• 제목/요약/키워드: switch genes

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두툽상어 matrix metalloproteinase 유전자 cDNA의 클로닝 (Cloning of a matrix metalloproteinase cDNA from Scylliorhinus torazame)

  • 김종원;조원진;천광호;김규원;김영진;이상준;신혜자;임운기
    • 생명과학회지
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    • 제8권3호
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    • pp.235-240
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    • 1998
  • Matrix metalloproteinases(MMP)는 배발생 및 재조직화 등의 정상적인 생체형성과 관절염, 암전이, 치근막염, 골조송증 등의 질병과정에서 collagen이나 proteoglycan과 같은 세포외기질의 구성성분을 분해하는 아연(zinc)효소군이다. 지금까지 다양한 종에서 mmp의 유전자가 클로닝되고 그 기능이 연구되어 왔지만 아직 어류에서는 연구결과가 보고된 바가 없다. 본 연구에서는 한국의 부산연안에 많은 연골어유 투툽상어(Scylliorhinus toraxzame)로부터 RT-PCR(reverse transcriptase dependent polymerase chain reaction)의방법으로 mmp cDNA의 일부를 클로닝하였다. 이것은 염기서열에서 인간, 쥐 및 닭의 membrane type matrix matalloproteinase-3(mt3-mmps)의 염기서열과 74% 동일성을 보이며, 아미노산서열에서는 90%이상의 동일성을 갖고 있다. 또한 MMP에 나타나는 cysteine switch domain, zinc binding domain(HExGH motif), propeptide cleavage site, and RRKR motif등을 가지고 있다. 이러한 결과로부터 본 연구에서 클로닝된 RT-PCR단편은 두툽상어의 mt3-mmp 또는 이와 유사한 유전자의 cDNA이라 믿어진다.

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Inter-Domain Signal Transmission within the Phytochromes

  • Song, Pill-Soon
    • BMB Reports
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    • 제32권3호
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    • pp.215-225
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    • 1999
  • Phytochromes (with gene family members phyA, B, C, D, and E) are a wavelength-dependent light sensor or switch for gene regulation that underscore a number of photo responsive developmental and morphogenic processes in plants. Recently, phytochrome-like pigment proteins have also been discovered in prokaryotes, possibly functioning as an auto-phosphorylating/phosphate-relaying two-component signaling system (Yeh et al., 1997). Phytochromes are photochromically convertible between the light sensing Pr and regulatory active Pfr forms. Red light converts Pr to Pfr, the latter having a "switch-on" conformation. The Pfr form triggers signal transduction pathways to the downstream responses including the expression of photosynthetic and other growth-regulating genes. The components involved in and the molecular mechanisms of the light signal transduction pathways are largely unknown, although G-proteins, protein kinases, and secondary messengers such as $Ca^{2+}$ ions and cGMP are implicated. The 124-127 kDa phytochromes form homodimeric structures. The N-terminal half contains the tetrapyrrolic phytochromobilin for red/far-red light absorption. The C-terminal half includes both a dimerization motif and regulatory box where the red light signal perceived by the chromophore-domain is recognized and transduced to initiate the signal transduction cascade. A working model for the inter-domain signal communication within the phytochrome molecule is proposed in this Review.

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N-Acyl-Homoserine Lactone Quorum Sensing Switch from Acidogenesis to Solventogenesis during the Fermentation Process in Serratia marcescens MG1

