• 제목/요약/키워드: Bone-specific promoter

검색결과 11건 처리시간 0.024초

The Rat Myosin Light Chain Promoter-Driven DsRed Reporter System Allows Specific Monitoring of Bone Marrow Mesenchymal Stem Cell- Derived Cardiomyocytes

  • Choi, Seung-Cheol;Lim, Do-Sun
    • Reproductive and Developmental Biology
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    • 제32권1호
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    • pp.21-25
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    • 2008
  • Bone marrow mesenchymal stem cells (BMMSCs) have the capacity for self-renewal and differentiation into a variety of cell types. They represent an attractive source of cells for gene and cell therapy. The purpose of this study is to direct the specific expression of the DsRed reporter gene in $Sca-1^+$ BMMSCs differentiated into a cardiomyogenic lineage. We constructed the prMLC-2v-DsRed vector expressing DsRed under the control of the 309 tp fragment of the rat MLC-2v 5'-flanking region. The specific expression of the DsRed reporter gene under the transcriptional control of the 309 bp fragment of the rat MLC-2v promoter was tested in 5-azacytidine healed-$Sca-1^+$ BMMSCs over 2 weeks after the prMLC-2v-DsRed transfection. The prMLC-2v-DsRed was specifically expressed in the $Sca-1^+$ BMMSCs with cardiomyogenic lineage differentiation and it demonstrates that the 309 bp sequences of the rat MLC-2v 5'-flanking region is sufficient to confer cardiac specific expression on a DsRed reporter gene. The cardiac-specific promoter-driven reporter vector provides an important tool for the study of stem cell differentiation and cell replacement therapy in ischemic cardiomyopathy.

Characterizations of Cell Lineage Markers in the Bone Marrow Cells of Recloned GFP Pigs for Possible Use of Stem Cell Population

  • Park, Kwang-Wook;Choi, Sung-Sik;Lee, Dong-Ho;Lee, Hwang;Choi, Seung-Kyu;Park, Chang-Sik;Lee, Sang-Ho
    • Reproductive and Developmental Biology
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    • 제35권1호
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    • pp.23-31
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    • 2011
  • Two piglets and one juvenile pig were used to investigate closely what types of cells express green fluorescent protein (GFP) and if any, whether the GFP-tagged cells could be used for stem cell transplantation research as a middle-sized animal model in bone marrow cells of recloned GFP pigs. Bone marrow cells were recovered from the tibia, and further analyzed with various cell lineage markers to determine which cell lineage is concurrently expressing visible GFP in each individual animal. In the three animals, visible GFP were observed only in proportions of the plated cells immediately after collection, showing 41, 2 and 91% of bone marrow cells in clones #1, 2 and 3, respectively. The intensity of the visible GFP expression was variable even in an individual clone depending on cell sizes and types. The overall intensities of GFP expression were also different among the individual clones from very weak, weak to strong. Upon culture for 14 days in vitro (14DIV), some cell types showed intensive GFP expression throughout the cells; in particular, in cytoskeletons and the nucleus, on the other hand. Others are shown to be diffused GFP expression patterns only in the cytoplasm. Finally, characterization of stem cell lineage markers was carried out only in the clone #3 who showed intensive GFP expression. SSEA-1, SSEA-3, CD34, nestin and GFAP were expressed in proportions of the GFP expressing cells, but not all of them, suggesting that GFP expression occur in various cell lineages. These results indicate that targeted insertion of GFP gene should be pursued as in mouse approach to be useful for stem cell research. Furthermore, cell- or tissue-specific promoter should also be used if GFP pig is going to be meaningful for a model for stem cell transplantation.

