Control of gene expression in viruses and protozoan parasites by antisense oligonucleotides

被引:0
|
作者
Toulme, JJ
Bourget, C
Compagno, D
Yurchenko, L
机构
关键词
antisense oligonucleotides; gene expression; translation; virus; trypanosomatid; mini-exon sequence;
D O I
暂无
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
Chemically-modified oligonucleotides are now routinely used to prevent gene expression in cell-free media and in cultured cells. The binding of an antisense sequence to a complementary RNA target may lead to the selective inhibition of the encoded information. This may occur at different levels: splicing; transport of the mature RNA from the nucleus to the cytoplasm; translation. Antisense oligonucleotides constitute an interesting tool to shed some light on gene function. They are also potential new therapeutic agents against pathogenic organisms. This review discusses the rules that guide the design of an antisense oligomer and the choice of a target sequence. Examples of the potential use of antisense oligonucleotides in the fields of virology and parasitology, in particular in relation to trypanosomatids, are described.
引用
收藏
页码:S45 / S59
页数:15
相关论文
共 50 条
  • [21] Activation of Frataxin Protein Expression by Antisense Oligonucleotides Targeting the Mutant Expanded Repeat
    Li, Liande
    Shen, Xiulong
    Liu, Zhongtian
    Norrbom, Michaela
    Prakash, Thazha P.
    O'Reilly, Daniel
    Sharma, Vivek K.
    Damha, Masad J.
    Watts, Jonathan K.
    Rigo, Frank
    Corey, David R.
    NUCLEIC ACID THERAPEUTICS, 2018, 28 (01) : 23 - 33
  • [22] Antisense expression increases gene expression variability and locus interdependency
    Xu, Zhenyu
    Wei, Wu
    Gagneur, Julien
    Clauder-Muenster, Sandra
    Smolik, Milosz
    Huber, Wolfgang
    Steinmetz, Lars M.
    MOLECULAR SYSTEMS BIOLOGY, 2011, 7
  • [23] Synthesis of Reactive Oligonucleotides for Gene Targeting and Their Application to Gene Expression Regulation
    Nagatsugi, Fumi
    Sasaki, Shigeki
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 2010, 83 (07) : 744 - 755
  • [24] Antisense technology: A selective tool for gene expression regulation and gene targeting
    Sahu, N. K.
    Shilakari, G.
    Nayak, A.
    Kohli, D. V.
    CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2007, 8 (05) : 291 - 304
  • [25] Monitoring of antisense effects of oligonucleotides targeted to the neuropeptide Y Y-1 receptor gene
    Hanze, J
    Worgall, S
    Rascher, W
    EUROPEAN JOURNAL OF PHARMACOLOGY, 1997, 330 (01) : 87 - 92
  • [26] Targeting Repeated Regions Unique to a Gene Is an Effective Strategy for Discovering Potent and Efficacious Antisense Oligonucleotides
    Pedersen, Lykke
    Hagedorn, Peter
    Vikesa, Jonas
    Karlsen, Signe Tang
    Saermark, Pia
    Koch, Troels
    Lindow, Morten
    MOLECULAR THERAPY-NUCLEIC ACIDS, 2020, 19 : 124 - 131
  • [27] Inhibition of the expression of oncogene SRSF3 by blocking an exonic splicing suppressor with antisense oligonucleotides
    Guo, Jihua
    Che, Xiaoxuan
    Wang, Xiaole
    Jia, Rong
    RSC ADVANCES, 2018, 8 (13): : 7159 - 7163
  • [28] Consequences of the inhibition of Hdm2 expression in human osteosarcoma cells using antisense oligonucleotides
    Geiger, T
    Hüsken, D
    Weiler, J
    Natt, F
    Woods-Cook, KA
    Hall, J
    Fabbro, D
    ANTI-CANCER DRUG DESIGN, 2000, 15 (06): : 423 - 430
  • [29] Efficient Synthesis of Light-Triggered Circular Antisense Oligonucleotides Targeting Cellular Protein Expression
    Yang, Linlin
    Kim, Hyun Bum
    Sul, Jai-Yoon
    Yeldell, Sean B.
    Eberwine, James H.
    Dmochowski, Ivan J.
    CHEMBIOCHEM, 2018, 19 (12) : 1250 - 1254
  • [30] The choice of negative control antisense oligonucleotides dramatically impacts downstream analysis depending on the cellular background
    Ducoli, Luca
    Agrawal, Saumya
    Hon, Chung-Chau
    Ramilowski, Jordan A.
    Sibler, Eliane
    Tagami, Michihira
    Itoh, Masayoshi
    Kondo, Naoto
    Abugessaisa, Imad
    Hasegawa, Akira
    Kasukawa, Takeya
    Suzuki, Harukazu
    Carninci, Piero
    Shin, Jay W.
    de Hoon, Michiel J. L.
    Detmar, Michael
    BMC GENOMIC DATA, 2021, 22 (01):