• 제목/요약/키워드: transcriptional activator

검색결과 139건 처리시간 0.028초

HDAC3 acts as a negative regulator of angiogenesis

  • Park, Deokbum;Park, Hyunmi;Kim, Youngmi;Kim, Hyuna;Jeoung, Dooil
    • BMB Reports
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    • 제47권4호
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    • pp.227-232
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    • 2014
  • Histone deacetylase-3 (HDAC3) is involved in cellular proliferation, apoptosis and transcriptional repression. However, the role of HDAC3 in angiogenesis remains unknown. HDAC3 negatively regulated the expression of angiogenic factors, such as VEGF and plasminogen activator inhibitor-1 (PAI-1). HDAC3 showed binding to promoter sequences of PAI-1. HDAC3 activity was necessary for the expression regulation of PAI-1 by HDAC3. VEGF decreased the expression of HDAC3, and the down-regulation of HDAC3 enhanced endothelial cell tube formation. HDAC3 negatively regulated tumor-induced angiogenic potential. We show the novel role of HDAC3 as a negative regulator of angiogenesis.

Repression of p21 Expression by Hepatitis B Virus X Protein via a p53-Independent Pathway

  • 안지영;장경립
    • 한국생명과학회:학술대회논문집
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    • 한국생명과학회 2000년도 제30회 학술심포지엄
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    • pp.39-43
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    • 2000
  • HBV는 인체에 감염하여 간염, 간경변 및 간암을 유발하는 hepadnaviruses의 일종으로써 임상적으로 매우 중요한 바이러스이다. 그러나 이 바이러스에 의한 간암(HCC)의 발생 메커니즘은 아직 불확실하다. 최근에는 HBV의 X 단백질(HBx)이 간암 발생에 중요한 역할을 수행하는 것으로 보고되고 있다. HBx 단백질은 전사 활성인자(transcriptional activator)로써 숙주세포의 유전자발현에 영향을 미치어 세포증식 및 분화에 영향을 줄 수 있다. 본 연구에서는 HBx 단백질이 NIH 3T3 cell의 증식 및 형질전환에 미치는 영향을 조사하였다. HBx 단백질을 발현하는 세포주는 정상세포에 비하여 증식 속도가 2배 정도 빠르며, soft agar assay 결과에 의하면 대조군과 비교하여 더 많은 수의 colony를 형성하였다. 또한, 이들 HBx 발현 세포들은 접촉 저해 능력을 상실하여 HBx가 세포 형질 전환 능력을 가짐을 알수 있다 또한 HBx 발현 세포주에 있어서 p21의 RNA 및 protein수준이 정상세포에 비하여 낮으므로 HBx에 의한 증식 촉진 및 세포 형질 전환이 p21을 매개하여 이루어 짐을 알 수 있었다. HBx에 의한 p21 유전자의 발현 감소는 p21의 전사 수준에서 이루어지며 이는 p53-비의존적 경로에 의하여 이루어졌다.

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Mitochondria Control Protein as a Novel Therapeutic Target for Metabolic Syndrome

  • KimPak, Young-Mi
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2008년도 Proceedings of the Convention
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    • pp.23-30
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    • 2008
  • Mitochondria biogenesis requires a coordination of two genomes, nuclear DNA (nDNA) and mitochondrial DNA (mtDNA). Disruption of mitochondria function leads to a loss of mitochondrial membrane potential and ATP generating capacity and consequently results in chronic degenerative diseases including insulin resistance, metabolic syndrome and neurodegenerative diseases. Although PPAR-${\gamma}$ coactivator-$1{\alpha}$ (PGC-$1{\alpha}$) was discovered as a central regulator of mitochondria biogenesis and a transcriptional co-activator of nuclear respiratory factor (NRF) and mitochondrial transcription factor A (Tfam), the expressions of PGC-$1{\alpha}$, NRF and Tfam were not significantly altered in tissues showing abnormal mitochondria functions. This observation suggests that there should be another regulator(s) for mitochondria function. Here, we demonstrate microRNAs (miRNAs) can modulate mitochondria function. Overexpression of microRNA dissipated mitochondrial membrane potential and increased ROS production in vitro and in vivo. It will be discussed the target of microRNA and its role in metabolic syndrome.

