• Title/Summary/Keyword: antisense RNA

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Effects of different target sites on antisense RNA-mediated regulation of gene expression

  • Park, Hongmarn;Yoon, Yeongseong;Suk, Shinae;Lee, Ji Young;Lee, Younghoon
    • BMB Reports
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    • v.47 no.11
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    • pp.619-624
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    • 2014
  • Antisense RNA is a type of noncoding RNA (ncRNA) that binds to complementary mRNA sequences and induces gene repression by inhibiting translation or degrading mRNA. Recently, several small ncRNAs (sRNAs) have been identified in Escherichia coli that act as antisense RNA mainly via base pairing with mRNA. The base pairing predominantly leads to gene repression, and in some cases, gene activation. In the current study, we examined how the location of target sites affects sRNA-mediated gene regulation. An efficient antisense RNA expression system was developed, and the effects of antisense RNAs on various target sites in a model mRNA were examined. The target sites of antisense RNAs suppressing gene expression were identified, not only in the translation initiation region (TIR) of mRNA, but also at the junction between the coding region and 3' untranslated region. Surprisingly, an antisense RNA recognizing the upstream region of TIR enhanced gene expression through increasing mRNA stability.

New Antisense RNA Systems Targeted Against Plant Pathogens

  • Matousek, J.;Vrba, L.;Kuchar, M.;Pavingerova, D.;Orctova, L.;Ptacek, J.;Schubert, J.;Steger, G.;Beier, H.;Riesner, D.
    • Korean Journal of Plant Tissue Culture
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    • v.27 no.5
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    • pp.379-385
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    • 2000
  • tRNA and 7SL RNA based antisense vehicles were prepared by inserting conserved anti-viral and anti-viroid domains. Anti-PVS coat protein leader sequence (ACPL) and antistructural antihairpin domain of PSTVd (AHII) were inserted in tRNA cassette; anti- zing finger domain of PVS, AHII and anti hop latent viroid ribozyme were inserted in 7SL RNA gene isolated from A. thaliana. These constructs were shown to be transcribed both, in in vitro and in in vivo conditions. However, it followed from our work that closely linked position of PoIII reference genes and PoIIII antisense genes within T-DNA lead to the impairment of RNA expression in transgenic plants. To assay in vivo transcription of antisense genes, hairy root potato cultures were established using h. tumefaciens A4-24 bearing both, Ri plasmid and PoIII-promoterless plant expression vectors with antisense RNA genes. Expression of antisense RNA in transgenic potato tissues was proven by specific RT-PCR reactions.

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Artificial antisense RNAs silence lacZ in E. coli by decreasing target mRNA concentration

  • Alessandra, Stefan;Alessandro, Tonelli;Flavio, Schwarz;Alejandro, Hochkoeppler
    • BMB Reports
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    • v.41 no.8
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    • pp.568-574
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    • 2008
  • Antisense RNA molecules are powerful tools for controlling the expression of specific genes but their use in prokaryotes has been limited by their unpredictable antisense effectiveness. Moreover, appreciation of the molecular mechanisms associated with silencing in bacteria is still restricted. Here we report our attempts to define an effective antisense strategy in E. coli, and to dissect the observed silencing process. Antisense constructs complementary to different regions of lacZ were investigated, and silencing was observed exclusively upon expression of antisense RNA hybridising the 5'UTR of lac messenger. The level of lacZ mRNA was reduced upon expression of this antisense construct, and the silencing competence was found to be closely associated with its stability. These observations may help in the design of antisense molecules directed against prokaryotic genes.

Inheritance and Expression of Antisense Polygalacturonase Gene in Transgenic Tomato (Antisense Polygalacturonase 유전자 형질전환 토마토의 후대 발현 분석)

  • 김영미;한장호;김용환;이성곤;황영수
    • Korean Journal of Plant Tissue Culture
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    • v.25 no.2
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    • pp.131-134
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    • 1998
  • $\textrm{T}_{5}$ progeny of one transgenic tomato line (To9) carrying antisense polygalacturonase (PG) cDNA was generated by selfing. Five $\textrm{T}_{5}$ plants were used to analyse in detail. The PG antisense gene was stably inherited through fifth generations. In all five $\textrm{T}_{5}$ plants, expression of the antisense transcripts were detected. In consequence, it led to a reduction of the PG enzyme activity in ripe fruit to between 37% and 65% that of normal. In two plants the expression of endogenous PG gene was inhibited in ripe fruit.

