• Title/Summary/Keyword: Endogenous gene expression

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Human Endogenous Retrovirus K (HERV-K) can drive gene expression as a promoter in Caenorhabditis elegans

  • Durnaoglu, Serpen;Kim, Heui-Soo;Ahnn, Joohong;Lee, Sun-Kyung
    • BMB Reports
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    • v.53 no.10
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    • pp.521-526
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    • 2020
  • Endogenous retroviruses (ERVs) are retrotransposons present in various metazoan genomes and have been implicated in metazoan evolution as well as in nematodes and humans. The long terminal repeat (LTR) retrotransposons contain several regulatory sequences including promoters and enhancers that regulate endogenous gene expression and thereby control organismal development and response to environmental change. ERVs including the LTR retrotransposons constitute 8% of the human genome and less than 0.6% of the Caenorhabditis elegans (C. elegans) genome, a nematode genetic model system. To investigate the evolutionarily conserved mechanism behind the transcriptional activity of retrotransposons, we generated a transgenic worm model driving green fluorescent protein (GFP) expression using Human endogenous retroviruses (HERV)-K LTR as a promoter. The promoter activity of HERV-K LTR was robust and fluorescence was observed in various tissues throughout the developmental process. Interestingly, persistent GFP expression was specifically detected in the adult vulva muscle. Using deletion constructs, we found that the region from positions 675 to 868 containing the TATA box was necessary for promoter activity driving gene expression in the vulva. Interestingly, we found that the promoter activity of the LTR was dependent on che-1 transcription factor, a sensory neuron driver, and lin-15b, a negative regulator of RNAi and germline gene expression. These results suggest evolutionary conservation of the LTR retrotransposon activity in transcriptional regulation as well as the possibility of che-1 function in non-neuronal tissues.

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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Circular RNAs in and out of Cells: Therapeutic Usages of Circular RNAs

  • Mingyu Ju;Dayeon Kim;Geurim Son;Jinju Han
    • Molecules and Cells
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    • v.46 no.1
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    • pp.33-40
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    • 2023
  • RNAs are versatile molecules that are primarily involved in gene regulation and can thus be widely used to advance the fields of therapeutics and diagnostics. In particular, circular RNAs which are highly stable, have emerged as strong candidates for use on next-generation therapeutic platforms. Endogenous circular RNAs control gene regulatory networks by interacting with other biomolecules or through translation into polypeptides. Circular RNAs exhibit cell-type specific expression patterns, which can be altered in tissues and body fluids depending on pathophysiological conditions. Circular RNAs that are aberrantly expressed in diseases can function as biomarkers or therapeutic targets. Moreover, exogenous circular RNAs synthesized in vitro can be introduced into cells as therapeutic molecules to modulate gene expression networks in vivo. Depending on the purpose, synthetic circular RNA sequences can either be identical to endogenous circular RNA sequences or artificially designed. In this review, we introduce the life cycle and known functions of intracellular circular RNAs. The current stage of endogenous circular RNAs as biomarkers and therapeutic targets is also described. Finally, approaches and considerations that are important for applying the available knowledge on endogenous circular RNAs to design exogenous circular RNAs for therapeutic purposes are presented.

Regulation of Gene Expression in Higher Plant (고등식물의 유전자 발현의 조절)

  • 심웅섭
    • Proceedings of the Botanical Society of Korea Conference
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    • 1987.07a
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    • pp.241-260
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    • 1987
  • The regulatory mechanisms of gene expression in higher plant were not ascertained in detail because the genome size is very large and complex. However, the above-mentioned study is remarkably progressed in parallel with development of DNA recombinant technology and plant vector system. Some research results connected with the mechanisms could be summarized as follows. 1. Many plant genes including chloroplast genes are cloned. 2. The structures of some regulatory regions of gene expression are determined, and it is confirmed that new regulatory units are made by transposable elements. 3. Plant gene expression is regulated not only at transcriptional level but also at translational level. 4. The factors that regulate plant gene expression could be divided as two categorys. One is endogenous elements including the structural change of chromatin during development stage and tissue differentiation. The other is environmental stimulations such as air, water, heat, salts and light. However, some sufficient research-aid fund is essential in order to study the regulatory mechanisms of gene expression more systematically.

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Availability of the lacZ gene as a Reporter Gene for Production of Transgenic Artemia franciscana (형질전환 아르테미아(Artemia franciscana) 생산을 위한 리포터 유전자로서 lacZ 유전자의 유용성 검토)

  • Jung, Hyo Sun;Kim, Dong Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.46 no.6
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    • pp.901-906
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    • 2013
  • We examined the availability of the lacZ gene (${\beta}$-galactosidase gene) as a reporter of foreign gene transfer in the cysts of Artemia franciscana (A. franciscana) to conduct a risk assessment of living genetically modified organisms (LMOs) in the marine ecosystem. The LacZ gene was transferred to decapsulated cysts by particle bombardment, and its insertion and expression were assessed by means of polymerase chain reaction (PCR) and X-gal staining. X-gal staining indicated lacZ expression in all A. franciscana examined (including the control group), which exhibited not only negative but also positive PCR amplification. Endogenous ${\beta}$-galactosidase is highly active in the whole body of A. franciscana during all stages of the life cycle. Thus, the lacZ gene is unsuitable as a reporter for foreign gene transfer in A. franciscana cysts, because it is difficult to discriminate between exogenous and endogenous ${\beta}$-galactosidase activity.