두개봉합 발육 연구를 위한 형질변환 쥐의 개발 : 어퍼트 신드롬 (Generation of a transgenic mouse model to study cranial suture development; Apert syndrome)

  • 이기준;;백형선;박영철;박광균;나현덕
    • 대한치과교정학회지
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    • 제33권6호
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    • pp.485-497
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    • 2003
  • 악안면 구조의 형태와 기능은 대개 유전자 정보에 의해 결정된다. 분자생물학의 발달로 인해 정상 성장과 형태 형성에 중요한 유전자에 대한 정보가 밝혀지고 있고 이는 현대 두개안면 생물학의 근간이 되고 있다. 밝혀진 사실들 중 주목할만한 것은 섬유아세포 성장인자2 (FGFR2)에 서 의 특이한 돌연변이 가 어 퍼트 증후군 (Apert syndrome) 의 발생과 관련이 있다는 것이다. 어퍼트 증후군은 두개 관상봉합의 조기 유합과 사지의 기형으로 특징지워진다. 그 중 특히 두개골 유합증의 병인과 형성기전을 연구하기 위해 본 연구에서 유전자 변환기법을 시도하여 어퍼트 증후군의 유발인자로 알려진 FGFR2에 서 의 단일 아미노산 치 환 돌연변이를 재연한 인위 유전자구조물을 제작하고 이를 미 세주입법으로 쥐의수정란에 삽입하여 형질변환 쥐를 제작하였다. 본 연구에서는 전체 조직이 아닌 골조직에서 특이하게 활성화되는 전사촉진자(promoter, 제 I형 교원질 유전자의 전사촉진자)를 이용하여 골조직에서만 돌연변이 유전자의 발현을 재현함으로써 이 시도가 쥐에서 두개골유합증을 유발하는지 검증하고자 하였다. 초기 표현형 분석을 통해 어퍼트 환자에서 기대되는 두개골 유합증을 확인하였다. 또한 본 연구에서 삽입된 변환유전자가 원활히 돌연변이 단백질을 생산하고 기능의 증가를 보임을 확인하였다. 이러한 동물 모델을 이용함으로써 이제 정상적 혹은 비정상적 두개골 및 봉합 발육에서의 FGFR2의 역할을 연구하는 것이 가능하리라 사료된다

리포터유전자를 이용한 조골세포 분화정도에 관한 연구 (A study on the osteoblast differentiation using osteocalcin gene promoter controlling luciferase expression)

  • 김경화;박윤정;이용무;한중석;이동수;이승진;정종평;설양조
    • Journal of Periodontal and Implant Science
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    • 제36권4호
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    • pp.839-847
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    • 2006
  • The aim of this study is to monitor reporter gene expression under osteocalcin gene promoter, using a real-time molecular imaging system, as tool to investigate osteoblast differentiation. The promoter region of mouse osteocalcin gene 2 (mOG2), the best-characterized osteoblast-specific gene, was inserted in promoterless luciferase reporter vector. Expression of reporter gene was confirmed and relationship between the reporter gene expression and osteoblastic differentiation was evaluated. Gene expression according to osteoblstic differentiation on biomaterials, utilizing a real-time molecular imaging system, was monitored. Luciferase was expressed at the only cells transduced with pGL4/mOGP and the level of expression was statistically higher at cells cultured in mineralization medium than cells in growth medium. CCCD camera detected the luciferase expression and was visible differentiation-dependent intensity of luminescence. The cells produced osteocalcin with time-dependent increment in BMP-2 treated cells and there was difference between BMP-2 treated cells and untreated cells at 14days. There was difference at the level of luciferase expression under pGL4/mOGP between BMP-2 treated cells and untreated cells at 3days. CCCD camera detected the luciferase expression at cells transduced with pGL4/mOGP on Ti disc and was visible differentiation-dependent intensity of luminescence This study shows that 1) expression of luciferase is regulated by the mouse OC promoter, 2) the CCCD detection system is a reliable quantitative gene detection tool for the osteoblast differentiation, 3) the dynamics of mouse OC promoter regulation during osteoblast differentiation is achieved in real time and quantitatively on biomaterial. The present system is a very reliable system for monitoring of osteoblast differentiation in real time and may be used for monitoring the effects of growth factors, drug, cytokines and biomaterials on osteoblast differentiation in animal.