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Down-Regulation of Sox11 Is Required for Efficient Osteogenic Differentiation of Adipose-Derived Stem Cells

  • Choi, Mi Kyung;Seong, Ikjoo;Kang, Seon Ah;Kim, Jaesang
    • Molecules and Cells
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    • 제37권4호
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    • pp.337-344
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    • 2014
  • Adipose-derived stem cells represent a type of mesenchymal stem cells with the attendant capacity to self-renew and differentiate into multiple cell lineages. We have performed a microarray-based gene expression profiling of osteogenic differentiation and found that the transcription factor Sox11 is down-regulated during the process. Functional assays demonstrate that down-regulation of Sox11 is required for an efficient differentiation. Furthermore, results from forced expression of constitutively-active and dominant-negative derivatives of Sox11 indicate that Sox11 functions as a transcriptional activator in inhibiting osteogenesis. Sox11 thus represents a novel regulator of osteogenesis whose expression and activity can be potentially manipulated for controlled differentiation.

Adequate concentration of B cell leukemia/lymphoma 3 (Bcl3) is required for pluripotency and self-renewal of mouse embryonic stem cells via downregulation of Nanog transcription

  • Kang, Songhwa;Yun, Jisoo;Kim, Da Yeon;Jung, Seok Yun;Kim, Yeon Ju;Park, Ji Hye;Ji, Seung Taek;Jang, Woong Bi;Ha, Jongseong;Kim, Jae Ho;Baek, Sang Hong;Kwon, Sang-Mo
    • BMB Reports
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    • 제51권2호
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    • pp.92-97
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    • 2018
  • B cell leukemia/lymphoma 3 (Bcl3) plays a pivotal role in immune homeostasis, cellular proliferation, and cell survival, as a co-activator or co-repressor of transcription of the $NF-{\kappa}B$ family. Recently, it was reported that Bcl3 positively regulates pluripotency genes, including Oct4, in mouse embryonic stem cells (mESCs). However, the role of Bcl3 in the maintenance of pluripotency and self-renewal activity is not fully established. Here, we report the dynamic regulation of the proliferation, pluripotency, and self-renewal of mESCs by Bcl3 via an influence on Nanog transcriptional activity. Bcl3 expression is predominantly observed in immature mESCs, but significantly decreased during cell differentiation by LIF depletion and in mESC-derived EBs. Importantly, the knockdown of Bcl3 resulted in the loss of self-renewal ability and decreased cell proliferation. Similarly, the ectopic expression of Bcl3 also resulted in a significant reduction of proliferation, and the self-renewal of mESCs was demonstrated by alkaline phosphatase staining and clonogenic single cell-derived colony assay. We further examined that Bcl3-mediated regulation of Nanog transcriptional activity in mESCs, which indicated that Bcl3 acts as a transcriptional repressor of Nanog expression in mESCs. In conclusion, we demonstrated that a sufficient concentration of Bcl3 in mESCs plays a critical role in the maintenance of pluripotency and the self-renewal of mESCs via the regulation of Nanog transcriptional activity.