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Effects on the Initiation of Simian Virus 40 DNA Replication by Antisense RNA

  • Jeong, Bo-Won;Kang, Hyen-Sam
    • BMB Reports
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    • v.28 no.6
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    • pp.538-545
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    • 1995
  • When DNA replication of simian virus 40 (SV40) is initiated on the replication origin, the regions containing the initiation sites of DNA primase, which participates in the transient RNA primer synthesis for formation of Okazaki fragments in the lagging strand, were chosen as the target sites of antisense RNA for studies of the inhibition of SV40 DNA replication. Four recombinant transcription vectors, pUC-PrI, pUC-PrII, pGEM-PrBS, and pGEM-PrSN, coding antisense RNA, were constructed. Four antisense RNAs (named as I, II, BS, and SN) having the size of 18, 19,58, and 123 nts, respectively, were made from the transcription vectors by in vitro transcription. And then, antisense RNA in the concentration of 2${\mu}m$ were added to COS cells transfected with pATSV-W which is a recombinant plasmid containing the SV40 origin of replication. The inhibitory extent of DNA replication was measured by DpnI resistance and was confirmed by measurement of transient RNA primer synthesis. The result shows that six combinations of antisense RNA (I, II, BS, SN, I+SN, and BS+SN) lead to the inhibition of SV40 DNA replication by up to 85%.

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The Application of Antisense RNA Technology for Plant Secondary Metabolism (식물이차대사과정에 antisense RNA기법의 응용)

  • Kim, Yong-Kyung;Xu, Hui;Kim, Young-Seon;Kim, Eung-Hwi;Park, Sang-Un
    • Korean Journal of Agricultural Science
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    • v.34 no.1
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    • pp.47-52
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    • 2007
  • 유전자의 발현이 다양한 형태로 억제되는 것을 silencing이라고 한다. 유전자 발현억제 방법 중 antisense RNA는 자연 상태의 mRNA에 역상보적인 RNA 분자로서 형질전환된 세포에서 그 mRNA의 전이을 억제하는 데 이용된다. RNA분자에 대하여 상보적 염기배열을 갖는 RNA는 분자간 결합을 연결하여 RNA의 기능 발현에 억제적으로 작용한다고 생각된다. 미생물에 나타나는 유전자발현 제어기작으로서 어느 특정한 mRNA에 대하여 상보적인 RNA가 유전자 발현의 억제인자로서 작용하고 있는 예가 몇 가지 알려져 있다. 이러한 경우 antisense RNA는 mRNA 상의 전이개시영역과 상보적 배열을 하고 있고, 전이과정을 방해한다고 추정되고 있지만 작용기작의 상세한 내용은 아직 명확하지가 않다. 한편 안티센스RNA는 임의의 표적유전자에 대하여 인위적으로 제작할 수가 있기 때문에 인위적인 유전자발현제어의 한 방법으로 이용되고 있다. 특정한 유전자에 대한 antisense RNA를, 발현하는 유전자를 인위적으로 제작하여 세포내에 도입하면 표적유전자의 발현을 특이적으로 억제 제어할 수 있는 것이 기대되어, 다양한 생물체를 대상으로 하여 많은 시도가 이루어지고 있으며 몇 가지 성공적인 보고가 있다. 그 중 식물이차대사과정에 관련 유전자를 대상으로 antisense RNA 기법으로 유전자의 발현억제와 이차대사산물 생산조절에 관한 연구를 이 논문에서 조사하고 정리하였다.

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Expression of Antisense Polygalacturonase Gene in Transgenic Tomato (형질전환 토마토에서 Antisense Polygalacturonase 유전자의 발현)

  • 김영미;김용환;이성갑;임명호;송경수
    • Korean Journal of Plant Tissue Culture
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    • v.22 no.6
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    • pp.351-355
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    • 1995
  • A truncated Polygalacturonase (PG) cDNA was fused in reverse orientation to the CaMV 35S promoter of the binary vector pCA643, and introduced into tomato cells by Agrobaderium - mediated transformation. Transformed cells were selected using kanamycin as select agent then regenerated into plants. After selfed, one transgenic line (T9), was germinated and grown on MS medium containing 1 mg/mL of kanamycin Genomic Southern analysis of a T9 progeny with labelled PG2 cDNA probe showed a single antisense PC fragment as well as the endogenous PG2 gene, suggesting that PC antisense gene was integrated into tomato genome. Northern blot analysis demonstrated that the antisense RNA was produced from the transgene at much tiger level than the endogenous PG2 gene. Polygalacturonase activity analysis of the fruit from transgenic plants demonstrated that the antisense transgene expression caused 4 to 60% reduction of endogenous PG activity.

