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Table 2 The sequences of plasmids applied for cell transfection

From: ETS1-activated SNHG10 exerts oncogenic functions in glioma via targeting miR-532-3p/FBXL19 axis

Plasmids

Sequences (5′–3′)

sh-NC (for SNHG10)

CCGGACATGACTGTATCTGTCTAGTCTCGAGACTAGACAGATACAGTCATGTTTTTTG

sh-SNHG10#1

CCGGGCAACCGCTTTGTTAGTTAATCTCGAGATTAACTAACAAAGCGGTTGCTTTTTG

sh-SNHG10#2

CCGGGCGCGCGATTATTTCTCTAGACTCGAGTCTAGAGAAATAATCGCGCGCTTTTTG

sh-NC (for FBXL19)

CCGGCGAGACATAGGATCGGCAGATCTCGAGATCTGCCGATCCTATGTCTCGTTTTTG

sh-FBXL19#1

CCGGGCCGAGACATGAAGAAGTTCGCTCGAGCGAACTTCTTCATGTCTCGGCTTTTTG

sh-FBXL19#2

CCGGGCTGGATCGAGGATGTTAAAGCTCGAGCTTTAACATCCTCGATCCAGCTTTTTG

sh-NC (for ETS1)

CCGGATCAGAGTACTCCTACGCTGACTCGAGTCAGCGTAGGAGTACTCTGATTTTTTG

sh-ETS1#1

CCGGGCAACTCAGGAAGTTCCTACTCTCGAGAGTAGGAACTTCCTGAGTTGCTTTTTG

sh-ETS1#2

CCGGGGAAGTTCCTACTGGTCTTGACTCGAGTCAAGACCAGTAGGAACTTCCTTTTTG

NC mimics/inhibitor

CCAAGCCACCCUACCGCUUGCA

miR-532-3p mimics

CCUCCCACACCCAAGGCUUGCA

miR-532-3p inhibitor

UGCAAGCCUUGGGUGUGGGAGG

pcDNA3.1/SNHG10

AGCCTCATCCTACTGCCTTACTATTGGTCGTCGGCAACCGCTTTGTTAGTTAATTGGAGAGACTGGATGTCCATCAGGGTCACGCTTGCAGGGCAACGAGAGGCAAAACAAGAGGGAAGACGACTTTCCTCCTGTGAGCCAATGAGGCCAGCTGGACTACGCCGAGACAACTGGGAGAGGCGCGGGACTCGCCCGTTCCGCGGAACGCCGGGAAGGGGTCACCTCCTGATGAAGTTTCCGGTTCCGGTGTCAGCGGCGGTTGAATTGCCATGGCAATGCGGTGGGCGCGCGCTTGTCGTGTTGGTCTCTTGGGAGGTAGCGGGGCTAGGCCGGGCGGGTATCCGCCTCTCCCAGCTTAGGTGAGCGTCCCCGGGCGCCTCCGGAGCGCCGCGGCCGCATGCAGTTCGTCGTGGCGGGGAGCCGGAGCCTGACCGGGGTTCCAGCGCTCGGGCCGTAGCCTTGGCTCCTGGACTTTCCCTGGCTCCGCCGCCACGTGGGAGCTGAGGCTCTGGGGCTTCCGCCTCCGGCGCGCGATTATTTCTCTAGAACAGTTTTCATTTTTAAAATTTGTAAAGCGCTTTTGCCTGTGTGATTTCCTCTGGGTTTTTTTTTTTTTTCTTCCTTTTTGTAGAGACGGAATTGGCGGCGGGGGCGGGGGGTCGATGTCTCACTTTTTTGCCCAGGCTGGTCTCGAACTCCTGGCTTCAAGGGATCCTCCTGCCTCGGCCTCTTAAAGTGCTGGGATTACAGGCGTGAGCCACCGCCCCCGGCCGCCTCTGAGTTTCCAGCCTCGTTGGCCCTCCAGCCTTTTAACCTGTTGGGCCTAGGATCAGGAAAGGTTTGTTGAATGGGGAACTAAGAAGTGAATTCGTTCGTTCGACAAACGTTTCCTGAGCAGCCGCTGGGTGCTAGGCGCAGTGCCAGCGCGGAATGTCCAGGGAGACCTGGTGCCCAAAGCTTGGACCCATCGTGAGAAATGAGAAGCAGATACAAAGCAGTGTGGGAGTGCAGAGGAGACAAAGCAAGCCTCATCAGGCCCATTGCTTGCTCTGCTCTCCCTTGTACTTACCAGTGCTTGACAATATACAGTTATTTACTAGCTTGGTTATTGACTTCCTACCCAGCACTCAGTTTTATTCACTGCTGTATCCTCAGTGCCTAGGACGATGCTTGGAACGTGGTAAGTGCTCCTATTGGCGGGAAGAATAAATCCGGAAGAGCAGGACCAGTGGACTTGCTACATAATCTGTAGTCTTGGAGCCGCACAGGGTTGGTGGTACCCTCGAGCACACCAGACTTGCAGAAAAAGCATACTCCAGAGGAAGCTGAGGCATGCCTGCTCGAGAGCCAGCTGTTCCATGTGCAATTTTCCTCTGATAGTTTCTGGTCACTGTTGCCACGGTGATAATGACTGGGCTATGTCATTATCTATCCGCCAACAGTAAGAGAAGCTTTGCAGTCGAGATATTGTTTAGCAGATGGAGTGTTTTCTGTTGAACACTAAGTACTGCCACAAGTTACTTTTTTTTTTTTAAACTTTGAGTATTTTTTTACAATGTTGCTGGAGGTGATCTGTTTATGCTTTGAGAGTGTTCGAATTTAAAATCAGAAAATCATGTCAGTGAGTGAGTCTTTCAAATAATCCTTCGGCATGAAACCTGAGCCTAGTAAACTATGAAAGTAAACTCGGCACATTACCCGAAAGTCTCAATGTCATATTTTCACCCCCATCAATATTATTGATGATTGCTCATTTTCTAATGTGGGACCTGAAATTTACCAGGTGCTTAAAGAATCTTTTTGTTTTTCAGATTCATTGATTCCAGGTAAATCAGAGGAACAAGCAACATGAACAGAAATATGTAGAAAAAGCTATTATGCAGAAGCATAATTGTTGTTTCAGAAGTCCAGCATCTGGTGCACTTAACAATAGAGAATATATTAAACTCTTTCCAAAATAAAAAAAAAAAAAAAAAAAAA