Salmonella typhimurium에서 SPI2의 ssaK와 ssaJ의 발현조절 (Expression control of ssaJ and ssaK of SPI2 in Salmonella typhimurium)

  • 최혁진;엄준호;이인수;박경량;박용근
    • 미생물학회지
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    • 제34권3호
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    • pp.108-114
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    • 1998
  • Salmonella typhimurium에서 병독성 발현, 특히 숙주세포내로의 침입에 중요한 역할을 하는 유전자들의 집단(gene cluster)인 Salmonella Pathogenicity Island 2(SPI2)의 발현에 대한 다양한 환경요인들의 영향을 조사하였다. 이를 위해 SPI2의 주요 유전자인 ssaJ와 ssaK의 promoter를 포함하는 regulatory region을 promoterless lac operon과 융합시켜 reporter를 제조하였다. 그리고 산소농도, 삼투압, pH, 탄소원 결핍 및 glycerol 참가 등 여러 환경요인들의 변화가 이 reporter 유전자의 발현에 미치는 효과를 조사한 결과 저산소, 낮은 삼투압, 약 알칼리 등이 ssaJ와 ssaK의 발현을 증가시켰으며 위의 세조건이 함께 존재할 때 그 발현이 가장 크게 증가하는 것으로 나타났다. 그러나 탄소원 결핍이나 glycerol 첨가는 이 두 유전자들의 발현에 영향을 주지 않았다. 또한 이상과 같은 환경인자들의 효과는 S. typhimurium의 세 가지 야생형인 LT2, UK1과 SL1344 모두에서 동일한 양상을 보였다. 다른 한편 SPI1의 transcriptional activator를 암호화하는 조절유전자인 hilA의 돌연변이는 ssaJ와 ssaK의 발현에 영향을 미치지 않음도 밝혀냈다. 따라서 이상의 결과는 SPI1과 SPI2가 서로 별개의 조절계에 의해 그 발현이 조절됨을 보여준다.

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Chicken novel leukocyte immunoglobulin-like receptor subfamilies B1 and B3 are transcriptional regulators of major histocompatibility complex class I genes and signaling pathways

  • Truong, Anh Duc;Hong, Yeojin;Lee, Janggeun;Lee, Kyungbaek;Tran, Ha Thi Thanh;Dang, Hoang Vu;Nguyen, Viet Khong;Lillehoj, Hyun S.;Hong, Yeong Ho
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권5호
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    • pp.614-628
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    • 2019
  • Objective: The inhibitory leukocyte immunoglobulin-like receptors (LILRBs) play an important role in innate immunity. The present study represents the first description of the cloning and structural and functional analysis of LILRB1 and LILRB3 isolated from two genetically disparate chicken lines. Methods: Chicken LILRB1-3 genes were identified by bioinformatics approach. Expression studies were performed by transfection, quantitative polymerase chain reaction. Signal transduction was analyzed by western blots, immunoprecipitation and flow cytometric. Cytokine levels were determined by enzyme-linked immunosorbent assay. Results: Amino acid homology and phylogenetic analyses showed that the homologies of LILRB1 and LILRB3 in the chicken line 6.3 to those proteins in the chicken line 7.2 ranged between 97%-99%, while homologies between chicken and mammal proteins ranged between 13%-19%, and 13%-69%, respectively. Our findings indicate that LILRB1 and LILRB3 subdivided into two groups based on the immunoreceptor tyrosine-based inhibitory motifs (ITIM) present in the transmembrane domain. Chicken line 6.3 has two ITIM motifs of the sequence LxYxxL and SxYxxV while line 7.2 has two ITIM motifs of the sequences LxYxxL and LxYxxV. These motifs bind to SHP-2 (protein tyrosine phosphatase, non-receptor type 11) that plays a regulatory role in immune functions. Moreover, our data indicate that LILRB1 and LILRB3 associated with and activated major histocompatibility complex (MHC) class I and ${\beta}2-microglobulin$ and induced the expression of transporters associated with antigen processing, which are essential for MHC class I antigen presentation. This suggests that LILRB1 and LILRB3 are transcriptional regulators, modulating the expression of components in the MHC class I pathway and thereby regulating immune responses. Furthermore, LILRB1 and LILRB3 activated Janus kinase2/tyrosine kinase 2 (JAK2/TYK2); signal transducer and activator of transcription1/3 (STAT1/3), and suppressor of cytokine signaling 1 genes expressed in Macrophage (HD11) cells, which induced Th1, Th2, and Th17 cytokines. Conclusion: These data indicate that LILRB1 and LILRB3 are innate immune receptors associated with SHP-2, MHC class I, ${\beta}2-microglobulin$, and they activate the Janus kinase/signal transducer and activator of transcription signaling pathway. Thus, our study provides novel insights into the regulation of immunity and immunopathology.

