Inhibition of HIV-1 gene expression by novel macrophage-tropic DNA enzymes targeted to cleave HIV-1 TAT/Rev RNA

被引:33
|
作者
Unwalla, H [1 ]
Banerjea, AC [1 ]
机构
[1] Natl Inst Immunol, Virol Lab, New Delhi 110067, India
关键词
gene silencing; gene therapy; HIV-1; replication;
D O I
10.1042/0264-6021:3570147
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
Many regions of the HIV-1 genome have been targeted in earlier studies by RNA-cleaving DNA enzymes possessing the 10-23 catalytic motif, and efficient inhibition of HIV-1 gene expression was reported. All these studies employed charged synthetic lipids to introduce the catalytic DNA into the mammalian cells, which severely limits its practical application and usefulness in vivo. Taking advantage of the ability of G residues to interact directly with the scavenger receptors on the macrophages, we synthesized a DNA enzyme 5970 that contained 10 G residues at the 3 ' end. With the aim of improving the intracellular stability of the DNA enzyme 5970, we added two short stretches of stem-loop structures that were 12 bases long on either side of the DNA enzyme 5970. DNA enzyme 5970 without the poly-G tracts cleaved the synthetic RNA of HIV-1 TAT/ReV, two important regulatory proteins of HIV, very efficiently in a sequence-specific manner. Addition of 10 G residues at the 3 ' end of the DNA enzyme affected the cleavage efficiency only marginally whereas the same DNA enzyme with stem-loop structures on either end was significantly less efficient. The DNA enzyme with the poly-G tract at its 3 ' end was taken up specifically by a human macrophage-specific cell line directly in the absence of Lipofectin and was also able to inhibit HIV-1 gene expression in a transient-expression system as well as when challenged with the virus. The potential applications of these novel macrophage-tropic DNA enzymes are discussed.
引用
收藏
页码:147 / 155
页数:9
相关论文
共 50 条
  • [21] Inhibition of HIV-1 replication by novel lentiviral vectors expressing transdominant Rev and HIV-1 env antisense
    MR Mautino
    RA Morgan
    [J]. Gene Therapy, 2002, 9 : 421 - 431
  • [22] Inhibition of HIV-1 replication by novel lentiviral vectors expressing transdominant Rev and HIV-1 env antisense
    Mautino, MR
    Morgan, RA
    [J]. GENE THERAPY, 2002, 9 (07) : 421 - 431
  • [23] Potent neutralization of a macrophage-tropic HIV-1 isolate by antibodies against the V1/V2 domain of HIV-1 gp120
    Honnen, WJ
    Wu, ZW
    Kayman, SC
    Pinter, A
    [J]. VACCINES 96 - MOLECULAR APPROACHES TO THE CONTROL OF INFECTIOUS DISEASES, 1996, : 289 - 297
  • [24] Induction of OGG1 gene expression by HIV-1 tat
    Imai, K
    Nakata, K
    Kawai, K
    Hamano, T
    Mei, N
    Kasai, H
    Okamoto, T
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (29) : 26701 - 26713
  • [25] A NOVEL PROTEIN OF HIV-1, TEV, SHARES SEQUENCES WITH BOTH TAT AND REV
    FELBER, BK
    BENKO, DM
    SCHWARTZ, S
    PAVLAKIS, GN
    [J]. AIDS RESEARCH AND HUMAN RETROVIRUSES, 1990, 6 (01) : 60 - 60
  • [26] HIV-1 Rev can specifically interact with MMTV RNA and upregulate gene expression
    Dangerfield, JA
    Hohenadl, C
    Egerbacher, M
    Kodajova, P
    Salmons, B
    Günzburg, WH
    [J]. GENE, 2005, 358 : 17 - 30
  • [27] FUNCTIONAL RELEVANCE OF THE HIV-1 TAT-DDX3 INTERACTION IN THE REGULATION OF HIV-1 GENE EXPRESSION
    Murphy, M.
    Jarboui, M.
    Schroeder, M.
    Gautier, V. W.
    [J]. IRISH JOURNAL OF MEDICAL SCIENCE, 2011, 180 : S7 - S7
  • [28] HIV-1 tat and rev upregulates osteoclast bone resorption
    Chew, Nicholas
    Tan, Eemin
    Li, Lei
    Lim, Ryan
    [J]. JOURNAL OF THE INTERNATIONAL AIDS SOCIETY, 2014, 17 : 145 - 146
  • [29] REGULATION OF HIV-1 AND HIV-2 LTR-DIRECTED EXPRESSION BY THE HIV-1 TAT GENE-PRODUCT
    JAKOBOVITS, A
    MUESING, MA
    CAPON, DJ
    [J]. CONTROL OF HUMAN RETROVIRUS GENE EXPRESSION, 1988, : 37 - 43
  • [30] Expression and detection of macrophage-tropic HIV-1 gp120 in the brain using conformation-dependent antibodies
    Altmeyer, R
    Mordelet, E
    Girard, M
    Vidal, C
    [J]. VIROLOGY, 1999, 259 (02) : 314 - 323