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A. Act, 6h. Act, UV. Act, 3h. con. con. UV. trex1. gapdh. 1 0.4 0.1 1 2.8 0.7. IF. B. C. col AP-1. p21 p53. 0. 5x. 10x. 50x. 0. 5x. 10x. 50x. fold excess. specific shift. ß-Gal activity. 7.5J/m 2. 20 J/m 2. control. unbound oligo. MMS. TCDD. D.
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A Act, 6h Act, UV Act, 3h con con UV trex1 gapdh 1 0.4 0.1 1 2.8 0.7 IF B C col AP-1 p21 p53 0 5x 10x 50x 0 5x 10x 50x fold excess specific shift ß-Gal activity 7.5J/m2 20 J/m2 control unbound oligo MMS TCDD D mM nM Time (h) con 3 0.1 3 0.5 3 con 6 0.1 6 0.5 6 con 3 1 3 5 3 con 6 1 6 5 6 trex1 gapdh MNNG IR µM Gy Time (h) con 3 5 3 25 3 con 6 5 6 25 6 con 3 0.5 3 2 3 con 6 0.5 6 2 6 trex1 gapdh B(a)P H2O2 µM mM Time (h) con 3 2.5 3 10 3 con 6 2.5 6 10 6 con 3 0.25 3 1 3 con 6 0.25 6 1 6 trex1 gapdh Supplement 1
mTrex1 Promoter CTGAGGGCCTGAGCATCCAGCCACAAGGTGGCGCCAGCTCCCACCGCCGTCTTTGCCATATCCACTGATTAAAACTGCACTTCCTGCTGAGAACACAAGCTTTGTTTCCTGAGTCCGATTTGTGTGGCTGAGAGGGAGGGACAGGGCAGACCAAGAATTGATGAGATGACTCCTGCTGGAGTTGAGATGGCCCCCATGGTAACTGATCTGCCCTGAGGAAAAACCCTGCCCCTCTTCGGGAATTACCCTGAGTCATAGCTTTGGGCGGGGGCCGTGGTGGGGGCAGGGGTACGTTTGTGGCCAAGGAGGCAGCCCTTTTTAGGAAGGCCTGGATCAAGGACTGGGGGAAAGACAAGAAAAGGCAGAGGCTCACGGGCACATTTGAATCCTAGAGACAACCCAGTTTGAGTTGTCAGTGTTGGGGCAGTAGTCCATTTTACCAGCCAGCAGGATCACAGATATGGATCTAGGAAGGCCTTTGGGGTGCTTGGGGAGGGAGGGAGGAGCGTCAGCACGAGGGCCAGGCCTGGCAGGCTAACAGCAGGGCGGGCCCTGTTCAGGAGGCAGGCCTATGGGTGGACCCAGGCAGTTTTACTTCCTCAGCCACACTGCTGCCAGCAGCAGACCCAGCGGAGTGCCTTGCTGCCTGCTTCTCGGTAAGTGTGGAGTAAGGGTATGGGGTAAGGCAGAAGAGAATAGGGTTCCCTCACCCTGAAGGTAGTCAGCACTAGGGGAAGGGCCTCCCTCAAAAGGCAAATAAGTAGTGGATCCATCCCACTAGAACAACCCTGCCCTCCAGCTTCTAGTGGCCCTGGATAGTACCTGCTGAAGGGAAGGGCTGAGCTGCCTTTCTGCACCCCACCTCAGCCCACTTGAGACCTTCCTGCTGCTACTCATTACCCCATCTCCTCCCCAGGCTCAGCATGGGCTCACAGACCCTGC GR AGAACA AGTACC WT GTGTGGCT GAGGGAGGG GCGGGGGCC p53 TGAGATGGCC NF-AT GGAAAAAC SP1 CCCTGCCCC GGGGCAGGGG GGGCGG NFκB TCCCCA TGGGGA AP1 CTGAGTCA TACTCA Ref1 TGAGAC RXR TGCCCT TCACCC GGGTGG AGGCCT c-Maf TCAGCA underlined: primer usedforcloning Supplement 2
A Act-D UV Act-D con UV trex1 gapdh B col AP-1 htrex1 AP-1 col AP-1 htrex1 AP-1 0 4 8 16 0 4 8 16 time(h) 0 4 8 16 0 4 8 16 UV B(a)P Supplement 3