RAW 264.7 세포에서 sulforaphane의 파골세포형성 저해효과 (Effects of Sulraphane on Osteoclastogenesis in RAW 264.7)

  • 황준호;이미란;강창희;부희정
    • 농업생명과학연구
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    • 제50권2호
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    • pp.151-160
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    • 2016
  • 염증성 사이토카인은 파골세포형성과정에서 중요한 요인이며, 뼈의 흡수는 자주 골다공증과 연결된다. 설포라판은 보로콜리의 화뢰로 부터 분리된 물질로 염증성 사이토카인을 억제한다고 알려져 있다. 본 실험에서는 Receptor activator of nuclear factor kappaB ligand(RANKL)로 자극된 세포에서 설포라판이 파골세포 형성 억제에 대한 효과를 측정하였다. 설포라판은 대식세포인 RAW 264.7 세포에서 파골세포 특이 마커 유전자인 tartrate-resistant acid phosphatase(TRAP), Cathepsin K, matrix metalloproteinase 9(MMP-9), calcitonin receptor을 저해하였으며, TRAP, MMP-9, tumor necrosis factor receptor-associated factor 6(TRAF6)와 전사인자인 nuclease factor of activated T cells(NFATc1)의 단백질 발현과 RANKL로 자극하였을 때 전자인사인 nuclear factor kappaB(NF-kappaB)의 전사활성도 억제 하였다. 이와 같은 결과로 설포라판이 NF-kappaB의 전사활성 억제뿐만 아니라, 파골세포형성인자(TRAP, cathepsin K, MMP-9, calcitonin, NFATc1)와 NFATc1의 발현을 억제시키는 효과가 있음을 확인하였다.

1-palmitoyl-2-linoleoyl-3-acetyl-rac-glycerol (EC-18) Modulates Th2 Immunity through Attenuation of IL-4 Expression

  • Yoon, Sun Young;Kang, Ho Bum;Ko, Young-Eun;Shin, Su-Hyun;Kim, Young-Jun;Sohn, Ki-Young;Han, Yong-Hae;Chong, Saeho;Kim, Jae Wha
    • IMMUNE NETWORK
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    • 제15권2호
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    • pp.100-109
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    • 2015
  • Controlling balance between T-helper type 1 (Th1) and T-helper type 2 (Th2) plays a pivotal role in maintaining the biological rhythm of Th1/Th2 and circumventing diseases caused by Th1/Th2 imbalance. Interleukin 4 (IL-4) is a Th2-type cytokine and often associated with hypersensitivity-related diseases such as atopic dermatitis and allergies when overexpressed. In this study, we have tried to elucidate the function of 1-palmitoyl-2-linoleoyl-3-acetyl-rac-glycerol (EC-18) as an essential modulator of Th1/Th2 balance. EC-18 has showed an inhibitory effect on the production of IL-4 in a dose-dependent manner. RT-PCR analysis has proved EC-18 affect the transcription of IL-4. By analyzing the phosphorylation status of Signal transducer and activator of transcription 6 (STAT6), which is a transcriptional activator of IL-4 expression, we discovered that EC-18 induced the decrease of STAT6 activity in several stimulated cell lines, which was also showed in STAT6 reporter analysis. Co-treatment of EC-18 significantly weakened atopy-like phenotypes in mice treated with an allergen. Collectively, our results suggest that EC-18 is a potent Th2 modulating factor by regulating the transcription of IL-4 via STAT6 modulation, and could be developed for immune-modulatory therapeutics.