCGGGCAAGAAGCCGGCGGAGAAGCGCC AGCGTCCCACTCTACCAAAGCTTTACATCAAGAATGCCCACAGTGCTGGGAGCAGCAGCAATGGCAACTCCACGGGCACC ACCCACAGCACCAGTCACAGTCACAGCCATAGTCACAGTCACGTCCACAGTCACAGTCACGGGCAGTCACAGTCGCAGCA GCAGCCGCCGACACCCAATGGGAATACGGGCAATGCGGTGGCCAATGCGGCCGCCTCAGCGGTCGCAGCTGCTCATCACG GTTCCCACGGATCGCACGGATCACATCTGCACCCCCATCCGCATGCCAGTGTGCATCCACATCCGCATCCTCATCACGGC AAGGTGCTGACGCCCAACAATCATCTGCCGAGCAAGGAGGCTCTCGAGCCGCAGTCGCCTCTGTTTCACATCAGGTACAA GAGTCTTAGCAGTCTGCAGCTGACGCCGGACAACAACAATTGCTCCTCTGTGACGCCGCCGACGATCTCAGCCCACGGCA AGTCATCAGGAGCAGGCGTTGGATCGGGAGCAACTGCGTCGGGCACACCGGGCACGCCGGGCACTCCACCGGATGTGGGG CTCAAGTGCGGCAGCATACTGAACGTGCACGGTTACCTGTCCAGTCCGCATCCTCTGCCATTGCCGCTGCCCCACAGCCG GAGTTCCAGTAGCAATAACCATCACAATCCGAGGGAGGGTACGCTGGATTCATCCCGCAGCGGAGGCCGGACATCGGGCG ACTCGAACAAGCTGCCCGAGAAGAAGACACGCCGCCTGTCCCGGCCAAGAAGTCTGTCCAACCTGGTCTGGGATCTGCGG CCCTCGAAGGAGAAGTCGAAGAAGAAGCTCTACATCCATCATTTCGATCAGCGGCAGCAGGCGACGCTGTATCTGTAGGA TGATTGCATGGATGTATCTCCAGGATGACGATGACGATGAGGAAGTAGCAGCACGATGATGATGATGATGATGATTCGTT GCCAACTCGTTTCTAGCTGCCATCGACCCCCACAATACAGAAACAAAAACAGTAACAGAAACAGAAACAGAAACAGAAAA ACACTGAGAAATAAAACACAATAAAAGAAGAGCAACTACAACTTTTGGCACGCTGTGTGTGTTCCTGCAGCTTTCACCAT TTAGCCTGCAGCAGCAATTTTAATTAATATTGAATTGTGCCTTTCCCTGCTACGCCCAGAATTATGCTTTAAAACCAGAT TCCAATGGAGTATTTGATGAGAATATTTCGACCGGATGGAACCACGACAAAATGAAAGGCTGCCAGCACACACACACACT ACTCACACCACAAAACGACCACAAACACATACACAAAGCCAACATACACACACACCACACACACATGCATACACACATCA AGTCTATAAAATTGTGATTTTAATTTTATGTTTAATTTAATAATTATTGCGAACCATCTTCAAATTGGAAAAAAAAAAAC GAAAAGCCATTAACGCTGCTCAGAAAAATTCACAAAACGAACTTTAGAAACCACAAAAACTTAGTTGTGTCTACAAACGA GATACTTATGCATTAAATGAGTACTGTATTTAAACAGGATAGCAAAAGACAAATGTAACTAATAGTAAGTCAATATTATC GAACAACCATAATCAATCATTTAGAGTATGTTATGCAACACTTACAGCTAGCTAAAATGAATTTATTAATTAACGCAATG AATTTCCTCCTCATAATTTAAATGTTGTGCAAACTGTTGATTGAATGCAATTAAACCATAATCGAACAGCTCTTGTTTAG TAATTAGTTTGCTCAGAGCCAGATATTTCCCACAATGCCCCCCCGAAATCCCCGGGAATATTGATTTCCCCATGATCTGC TCGCAATCGCATTGTCTTAGTCGTTTAGTCTGTACATTTTAGTTGTATTACCCAGCTTATATGGCCTACACATAGGGAGT ATATATATATATACATACATACATATGTAAAACTATATAATATAACTTGTATTTGTGTCTAAATAAATGTCTCAGAAAAA TAAATGTATATGCAAAACAAAAAAAAAAAAAAAA
Full-length open reading frame fused to a carboxyl-terminal FLAG-HA tag cassette under the control of a metallothionein promoter.
A cDNA sequence encoding each bait molecule was cloned into the pMK33-C-TAP-FLAG-HA-BD vector as a full-length open reading frame, fused to a carboxyl-terminal FLAG-HA tag cassette under the control of a metallothionein promoter. cDNA sequences are derived from previously characterized and publicly available clones created by the Berkeley Drosophila Genome Project; all inserts are full-length sequence-validated.