  • Jin, Wensong;Lin, Hui;Gao, Huifang;Guo, Zewang;Li, Jiahuan;Xu, Quanming;Sun, Shujing;Hu, Kaihui;Lee, Jung-Kul;Zhang, Liaoyuan
    • Journal of Microbiology and Biotechnology
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    • 제29권4호
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    • pp.596-606
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    • 2019
  • N-acyl-homoserine lactone quorum sensing (AHL-QS) has been shown to regulate many physiological behaviors in Serratia marcescens MG1. In the current study, the effects of AHL-QS on the biosynthesis of acid and neutral products by S. marcescens MG1 and its isogenic ${\Delta}swrI$ with or without supplementing exogenous N-hexanoyl-L-homoserine lactone ($C_6-HSL$) were systematically investigated. The results showed that swrI disruption resulted in rapid pH drops from 7.0 to 4.8, which could be restored to wild type by supplementing $C_6-HSL$. Furthermore, fermentation product analysis indicated that ${\Delta}swrI$ could lead to obvious accumulation for acidogenesis products such as lactic acid and succinic acid, especially excess acetic acid (2.27 g/l) produced at the early stage of fermentation, whereas solventogenesis products by ${\Delta}swrI$ appeared to noticeably decrease by an approximate 30% for acetoin during 32-48 h and by an approximate 20% for 2,3-butanediol during 24-40 h, when compared to those by wild type. Interestingly, the excess acetic acid produced could be removed in an AHL-QS-independent manner. Subsequently, quantitative real-time PCR was used to determine the mRNA expression levels of genes responsible for acidogenesis and solventogenesis and showed consistent results with those of product synthesis. Finally, by close examination of promoter regions of the analyzed genes, four putative luxI box-like motifs were found upstream of genes encoding acetyl-CoA synthase, lactate dehydrogenase, ${\alpha}$-acetolactate decarboxylase, and Lys-like regulator. The information from this study provides a novel insight into the roles played by AHL-QS in switching from acidogenesis to solventogenesis in S. marcescens MG1.

A STUDY ON THE EXPRESSION OF TYPE I AND TYPE II COLLAGEN GENES AND PROTEINS IN THE DEVELOPING HUMAN MANDIBLE

  • Kook, Yoon-Ah;Kim, Sang-Cheol;Kim, Eun-Cheol
    • 대한치과교정학회지
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    • 제25권6호
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    • pp.723-731
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    • 1995
  • Type I and type II collagens are considered the major collagens of bone and cartilage respectively. Monitoring the patterns of those gene and protein expressions during development will provide a basis for the understanding of the normal and abnormal growths. This study was undertaken to investigate the expression of collagen genes and proteins involved in the developing human mandible. Fifty embryos and fetuses were studied with Alcian blue-PAS, Masson's Trichrome, reverse transcription polymerase chain reaction (RT-PCR), Western blot analysis, and Southern blot analysis. Our results showed that $pro-{\alpha}1(II)$ collagen gene expression begins in the 5th week. Type II collagen is synthesized in mesenchymal cells in advance: of overt chondrogenesis. The gene expression for type II collagen was highest during the appearance of Meckel's cartilage. There was a switch in collagen protein expression from type I to type II during the appearance stage of Meckel's cartilage. The distribution of the mRNA for type II collagen corresponded well with the pattern of type II collagen protein. The endochondral ossification was observed where there was direct replacement of cartilage by bone.

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Gene-editing techniques and their applications in livestock and beyond

  • Tae Sub Park
    • Animal Bioscience
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    • 제36권2_spc호
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    • pp.333-338
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    • 2023
  • Genetic modification enables modification of target genes or genome structure in livestock and experimental animals. These technologies have not only advanced bioscience but also improved agricultural productivity. To introduce a foreign transgene, the piggyBac transposon element/transposase system could be used for production of transgenic animals and specific target protein-expressing animal cells. In addition, the clustered regularly interspaced short palindromic repeat-CRISPR associated protein 9 (CRISPR-Cas9) system have been utilized to generate chickens with knockout of G0/G1 switch gene 2 (G0S2) and myostatin, which are related to lipid deposition and muscle growth, respectively. These experimental chickens could be the invaluable genetic resources to investigate the regulatory pathways and mechanisms of improvement of economic traits such as fat quantity and growth. The gene-edited animals could also be applicable to the livestock industry.

Role of Cordycepin and Adenosine on the Phenotypic Switch of Macrophages via Induced Anti-inflammatory Cytokines