hTrex1 5 CTGGCCTTGTTTCCTGAGTCTGATCTGTTTGGCGGAGTGGGAGGGGTGGAGCAGGACCCG mtrex1 96 CAAGCTTTGTTTCCTGAGTCCGATTTGTGTGGCTGAGAGGGAGGGA-----CAGGG--CA * ** ************** *** *** **** *** ******* **** * hTrex1 65 GACCCTGAGTGGCTGGGATCCTTCTTCCTGTCCCTGGCTGTTGCTGAGCCCGTCCCCATG mtrex1 149 GACCAAGAATTGATGAGAT--GACT-CCTG---CTGG-AGTTGAGATGGC---CCCCATG **** ** * * ** *** ** **** **** **** * * ******* hTrex1 125 GTAACTGATCTGCCTTGAGGAAGGAGCCCTGCCCTGCCTGTGGAATTGTCCTGAGTCATT mtrex1 199 GTAACTGATCTGCCCTGAGGAAA-AACCCTGCCCCTCTTCGGGAATTACCCTGAGTCATA ************** ******* * ******** * * ****** ********** hTrex1 185 GCTTTGGGCTGGGGCCATGGGAAGAAACCATTGTGTGGCAGGG--AAGGAGGTGGCTCTT mtrex1 258 GCTTTGGGCGGGGGCCGTGG-----------TG-GGGGCAGGGGTACGTTTGTGGC-CAA ********* ****** *** ** * ******* * * ***** * hTrex1 243 GGCC-CAGGCCTAAACCAGGAAAGCCTGGGAAACTGGGACCCACAGGTGGGCATGAAAGG mtrex1 305 GGAGGCAGCCCTTTTT-AGGAAGGCCTGG--ATCAAGGACTGGGGGAAAGACAAGAAAAG ** *** *** ***** ****** * * **** * * ** **** * hTrex1 302 GCCGCAGCAGGGGCTCCCAGCAGTGTGTAAGACCGGGAGCTGGTCTGGCACCACTGCCCT mtrex1 362 GC------AGAGGCTCACGGGCACATTTGAATCCTAGAG-------------ACAACCCA ** ** ***** * * * * * ** *** ** *** hTrex1 362 GGTCCTTCCAGCTGCCTGTCACTGGTATGATGGCCCCGGTGCATTGTGCCA-CCAGCAGG mtrex1 403 G----TTTGAG-T---TGTCA---GTGTTGGGGCAGTAGTCCATTTTACCAGCCAGCAGG * ** ** * ***** ** * *** ** **** * *** ******** hTrex1 421 C-CACAGCTGTGGATCTTGGAAGGCCTCTGGGGTCCCCCGGGAGCAGGGGAGTGGGTGTG mtrex1 452 ATCACAGATATGGATCTAGGAAGGCCTTTGGGGT---------GCTTGGG-GAGGGAG-- ***** * ******* ********* ****** ** *** * *** * hTrex1 480 GGGGGGAACGGATGGTGGTGAGAGGGACAGACCAGGCAGGCTGACGAGCAGGGCGGGCCT mtrex1 500 -GGAGGAGCGTCAGCA----CGAGGGCCAGGCCTGGCAGGCTAAC-AGCAGGGCGGGCCC ** *** ** * ***** *** ** ******** ** ************* hTrex1 540 GGCTCACGTGG---GCCTGTAGGCGGGCCCACGCCAAGTTTCACTTCC-C-GCCAC--TG mtrex1 554 TGTTCAGGAGGCAGGCCTATGGGTGGACCCAGGC--AGTTTTACTTCCTCAGCCACACTG * *** * ** **** * ** ** **** ** ***** ****** * ***** ** hTrex1 593 CTGCCAGCGAGAGCCGCGGGAGAGTGTGCAGCCGAGTCACTACTGCCTGCCTGCCTGCCT mtrex1 612 CTGCCAGCAGCAGAC-C-----------CAGCGGAGT-------GCCTTGCTGCCTGC-T ******** ** * * **** **** **** ******** * hTrex1 653 GCTACGGTGAGTGTGGCCCCCACAATGGG-ATGGCGCAGGGCAGGAGGGCCATGGGTTCC mtrex1 652 TCT-CGGTAAGTGTGG-----AGTAAGGGTATGGGGTAAGGCAGAAGAGAATAGGGTTCC ** **** ******* * * *** **** * * ***** ** * ******* hTrex1 712 CCCACCCCAGACTAAGGGGGCACTAGGGGAGGGGCCGAGTCATGTGAAGAGGGAGACCCT mtrex1 706 CTCACCCTGAAGGTAGTCAGCACTAGGGGAAGGGCC---TCCC-TCAAAAGGCAAA---- * ***** * ** *********** ***** ** * ** *** * * hTrex1 772 CTCAGACAGTCGAATGTGCTGGTCCCACTAAGGAAACCACCTCACCCTCTCCAACTTCCT mtrex1 758 -TAAGT-AGTGGA---TCCA--TCCCACTA---GAACAACC-CTGCC-CTCCAGCTTCTA * ** *** ** * * ******** *** *** * ** ***** **** hTrex1 832 G----CCTGAAAA mtrex1 806 GTGGCCCTGGATA * **** * * Supplement 4
anti-Trex1 TO-PRO-3 overlay sc8-con wt-con wt-con Supplement 5
A C * * * * Cells (%) Viability (WST, %) UV (J/m2) 12h 24h B con UV nuclear localization (% of cells) 83.1% 224.7% Supplement 6