Human Endogenous Retroviruses as Gene Expression Regulators: Insights from Animal Models into Human Diseases

  • Durnaoglu, Serpen;Lee, Sun-Kyung;Ahnn, Joohong
    • Molecules and Cells
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    • v.44 no.12
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    • pp.861-878
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    • 2021
  • The human genome contains many retroviral elements called human endogenous retroviruses (HERVs), resulting from the integration of retroviruses throughout evolution. HERVs once were considered inactive junk because they are not replication-competent, primarily localized in the heterochromatin, and silenced by methylation. But HERVs are now clearly shown to actively regulate gene expression in various physiological and pathological conditions such as developmental processes, immune regulation, cancers, autoimmune diseases, and neurological disorders. Recent studies report that HERVs are activated in patients suffering from coronavirus disease 2019 (COVID-19), the current pandemic caused by SARS-CoV-2 (severe acute respiratory syndrome coronavirus 2) infection. In this review, we describe internal and external factors that influence HERV activities. We also present evidence showing the gene regulatory activity of HERV LTRs (long terminal repeats) in model organisms such as mice, rats, zebrafish, and invertebrate models of worms and flies. Finally, we discuss several molecular and cellular pathways involving various transcription factors and receptors, through which HERVs affect downstream cellular and physiological events such as epigenetic modifications, calcium influx, protein phosphorylation, and cytokine release. Understanding how HERVs participate in various physiological and pathological processes will help develop a strategy to generate effective therapeutic approaches targeting HERVs.

Effects of Extracellular Signaling on the Endogenous Expression of Self-Renewal-Stimulating Factor Genes in Mouse Embryonic Stem Cells

  • Gong, Seung-Pyo;Lee, Seung-Tae
    • Reproductive and Developmental Biology
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    • v.36 no.1
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    • pp.13-19
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    • 2012
  • In order to provide the basis for developing practical mouse embryonic stem cells (mESCs) culture method, how the endogenous level of self-renewal-stimulating factor genes was altered in the mESCs by different extracellular signaling was investigated in this study. For different extracellular signaling, mESCs were cultured in 2 dimension (D), 3D and integrin-stimulating 3D culture system in the presence or absence of leukemia inhibitory factor (LIF) and transcriptional level of $Lif$, $Bmp4$ and $Wnt3a$ was evaluated in the mESCs cultured in each system. The expression of three genes was significantly increased in 3D system relative to 2D system under LIF-containing condition, while only $Wnt3a$ expression was increased by 3D culture under LIF-free condition. Stimulation of integrin signaling in mESCs within 3D system with exogenous LIF significantly up-regulated transcriptional level of $Bmp4$, but did not induce transcriptional regulation of $Lif$ and $Wnt3a$. In the absence of LIF inside 3D system, the expression of $Lif$ and $Bmp4$ was significantly increased by integrin signaling, while it significantly decreased $Wnt3a$ expression. Finally, the signal from exogenous LIF significantly caused increased expression of $Lif$ in 2D system, decreased expression of $Bmp4$ in both 2D and 3D system, and decreased expression of $Wnt3a$ in integrin-stimulating 3D system. From these results, we identified that endogenous expression level of self-renewal-stimulating factor genes in mESCs could be effectively regulated through artificial and proper manipulation of extracellular signaling. Moreover, synthetic 3D niche stimulating endogenous secretion of self-renewal-stimulating factors will be able to help develop growth factor-free maintenance system of mESCs.

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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EARLY SCREENING OF EXPRESSION OF SV40 DRIVEN LACZ INTRODUCED INTO BOVINE EMBRYOS

  • Nakamura, A.;Okumura, J.;Muramatsu, T.
    • Asian-Australasian Journal of Animal Sciences
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    • v.8 no.5
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    • pp.449-454
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    • 1995
  • The present study was conducted to assess gene expression of bacterial lacZ driven by the SV40 promoter at early developmental stages of bovine embryos. The lacZ gene was linearized with BamHI digestion and introduced into the pronucleus by microinjection at 20 hrs after the commencement of in vitro fertilization. Intact bovine blastocysts were not stained with X-Gal, suggesting that there is no endogenous beta-galactosidase activity in these blastocysts. In contrast, the bovine blastocyst cells microinjected with the lacZ gene exerted a characteristic greenish-blue color originating from the bacterial beta-galactosidase activity, albeit at a low rate, i.e. 2.1% of the total fertilized oocytes injected. It was concluded, therefore, that the lacZ gene driven by the SV40 promoter could be used for an indirect screening method in which the presence of transgene is evaluated from the product of transgene expression.

Intragenic Control of Expression of a Rice MADS Box Gene OsMADS1

  • Jeon, Jong-Seong;Lee, Sichul;An, Gynheung
    • Molecules and Cells
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    • v.26 no.5
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    • pp.474-480
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    • 2008
  • OsMADS1 is a rice MADS box gene necessary for floral development. To identify the key cis-regulatory regions for its expression, we utilized transgenic rice plants expressing GUS fusion constructs. Histochemical analysis revealed that the 5.7-kb OsMADS1 intragenic sequences, encompassing exon 1, intron 1, and a part of exon 2, together with the 1.9-kb 5' upstream promoter region, are required for the GUS expression pattern that coincides with flower-preferential expression of OsMADS1. In contrast, the 5' upstream promoter sequence lacking this intragenic region caused ectopic expression of the reporter gene in both vegetative and reproductive tissues. Notably, incorporation of the intragenic region into the CaMV35S promoter directed the GUS expression pattern similar to that of the endogenous spatial expression of OsMADS1 in flowers. In addition, our transient gene expression assay revealed that the large first intron following the CaMV35S minimal promoter enhances flower-preferential expression of GUS. These results suggest that the OsMADS1 intragenic sequence, largely intron 1, contains a key regulatory region(s) essential for expression.