Inhibiting transcription of chromosomal DNA with antigene peptide nucleic acids

被引:136
|
作者
Janowski, BA
Kaihatsu, K
Huffman, KE
Schwartz, JC
Ram, R
Hardy, D
Mendelson, CR
Corey, DR [1 ]
机构
[1] Univ Texas, SW Med Ctr, Dept Pharmacol, Dallas, TX 75390 USA
[2] Univ Texas, SW Med Ctr, Dept Biochem, Dallas, TX 75390 USA
关键词
D O I
10.1038/nchembio724
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Synthetic molecules that recognize specific sequences within cellular DNA are potentially powerful tools for investigating chromosome structure and function. Here, we designed antigene peptide nucleic acids (agPNAs) to target the transcriptional start sites for the human progesterone receptor B (hPR-B) and A (hPR-A) isoforms at sequences predicted to be single-stranded within the open complex of chromosomal DNA. We found that the agPNAs were potent inhibitors of transcription, showing for the first time that synthetic molecules can recognize transcription start sites inside cells. Breast cancer cells treated with agPNAs showed marked changes in morphology and an unexpected relationship between the strictly regulated levels of hPR-B and hPR-A. We confirmed these phenotypes using siRNAs and antisense PNAs, demonstrating the power of combining antigene and antisense strategies for gene silencing. agPNAs provide a general approach for controlling transcription initiation and a distinct option for target validation and therapeutic development.
引用
收藏
页码:210 / 215
页数:6
相关论文
共 50 条
  • [1] Inhibiting transcription of chromosomal DNA with antigene peptide nucleic acids
    Bethany A Janowski
    Kunihiro Kaihatsu
    Kenneth E Huffman
    Jacob C Schwartz
    Rosalyn Ram
    Daniel Hardy
    Carole R Mendelson
    David R Corey
    Nature Chemical Biology, 2005, 1 : 210 - 215
  • [2] Silencing gene expression by targeting chromosomal DNA with antigene peptide nucleic acids and duplex RNAs
    Bethany A Janowski
    Jiaxin Hu
    David R Corey
    Nature Protocols, 2006, 1 : 436 - 443
  • [3] Silencing gene expression by targeting chromosomal DNA with antigene peptide nucleic acids and duplex RNAs
    Janowski, Bethany A.
    Hu, Jiaxin
    Corey, David R.
    NATURE PROTOCOLS, 2006, 1 (01) : 436 - 443
  • [4] Antigene peptide nucleic acids inhibit transcription of hepatitis B virus covalently closed circular DNA
    Zhao, X. L.
    Pan, X. B.
    Wang, Q.
    Han, J. C.
    Wei, L.
    JOURNAL OF CLINICAL VIROLOGY, 2015, 69 : 244 - 244
  • [5] Inhibiting gene expression at transcription start sites in chromosomal DNA with antigene RNAs
    Janowski, BA
    Huffman, KE
    Schwartz, JC
    Ram, R
    Hardy, D
    Shames, DS
    Minna, JD
    Corey, DR
    NATURE CHEMICAL BIOLOGY, 2005, 1 (04) : 216 - 222
  • [6] Inhibiting gene expression at transcription start sites in chromosomal DNA with antigene RNAs
    Bethany A Janowski
    Kenneth E Huffman
    Jacob C Schwartz
    Rosalyn Ram
    Daniel Hardy
    David S Shames
    John D Minna
    David R Corey
    Nature Chemical Biology, 2005, 1 : 216 - 222
  • [7] ANTISENSE AND ANTIGENE PROPERTIES OF PEPTIDE NUCLEIC-ACIDS
    HANVEY, JC
    PEFFER, NJ
    BISI, JE
    THOMSON, SA
    CADILLA, R
    JOSEY, JA
    RICCA, DJ
    HASSMAN, CF
    BONHAM, MA
    AU, KG
    CARTER, SG
    BRUCKENSTEIN, DA
    BOYD, AL
    NOBLE, SA
    BABISS, LE
    SCIENCE, 1992, 258 (5087) : 1481 - 1485
  • [8] ANTISENSE AND ANTIGENE PROPERTIES OF PEPTIDE NUCLEIC-ACIDS
    HANVEY, JC
    PEFFER, NJ
    BISI, JE
    THOMSON, SA
    CADILLA, R
    JOSEY, JA
    HASSMAN, CF
    BONHAM, MA
    AU, KG
    CARTER, SG
    BRUCKENSTEIN, DA
    BOYD, AL
    NOBLE, SA
    BABISS, LE
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1993, : 212 - 212
  • [9] Inhibiting gene expression with peptide nucleic acid (PNA)-peptide conjugates that target chromosomal DNA
    Hu, Jiaxin
    Corey, David R.
    BIOCHEMISTRY, 2007, 46 (25) : 7581 - 7589
  • [10] Inhibiting gene expression with locked nucleic acids (LNAs) that target chromosomal DNA
    Beane, Randall L.
    Ram, Rosalyn
    Gabillet, Sylvie
    Arar, Khalil
    Monia, Brett P.
    Corey, David R.
    BIOCHEMISTRY, 2007, 46 (25) : 7572 - 7580