연부조직육종 환자에서 $O^6$-MGMT 와 촉진자 과메틸화의 예후적 중요성 (Prognostic Significance of $O^6$-MGMT and Promotor Hypermethylation in Patients with Soft Tissue Sarcomas)

  • 서정탁;김정일;오종석;최경운
    • 대한골관절종양학회지
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    • 제15권1호
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    • pp.13-25
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    • 2009
  • 서론: $O^6$-methylguanine-DNA methyltransferase (MGMT)는 DNA 염기 손상에 의해 형성된 $O^6$-methylguanine에서 알킬기를 제거하여 DNA 염기 손상을 복구하는 역할을 한다. MGMT의 후생유전적 불활성화가 인체 종양에서 보고되고 있으며, 항암 치료에 대한 저항성에 영향을 주는 요소로 알려져 있다. 본 연구에서는 연부조직육종에서 이러한 MGMT 불활성화가 미치는 영향에 대해 살펴보고자 하였다. 재료 및 방법: 총 62예의 연부조직육종조직에서 메틸화 특이 중합효소연쇄반응을 이용하여 MGMT 유전자의 촉진자 부위 메틸화 정도를 알아보고, 면역조직화학염색을 통하여 MGMT 단백 발현의 소실 양상을 살펴보았다. 결과: MGMT 단백 발현 소실은 진행성 병기(p=0.000), 조직학적 고등급(p=0.005), 종양의 재발 또는 전이(p=0.011), 그리고, 낮은 생존률(p=0.017)과 통계학적 유의성을 보였다. MGMT 유전자 촉진자 부위 메틸화는 조직학적 고등급, 종양의 재발 또는 전이, 그리고, 낮은 생존률과 관련성을 보였다. 또한, MGMT 단백 발현의 소실은 MGMT 유전자 촉진자 부위 과메틸화와 높은 상관성을 나타내었다(p=0.000). 결론: 본 연구는 MGMT 단백 발현의 소실과 MGMT 유전자 촉진자 부위 과메틸화가 연부조직 육종에서 흔히 발생하며 종양의 공격적인 양상 및 나쁜 예후와 관련성이 있다는 것을 보여준다. 또한 MGMT 단백 발현의 소실은 대개 MGMT 유전자 촉진자 부위 과메틸화로 인해 발생한다는 사실을 보여주고 있다.

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The synergistic regulatory effect of Runx2 and MEF transcription factors on osteoblast differentiation markers

  • Lee, Jae-Mok;Libermann, Towia A.;Cho, Je-Yoel
    • Journal of Periodontal and Implant Science
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    • 제40권1호
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    • pp.39-44
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    • 2010
  • Purpose: Bone tissues for clinical application can be improved by studies on osteoblast differentiation. Runx2 is known to be an important transcription factor for osteoblast differentiation. However, bone morphogenetic protein (BMP)-2 treatment to stimulate Runx2 is not sufficient to acquire enough bone formation in osteoblasts. Therefore, it is necessary to find other regulatory factors which can improve the transcriptional activity of Runx2. The erythroblast transformation-specific (ETS) transcription factor family is reported to be involved in various aspects of cellular proliferation and differentiation. Methods: We have noticed that the promoters of osteoblast differentiation markers such as alkaline phosphatase (Alp), osteopontin (Opn), and osteocalcin (Oc) contain Ets binding sequences which are also close to Runx2 binding elements. Luciferase assays were performed to measure the promoter activities of these osteoblast differentiation markers after the transfection of Runx2, myeloid Elf-1-like factor (MEF), and Runxs+MEF. Reverse-transcription polymerase chain reaction was also done to check the mRNA levels of Opn after Runx2 and MEF transfection into rat osteoblast (ROS) cells. Results: We have found that MEF, an Ets transcription factor, increased the transcriptional activities of Alp, Opn, and Oc. The addition of Runx2 resulted in the 2- to 6-fold increase of the activities. This means that these two transcription factors have a synergistic effect on the osteoblast differentiation markers. Furthermore, early introduction of these two Runx2 and MEF factors significantly elevated the expression of the Opn mRNA levels in ROS cells. We also showed that Runx2 and MEF proteins physically interact with each other. Conclusions: Runx2 interacts with MEF proteins and binds to the promoters of the osteoblast markers such as Opn nearby MEF to increase its transcriptional activity. Our results also imply that osteoblast differentiation and bone formation can be increased by activating MEF to elicit the synergistic effect of Runx2 and MEF.