  • Shin, Seul-Mee;Moon, Sun-Hee;Park, Yoon-Hee;Kwon, Jeong-Hak;Lee, Seung-Jeong;Lee, Chong-Kil;Cho, Kyung-Hae;Kim, Kyung-Jae
    • IMMUNE NETWORK
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    • 제9권6호
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    • pp.255-264
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    • 2009
  • Background: Chronic low grade inflammation is closely linked to type II diabetes, obesity, and atherosclerosis. Macrophages play a key role in the regulation of pro- or anti-inflammatory actions at the lesion sites of disease. Components of cordyceps militaris, cordycepin and adenosine, have been used for the modulation of inflammatory diseases. The effects of cordycepin in the modulation of macrophages have yet to be be elucidated. We investigated the effects of cordycepin and adenosine on the morphological changes of macrophages under the inflammatory condition of LPS and an anti-inflammatory condition involving high concentrations of adenosine. Methods: We confirmed the mRNA levels of the M1/M2 cytokine genes through RT-PCR and morphological change. Results: LPS-activated macrophages returned to their inactivated original shape, i.e., they looked like naive macrophages, through the treatment with high concentrations of cordycepin ($40{\mu}g/ml$). LPS and adenosine activated macrophages also returned to their original inactivated shapes after cordycepin treatment; however, at relatively higher levels of cordycepin than adenosine. This change did not occur with relatively low concentrations of cordycepin. Adenosine down-regulated the gene expression of M1 cytokines (IL-$1{\beta}$, TNF-${\alpha}$) and chemokines (CX3CR1, RANTES), such as cordycepin. Additionally, M2 cytokines (IL-10, IL-1ra, TGF-${\beta}$) were up-regulated by both cordycepin and adenosine. Conclusion: Based on these observations, both cordycepin and adenosine regulated the phenotypic switch on macrophages and suggested that cordycepin and adenosine may potentially be used as immunomodulatory agents in the treatment of inflammatory disease.

애기장대 MYB7 유전자의 리그닌 생합성 억제 조절 (AtMYB7 Acts as a repressor of lignin biosynthesis in Arabidopsis)

  • 김원찬
    • Journal of Applied Biological Chemistry
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    • 제59권3호
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    • pp.215-220
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    • 2016
  • 식물의 이차생장의 결과로 생산되는 바이오매스의 대부분은 식물의 이차세포벽에 축적된다. 식물의 이차세포벽은 크게 셀룰로스, 헤미셀룰로스, 리그닌이라는 3가지 물질로 구성되며 이들 중 페놀성 복합 화학 물질인 리그닌은 셀룰로스나 헤미셀룰로스와 달리 알코올 발효과정의 저해 물질로이다. 따라서, 식물의 이차세포벽 생합성의 과정을 조절함으로 전체 바이오매스의 생산량과 조성을 바이오 에너지 생산을 위해 최적 조건으로 조절함으로써 바이오 에탄올 생산을 최대화할 수 있을 것이다. 본 연구에서는 애기장대 유래 MYB7 유전자를 CaMV35S 프로모터 조절 하에서 과별현되게 한 식물체와 식물의 전사조절에서 하위 특정 유전자의 발현을 저해시키는 것으로 잘 알려진 SRDX 융합 단백질 즉, MYB7-SRDX 과발현체를 제작하여 그 특성을 조사하였다. 그 결과 MYB7 전사조절 인자가 리그닌의 생합성을 억제 조절한다는 결과를 관찰하였다. 이는 MYB7 전사조절인자를 이용하면 바이오 에탄올 발효과정에 저해 물질로 작용하는 리그닌을 경감시킬 수 있는 기초 자료로 사용할 수 있을 것이다.

DNA chip을 이용한 건선의 한방치료에 관한 유전체 연구 (DNA chip Analysis of Psoriatic Skin during the Oriental Remedy)

  • 김병수;이상근;김현웅;이증훈;임종순;강정수
    • 동의생리병리학회지
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    • 제18권2호
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    • pp.468-473
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    • 2004
  • Psoriasis is a chronic inflammatory disease of the skin characterized by epidermal hyperplasia, dermal angiogenesis, infiltration of activated T cells, and increased cytokine levels, and affects 1-3% of the world-wide population. Although many immunological and clinical reports indicate a role for the immune system in the pathogenesis of psoriasis, puzzling questions about psoriasis remain unsolved. During the several decade, immunosuppressor and PUVA treatment are ubiquitously used to psoriasis therapy. But recently, to promote terminal differentiation of keratinocytes, block either NK-Tcell or T-cell activation, and interrupting the angiogenic switch represent another therapeutic opportunity in psoriasis. To keep face with immunological therapy, the needs of newly designed prescription on the psoriasis treatments were demanded. With the object of understand the psoriasis from an orient medical point of view, patients were administrated the GY during several weeks. We investigated the changes of gene expression in involved and uninvolved skin samples during the oriental remedy. Microarray data showed several important results. First, Gene expression profiling is similar to each patient. Second, precursor proteins that organize cornified envelops are decreased at the end of remedy. But genes which related to apoptosis, G-protein signalling, and lipid metabolism are increased. Third, 68.5% of clustering genes localized on the psoriasis susceptibility locus. In our results indicated that GY influence on the keratinocytes hyperproliferation by regulating the gene, which located on the psoriasis susceptibility locus.

