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. 2015 Oct 30;291(4):1751–1762. doi: 10.1074/jbc.M115.686121

TABLE 3.

List of primers used for construction of expression plasmids

Name Figure PCR template Nucleotide sequence (5′ to 3′)
pIZT_BmKr-h1 Fig. 2B, 3A, and 6A Full length cDNA clone AAAAAGCAGGCTTCGAAGGAGATAGAACCATGATAGGTGACGAGGAGCGAG
AGAAAGCTGGGTCCTATGATTCTGTAGCTGGCGGAG
pIZT_p65AD_BmKr-h1 Figs. 3, A, B, C, D, F, and G; 5, A and B pIZT_BmKr-h1 ATGATAGGTGACGAGGAGCGAGTTCATC
GGTTCTATCTCCTTCGAAGCCTGCTTTTTT
ATGTTCCCTTCTGGGCAAATCTCAAACCAGG
TTGGCCGCTGGAGCTGATCTGACTC
pIZT_p65AD pIZT_p65AD_BmKr-h1 ACCCAGCTTTCTTGTACAAAGTGGTCCC
CTATTGGCCGCTGGAGCTGATCTGACTC
pF25A_BmKr-h1 pIZT_BmKr-h1 TTTGCGATCGCATGATAGGTGACGAGGAGCGAG
TTTGTTTAAACCTATGATTCTGTAGCTGGCGGAGCAAATTG
pF25A_BmKr-h1_HA Fig. 4, A and B pF25A_BmKr-h1 TCCCGGACTATGCAGGATCCTATCCATATGACGTTCCAGATTACGCTTGAGTTTAAACGAATTCGGGCTCGGTACCC
CGTCATAGGGATAGCCCGCATAGTCAGGAACATCGTATGGGTATGATTCTGTAGCTGGCGGAGCAAATTGTATAAC
pF25A_BmKr-h1(1–243) Fig. 4B pF25A_BmKr-h1 TGAGTTTAAACGAATTCGGGCTCGGTACCC
ACTCTGTAATGGTGCGGTGCGGGG
pIZT_p65AD_BmKr-h1_ΔZF1 Fig. 5A pIZT_p65AD_BmKr-h1 CGTTCTACTGCTGATGCACATCGCTGC
CTGATGAACTCGCTCCTCGTCACCTATC
pIZT_p65AD_BmKr-h1_ΔZF2 Fig. 5A pIZT_p65AD_BmKr-h1 ACTGGCGAGCGACCATTTGAATGTGAATATTG
GCGATGTGCATCAGCAGTAGAACGATG
pIZT_p65AD_BmKr-h1_ΔZF3 Fig. 5A pIZT_p65AD_BmKr-h1 ACAAAGGAGAGGCCGTATCGGTGCAATG
TTCAAATGGTCGCTCGCCAGTATGGGTTC
pIZT_p65AD_BmKr-h1_ΔZF4 Fig. 5A pIZT_p65AD_BmKr-h1 ACCGGCGAGAGACCGCACGCATG
CCGATACGGCCTCTCCTTTGTGTGAATAC
pIZT_p65AD_BmKr-h1_ΔZF5 Fig. 5A pIZT_p65AD_BmKr-h1 ACAGGTGAGAAACCCTATCGTTGTCCTG
TGCGTGCGGTCTCTCGCCGGTAT
pIZT_p65AD_BmKr-h1_ΔZF6 Fig. 5A pIZT_p65AD_BmKr-h1 ACGGGAGAGCGACCCTATACTTGTG
ACGATAGGGTTTCTCACCTGTGTGGG
pIZT_p65AD_BmKr-h1_ΔZF7 Fig. 5A pIZT_p65AD_BmKr-h1 TTTGGCGAGCGCTGTTATCGTTGCACTG
AGTATAGGGTCGCTCTCCCGTGTGAG
pIZT_p65AD_BmKr-h1_ΔZF8 Fig. 5A pIZT_p65AD_BmKr-h1 GGCGCGGAAGCCCCCCGCA
GCGCTCGCCAAAATGTTGAAAACGATGTAAT
pIZT_p65AD_BmKr-h1_ZF1_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 GCAGTGCGCTTACAGCATTCGCACGATCCTTTCGTTC
GGGTGGACAATGTCAAACCAGACTCGCCGGACTGAT
pIZT_p65AD_BmKr-h1_ZF2_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 CTGCACGACTCGTGCGCTTCTACCGAACCTTTACTGG
GCACAGCAAAAGTCTTATGGGACACGTCGGAGCGAT
pIZT_p65AD_BmKr-h1_ZF3_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 AAGAAAATTTGCAAGTATTCCGTCGTATTTTCACAAA
TCACACTAAACATTTTATGGGAATATTCAGATTCAA
pIZT_p65AD_BmKr-h1_ZF4_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 CCGGAAAACTTCACAGATTTGCTAGAATCTTTACCGG
AATGCTCGAATGCCGCATCAGAAACATTGGACCGAT
pIZT_p65AD_BmKr-h1_ZF5_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 CTGGTCAACTGGTCATATTTTTAAGGACCTTCACAGG
ATTGTATGAACGTCTTATGAGAATGTGGAGATGCGT
pIZT_p65AD_BmKr-h1_ZF6_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 TCCTCTAAACAGCTTAAAGTATTTTCTCGTACTTTCACGGG
GGTGAAGCCCTTTCCGGATCCAGGTGCAGGAGAACGAT
pIZT_p65AD_BmKr-h1_ZF7_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 ATCATGTTCTCAAATTATTTCGTTTTCAATTTTTTGG
TATAACCAAAGTCCCTGAGAGAAATTTCAGAAGTAT
pIZT_p65AD_BmKr-h1_ZF8_amino acid substitution Fig. 5B pIZT_p65AD_BmKr-h1 CAAAAAAACAAATGGAAGCCTTTATTTACAAAGAATTTGGCGC