대장균에서 증식속도 조절에 의한 수용성 재조합 인간 과립구 콜로니 촉진인자의 생산 (Production of Soluble Recombinant Human Granulocyte Colony Stimulating Factor in E. coli by Control of Growth Rate.)

  • 박세철;고인영;강희일
    • 한국미생물·생명공학회지
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    • 제32권2호
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    • pp.135-141
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    • 2004
  • 인간 과립구 성장인자(hG-CSF)는 골수에서 생산되는 단백질로 호중구의 분화 및 생성을 촉진시키는 역할을 한다. 현재 재조합 hG-CSF는 암화학요법에 의한 호중구감소증, 골수이식시 호중구 감소증, 재생불량성 빈혈에 수반되는 호중구 감소증 등으로 적응증이 확대되고 있다. 본 연구에서는 OmpA signal sequence를 삽입하여 인간 과립구 성장인자(hG-CSF)가 분비발현되도록 고안된 T7 promoter 에 의하여 발현되는 pYRCl 발현백터를 제조하였다. E. coli BL2l (pYRCl) 발현시 $37^{\circ}C$에서 배양하는 경우 많은 양의 봉입체(aggregates)를 형성한다. 이에 비하여 $10\mu$M ucose를 포함하는 변형된 MBL배지에서 10 g/$\ell$IPTG를 유도물질로 7시간동안 $25^{\circ}C$에서 배양하였을 때 전체 periplasm단백질의 15%가 soluble rhG-CSF이었다. 또한, 유가식 배양방법을 사용하여 E. coli BL2l(pYRCl)에서 soluble rhG-CSF의 생산조건을 조사하였다. 유가식 배양에서 rhG-CSF의 발현량이 비증식속도를 $0.43 h^{-1}$ 에서 0.14 $h^{-1}$ 으로, 유도 배양시간을 최적화함으로써 rhG-CSF의 발현량이 4.4mg/$\ell$에서 24mg/$\ell$ 로 증가하였다.

Transdifferentiation of α-1,3-galactosyltransferase knockout pig bone marrow derived mesenchymal stem cells into pancreatic β-like cells by microenvironment modulation

  • Ullah, Imran;Lee, Ran;Oh, Keon Bong;Hwang, Seongsoo;Kim, Youngim;Hur, Tai-Young;Ock, Sun A
    • Asian-Australasian Journal of Animal Sciences
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    • 제33권11호
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    • pp.1837-1847
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    • 2020
  • Objective: To evaluate the pancreatic differentiation potential of α-1,3-galactosyltransferase knockout (GalTKO) pig-derived bone marrow-derived mesenchymal stem cells (BM-MSCs) using epigenetic modifiers with different pancreatic induction media. Methods: The BM-MSCs have been differentiated into pancreatic β-like cells by inducing the overexpression of key transcription regulatory factors or by exposure to specific soluble inducers/small molecules. In this study, we evaluated the pancreatic differentiation of GalTKO pig-derived BM-MSCs using epigenetic modifiers, 5-azacytidine (5-Aza) and valproic acid (VPA), and two types of pancreatic induction media - advanced Dulbecco's modified Eagle's medium (ADMEM)-based and N2B27-based media. GalTKO BM-MSCs were treated with pancreatic induction media and the expression of pancreas-islets-specific markers was evaluated by real-time quantitative polymerase chain reaction, Western blotting, and immunofluorescence. Morphological changes and changes in the 5'-C-phosphate-G-3' (CpG) island methylation patterns were also evaluated. Results: The expression of the pluripotent marker (POU class 5 homeobox 1 [OCT4]) was upregulated upon exposure to 5-Aza and/or VPA. GalTKO BM-MSCs showed increased expression of neurogenic differentiation 1 in the ADMEM-based (5-Aza) media, while the expression of NK6 homeobox 1 was elevated in cells induced with the N2B27-based (5-Aza) media. Moreover, the morphological transition and formation of islets-like cellular clusters were also prominent in the cells induced with the N2B27-based media with 5-Aza. The higher insulin expression revealed the augmented trans-differentiation ability of GalTKO BM-MSCs into pancreatic β-like cells in the N2B27-based media than in the ADMEM-based media. Conclusion: 5-Aza treated GalTKO BM-MSCs showed an enhanced demethylation pattern in the second CpG island of the OCT4 promoter region compared to that in the GalTKO BM-MSCs. The exposure of GalTKO pig-derived BM-MSCs to the N2B27-based microenvironment can significantly enhance their trans-differentiation ability into pancreatic β-like cells.