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Expression of Antisense Mouse Obese Gene in Transgenic Mice (형질전환 생쥐에서 Antisense 비만유전자의 발현)

  • Kwon, B.S.;Hong, K.H.;Jahng, J.W.;Lee, H.T.;Chung, K.S.
    • Korean Journal of Animal Reproduction
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    • v.24 no.4
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    • pp.419-428
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    • 2000
  • Leptin, the product of obese (ob) gene, is an adipocyte-derived satiety factor that plays a major role in the regulation of food intake, energy homeostasis, body weight, reproductive physiology and neuropeptide secretion. The present study was designed to generate transgenic mice expressing antisense mouse ob (mob) gene. Total RNA was extracted from the adipose tissues of mouse, then reverse transcription was performed. The 303 and 635 bp fragments of anti I and II cDNAs were amplified from mob cDNAs by PCR. The two mob cDNAs were reversely ligated into between adipose tissue specific aP2 promote and SV40 poly(A) site. Transgenic mice carrying two different kinds of antisense mob transgenes were generated by DNA microinjection into pronucleus. Total 14 transgenic mice were born, and the 4 and 5 founder lines of the transgenic mice with anti I and II transgenes were respectively established. Antisense mRNA expression was detected in transgenic F$_1$ mice by RT-PCR analysis. This result suggests that the transgenic mice expressing antisense mob mRNA may be useful as an animal disease model to be obesity caused by decreased amount of leptin secretion.

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Antisense Oligonucleotide Therapeutics for Cystic Fibrosis: Recent Developments and Perspectives

  • Young Jin Kim;Adrian R. Krainer
    • Molecules and Cells
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    • v.46 no.1
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    • pp.10-20
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    • 2023
  • Antisense oligonucleotide (ASO) technology has become an attractive therapeutic modality for various diseases, including Mendelian disorders. ASOs can modulate the expression of a target gene by promoting mRNA degradation or changing pre-mRNA splicing, nonsense-mediated mRNA decay, or translation. Advances in medicinal chemistry and a deeper understanding of post-transcriptional mechanisms have led to the approval of several ASO drugs for diseases that had long lacked therapeutic options. For instance, an ASO drug called nusinersen became the first approved drug for spinal muscular atrophy, improving survival and the overall disease course. Mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene cause cystic fibrosis (CF). Although Trikafta and other CFTR-modulation therapies benefit most CF patients, there is a significant unmet therapeutic need for a subset of CF patients. In this review, we introduce ASO therapies and their mechanisms of action, describe the opportunities and challenges for ASO therapeutics for CF, and discuss the current state and prospects of ASO therapies for CF.

Efficient Target Site Selection for an RNA-cleaving DNAzyme through Combinatorial Library Screening

  • Kim, Ki-Sun;Choi, Woo-Hyung;Gong, Soo-Jeong;Oh, Sang-taek;Kim, Jae-Hyun;Kim, Dong-Eun
    • Bulletin of the Korean Chemical Society
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    • v.27 no.5
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    • pp.657-662
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    • 2006
  • Identification of accessible sites in targeted RNAs is a major limitation to the effectiveness of antisense oligonucleotides. A class of antisense oligodeoxynucleotides, known as the “10-23” DNA enzyme or DNAzyme, which is a small catalytic DNA, has been shown to efficiently cleave target RNA at purine-pyrimidine junctions in vitro. We have designed a strategy to identify accessible cleavage sites in the target RNA, which is hepatitis C virus nonstructural gene 3 (HCV NS3) RNA that encodes viral helicase and protease, from a pool of random DNAzyme library. A pool of DNAzymes of 58 nucleotides-length that possess randomized annealing arms, catalytic core sequence, and fixed 5'/3'-end flanking sequences was designed and screened for their ability to cleave the target RNA. The screening procedure, which includes binding of DNAzyme pool to the target RNA under inactive condition, selection and amplification of active DNAzymes, incubation of the selected DNAzymes with the target RNA, and target site identification on sequencing gels, identified 16 potential cleavage sites in the target RNA. Corresponding DNAzymes were constructed for the selected target sites and were tested for RNA-cleavage in terms of kinetics and accessibility. These selected DNAzymes were effective in cleaving the target RNA in the presence of $Mg^{2+}$. This strategy can be applicable to identify accessible sites in any target RNA for antisense oligonucleotides-based gene inactivation methods.