pcDNA3.1/FBXL19

ATGGGTATGAAAGTCCCCGGAAAGGGGGAATCTGGGCCCTCGGCGTTGCTGACGCCCCCAATGTCGTCGAGCAGCCGGGGGCCGGGGGCCGGAGCGCGCCGACGCCGAACCCGCTGCCGCCGCTGCCGGGCCTGTGTGCGAACTGAGTGCGGGGATTGCCACTTCTGCCGAGACATGAAGAAGTTCGGGGGGCCCGGGCGCATGAAGCAGTCGTGCCTGCTCCGGCAGTGCACTGCCCCCGTGCTCCCACACACAGCTGTGTGCCTCTTGTGTGGGGAGGCTGGGAAGGAGGACACGGTGGAGGGAGAGGAAGAGAAATTTGGTTTGAGCCTCATGGAGTGTACAATCTGCAACGAGATCGTCCACCCCGGCTGCCTGAAGATGGGGAAGGCTGAGGGTGTCATCAATGCAGAGATCCCCAACTGCTGGGAGTGCCCTCGCTGCACCCAGGAAGGCCGCACCAGCAAGGATTCAGGTGAGGGGCCTGGCCGCCGTAGGGCCGACAACGGCGAGGAGGGCGCCAGCTTGGGGAGCGGATGGAAGCTGACAGAGGAGCCACCGCTTCCACCGCCCCCGCCCAGGCGCAAGGGCCCCCTGCCTGCCGGGCCCCCCCCGGAGGACGTGCCTGGGCCCCCCAAACGAAAGGAAAGGGAGGCAGGGAATGAGCCTCCCACCCCAAGGAAAAAGGTGAAAGGAGGCCGAGAGAGGCACCTGAAGAAGGTGGGTGGAGACGCCTGCCTCCTCCGAGGATCGGACCCAGGCGGCCCGGGCCTGCTGCCCCCCAGGGTTCTGAATCCGAGCCAGGCTTTCTCATCCTGCCACCCTGGGCTCCCTCCCGAGAACTGGGAGAAACCAAAGCCGCCTTTGGCCTCTGCAGAGGGCCCAGCGGTGCCGTCCCCGTCCCCGCAGAGGGAGAAGCTAGAGCGTTTCAAGCGGATGTGCCAGCTGCTGGAACGGGTGCCTGACACCTCCTCTTCCTCCTCGGACTCAGACTCCGACTCCGACTCTTCGGGCACATCGCTGAGTGAGGACGAAGCCCCCGGCGAGGCCCGGAATGGGCGACGGCCAGCCCGGGGCAGCTCTGGCGAGAAGGAGAACCGTGGGGGGCGGCGGGCTGTGCGCCCTGGCAGTGGGGGGCCCCTACTCAGCTGGCCCCTGGGCCCAGCCCCACCACCCCGGCCTCCACAGCTGGAGCGGCACGTGGTGCGGCCCCCGCCTCGAAGCCCTGAGCCCGACACACTCCCCTTGGCTGCTGGATCCGACCACCCCCTGCCCCGGGCCGCCTGGCTTCGCGTCTTCCAGCACCTCGGGCCGCGGGAGCTGTGTATCTGCATGCGAGTCTGCCGAACTTGGAGCCGCTGGTGCTATGACAAGCGTCTGTGGCCTCGAATGGACCTGAGCCGGCGGAAGTCACTGACCCCGCCCATGCTCAGTGGTGTGGTTCGCCGCCAGCCCCGTGCCCTGGACCTCAGCTGGACAGGTGTCTCCAAGAAGCAGCTCATGTGGCTTCTGAACCGACTACAAGGCCTGCAGGAGCTGGTGCTCTCTGGCTGCTCCTGGCTCTCTGTCTCTGCCCTGGGCTCAGCCCCACTGCCAGCCCTGCGGCTCCTGGACCTCCGCTGGATCGAGGATGTTAAAGACTCCCAGCTCCGGGAGTTGCTGCTGCCTCCACCAGACACCAAACCAGGGCAAACAGAGAGCCGTGGTCGGCTGCAGGGGGTGGCAGAACTGCGTCTGGCAGGTTTGGAGCTGACAGATGCCTCCCTGCGTCTCCTGCTGCGTCACGCACCCCAGCTGAGCGCCCTGGACCTGAGCCACTGCGCCCACGTCGGGGACCCCAGTGTTCACCTCCTCACGGCCCCCACGTCCCCACTCCGCGAGACCCTGGTGCACCTCAATCTTGCTGGTTGCCACCGCCTAACGGACCACTGCCTCCCGCTGTTCCGCCGCTGCCCTCGTCTACGCCGCCTAGACCTGCGCTCCTGCCGCCAGCTCTCACCCGAAGCTTGTGCCCGGCTGGCAGCTGCCGGGCCCCCTGGCCCCTTCCGCTGCCCTGAGGAGAAGCTGCTTCTCAAGGACAGCTAG