Crosstalk between BMP signaling and KCNK3 in phenotypic switching of pulmonary vascular smooth muscle cells

  • Yeongju, Yeo;Hayoung, Jeong;Minju, Kim;Yanghee, Choi;Koung Li, Kim;Wonhee, Suh
    • BMB Reports
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    • 제55권11호
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    • pp.565-570
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    • 2022
  • Pulmonary arterial hypertension (PAH) is a progressive and devastating disease whose pathogenesis is associated with a phenotypic switch of pulmonary arterial vascular smooth muscle cells (PASMCs). Bone morphogenetic protein (BMP) signaling and potassium two pore domain channel subfamily K member 3 (KCNK3) play crucial roles in PAH pathogenesis. However, the relationship between BMP signaling and KCNK3 expression in the PASMC phenotypic switching process has not been studied. In this study, we explored the effect of BMPs on KCNK3 expression and the role of KCNK3 in the BMP-mediated PASMC phenotypic switch. Expression levels of BMP receptor 2 (BMPR2) and KCNK3 were downregulated in PASMCs of rats with PAH compared to those in normal controls, implying a possible association between BMP/BMPR2 signaling and KCNK3 expression in the pulmonary vasculature. Treatment with BMP2, BMP4, and BMP7 significantly increased KCNK3 expression in primary human PASMCs (HPASMCs). BMPR2 knockdown and treatment with Smad1/5 signaling inhibitor substantially abrogated the BMP-induced increase in KCNK3 expression, suggesting that KCNK3 expression in HPASMCs is regulated by the canonical BMP-BMPR2-Smad1/5 signaling pathway. Furthermore, KCNK3 knockdown and treatment with a KCNK3 channel blocker completely blocked BMP-mediated anti-proliferation and expression of contractile marker genes in HPAMSCs, suggesting that the expression and functional activity of KCNK3 are required for BMP-mediated acquisition of the quiescent PASMC phenotype. Overall, our findings show a crosstalk between BMP signaling and KCNK3 in regulating the PASMC phenotype, wherein BMPs upregulate KCNK3 expression and KCNK3 then mediates BMP-induced phenotypic switching of PASMCs. Our results indicate that the dysfunction and/or downregulation of BMPR2 and KCNK3 observed in PAH work together to induce aberrant changes in the PASMC phenotype, providing insights into the complex molecular pathogenesis of PAH.

Rhodospirillum rubrum Plasmid pKY1의 유전정보 분석과 그의 활용에 관한 연구 (Genetic Analysis and its Application of Rhodosprillum rubrum PKY1 Plasmid)

  • 김복환;김정목
    • 미생물학회지
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    • 제40권2호
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    • pp.172-177
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    • 2004
  • 광합성 박테리아 Rhodospirillum rubrum은 광원의 조건에 따라 균주 내의 신진대사 양상이 변화된다고 보고 되어 왔다. 이러한 광조건에 의한 신진대사 변환 과정을 담당하는 유전자에 대한 연구는 광합성 박테리아에 관한 주된 과제 중 하나이다. 근래 이러한 광조건에 의한 균주내 변화 과정이 균주가 지니는 extrachromosomal plasmid와 관련이 있음이 보고되었다. 본 연구는 광합성 박테리아 R. rubrum의 extrachromosomal plamid pKYl 을 분리 정제하고 이를 제한효소 HindIII로 단편화 하여 이들 단편의 일부에 대한 염기서열을 분석하고 이들의 기능을 추론하였다. 본 연구를 통하여 plasmid pKY1에 박테리아의 유전적 재조합 (genetic recombination)에 관여하는 단백질에 대한 정보가 위치하고 있음을 유전자 및 아미노산 상동성 조사를 통하여 알 수 있었다.