SCF에서 배양한 결합조직형 비만세포에서 mMCP-6 발현을 조절하는 MITF 이형체 (Alternative Isoforms of the mi Transcription Factor (MITF) Regulate the Expression of mMCP-6 in the Connective Tissue-Type Mast Cells Cultured with Stem Cell Factor)

  • 이선희;관수영;김대기
    • 생명과학회지
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    • 제18권10호
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    • pp.1348-1354
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    • 2008
  • mi transcription factor (MITF)는 비만세포의 분화를 조절하는 중요한 전사인자이다. 특히 MITF는 결합조직형 비만세포에서 일반적으로 발현하는 비만세포 특이적 세린 단백분해효소의 일종인 mMCP-6 유전자의 전사를 조절한다. 본 연구는 마우스 골수유래 배양비만세포에서 mMCP-6 유전자의 전사를 조절하는 MITF이형체를 규명하였다. MITF 이형체들의 발현은 RT-PCR로 확인하였다. IL-3존재 하에서 배양한 점막형 비만세포들은 MITF-A,-E, -H, -Mc 등이 발현하였다. 반면에 SCF존재 하에서 배양한 결합조직형 비만세포들은 MITF-A가 발현하였다. MITF이형체를 과발현시키면 NIH-3T3 세포에서 mMCP-6 promoter를 통한 luciferase 활성을 증가시키고, MC/9 비만세포주에서는 증가된 mMCP-6발현을 유도하였다. 더불어 비만세포에서의 mMCP-6 발현은 MITF-A 고갈로 인하여 유의적으로 억제되었다. MITF-A의 전사활성과 DNA결합은 MITF-E, -H, -Mc 등의 타 이형체들의 결과와 유사하였다. 따라서 본 연구의 결과들은 MITF-A가 마우스 결합조직형 비만세포에서 발현하여 mMCP-6 전사를 조절하는 중요한 이형체임을 제시한다.

The estrogen-related receptor γ modulator, GSK5182, inhibits osteoclast differentiation and accelerates osteoclast apoptosis

  • Kim, Hyun-Ju;Yoon, Hye-Jin;Lee, Dong-Kyo;Jin, Xian;Che, Xiangguo;Choi, Je-Yong
    • BMB Reports
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    • 제54권5호
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    • pp.266-271
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    • 2021
  • Estrogen-related receptor γ (ERRγ), a member of the orphan nuclear receptor family, is a key mediator in cellular metabolic processes and energy homeostasis. Therefore, ERRγ has become an attractive target for treating diverse metabolic disorders. We recently reported that ERRγ acts as a negative regulator of osteoclastogenesis induced by receptor activator of nuclear factor-κB ligand (RANKL). In the present study, we explored the effects of an ERRγ-specific modulator, GSK5182, on ERRγ-regulated osteoclast differentiation and survival. Interestingly, GSK5182 increased ERRγ protein levels much as does GSK4716, which is an ERRγ agonist. GSK5182 inhibited osteoclast generation from bone-marrow-derived macrophages without affecting cytotoxicity. GSK5182 also attenuated RANKL-mediated expression of cFos and nuclear factor of activated T-cells cytoplasmic 1 (NFATc1), pivotal transcription factors for osteoclastogenesis. Arrested osteoclast differentiation was associated with reduced RANK expression, but not with the M-CSF receptor, c-Fms. GSK5182 strongly blocked the phosphorylation of IκBα, c-Jun N-terminal kinase, and extracellular signal-regulated kinase in response to RANKL. GSK5182 also suppressed NF-κB promoter activity in a dose-dependent manner. In addition to osteoclastogenesis, GSK5182 accelerated osteoclast apoptosis by caspase-3 activation. Together, these results suggest that GSK5182, a synthetic ERRγ modulator, may have potential in treating disorders related to bone resorption.