• Title/Summary/Keyword: TGF-${\beta}3$

검색결과 407건 처리시간 0.026초

Transforming Growth Factor β1/Smad4 Signaling Affects Osteoclast Differentiation via Regulation of miR-155 Expression

  • Zhao, Hongying;Zhang, Jun;Shao, Haiyu;Liu, Jianwen;Jin, Mengran;Chen, Jinping;Huang, Yazeng
    • Molecules and Cells
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    • 제40권3호
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    • pp.211-221
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    • 2017
  • Transforming growth factor ${\beta}1$ $(TGF{\beta}1)/Smad4$ signaling plays a pivotal role in maintenance of the dynamic balance between bone formation and resorption. The microRNA miR-155 has been reported to exert a significant role in the differentiation of macrophage and dendritic cells. The goal of this study was to determine whether miR-155 regulates osteoclast differentiation through $TGF{\beta}1/Smad4$ signaling. Here, we present that $TGF{\beta}1$ elevated miR-155 levels during osteoclast differentiation through the stimulation of M-CSF and RANKL. Additionally, we found that silencing Smad4 attenuated the upregulation of miR-155 induced by $TGF{\beta}1$. The results of luciferase reporter experiments and ChIP assays demonstrated that $TGF{\beta}1$ promoted the binding of Smad4 to the miR-155 promoter at a site located in 454 bp from the transcription start site in vivo, further verifying that miR-155 is a transcriptional target of the $TGF{\beta}1/Smad4$ pathway. Subsequently, TRAP staining and qRT-PCR analysis revealed that silencing Smad4 impaired the $TGF{\beta}1$-mediated inhibition on osteoclast differentiation. Finally, we found that miR-155 may target SOCS1 and MITF to suppress osteoclast differentiation. Taken together, we provide the first evidence that $TGF{\beta}1/Smad4$ signaling affects osteoclast differentiation by regulation of miR-155 expression and the use of miR-155 as a potential therapeutic target for osteoclast-related diseases shows great promise.

사람 폐 섬유아세포의 전환성장인자-β1에 의한 fibronectin 분비와 α-smooth muscle actin 표현에 있어서 활성산소족의 역할 (Role of Reactive Oxygen Species in Transforming Growth Factor-β1-inuduced Fibronectin Secretion and α-Smooth Muscle Actin Expression in Human Lung Fibroblasts)

  • 하헌주;유미라;어수택;박춘식;이희발
    • Tuberculosis and Respiratory Diseases
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    • 제58권3호
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    • pp.267-276
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    • 2005
  • 연구배경 : 전환성장인자-${\beta}1$(transforming growth factor-${\beta}1$: $TGF-{\beta}1$)은 폐 섬유화를 매개하는 주된 인자이지만 $TGF-{\beta}1$에 의한 폐 섬유화의 발생과 진행기전의 이해는 아직 불완전하다. $TGF-{\beta}1$은 다양한 세포에서 활성산소족(reactive oxygen species: ROS)을 통하여 세포내 신호를 전달하고 ${\alpha}$-smooth muscle actin (${\alpha}$-SMA)의 신생합성을 통하여 상피세포와 폐 섬유아세포를 근 섬유아세포 표현형으로의 변화를 유도하는 주된 인자이다. ROS는 또 다양한 세포에서 세포외기질 (extracellular matrix: ECM) 축적을 유발하는 것이 알려져 있음으로 본 연구에서는 폐 섬유아세포인 MRC-5 세포에서 $TGF-{\beta}1$이 ROS를 매개하여 fibronectin 분비와 ${\alpha}-SMA$ 표현의 증가에 관여하는지를 검색하였다. 방 법 : 성장이 동일화된 MRC-5 세포를 $TGF-{\beta}1$ (0.2-10ng/ml)으로 96 시간까지 자극하였고, 필요에 따라 항산화제인 N-acetylcysteine (NAC)이나 NADPH oxidase 억제제인 diphenyleniodonium (DPI)을 $TGF-{\beta}1$ 투여 1 시간 전부터 전처리하였다. Dichlorofluorescein (DCF)에 민감한 세포내 ROS는 FACS로, 분비된 fibronectin과 세포의 ${\alpha}-SMA$ 표현은 Western blot 분석으로 측정하였다. 결 과 : $TGF-{\beta}1$은 용량의존적으로 fibronectin 분비와 ${\alpha}-SMA$ 표현을 상향조절하였다. NAC와 DPI는 $TGF-{\beta}1$에 의한 fibronectin 분비 증가와 ${\alpha}-SMA$ 상향조절을 유의하게 억제하였다. $TGF-{\beta}1$에 의한 세포내 ROS의 증가도 NAC나 DPI에 의하여 유의하게 억제되었다. 결 론 : 본 연구의 결과는 폐 섬유아세포에서 NADPH oxidase 에 의하여 생산된 ROS가 $TGF-{\beta}1$에 의한 fibronectin 분비와 ${\alpha}-SMA$ 표현을 상향조절함으로써 폐 섬유화의 발생과 진행에 관여할 수 있음을 증명하였다.

세균 독소를 작용시킨 섬유아 세포에서 Transforming Growth Factor-${\beta}_1$의 생성 (PRODUCTION OF TRANSFORMING GROWTH FACTOR-${\beta}_1$ IN HUMAN FIBROBLASTS INDUCED WITH BACTERIAL TOXINS)

  • 이성근;김광혁
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제26권4호
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    • pp.345-354
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    • 2000
  • TGF-${\beta}_1$ is a potent chemotactic factor for inflammatory cells and fibroblasts. It also stimulates the celluar source and components of extracellular matrix and the production of proteinase inhibitors. Collectively, these biologic activities lead to the accumulation and stabilization of the nascent matrix, which is vital to wound healing. The objective of this study is to investigate production of TGF-${\beta}_1$ in vitro fibroblast culture in the presence of Staphylococcus enterotoxin B(SEB) and/or lipopolysaccharide(LPS) and to elucidate the role of TGF-${\beta}_1$ which may be responsible for wound healing. The fibroblasts were originated from facial dermis and hypertrophic scar in 26 year-old male patient. In the presence of LPS($0.01{\mu}g$, $0.1{\mu}g$, $1.0{\mu}g$), SEB($0.01{\mu}g$, $0.1{\mu}g$, $1.0{\mu}g$) respectively, cells($5{\times}10^3ml$) were cultivated in vitro. At 1, 3, and 5 days after incubation, cells were counted. Also, cells($2.5{\times}10^5ml$) were cultivated in EMEM with LPS(0.01, 0.1 and $1.0{\mu}g$), SEB(0.01, 0.1 and $1.0{\mu}g$) respectively and LPS($0.1{\mu}g$) and SEB($0.1{\mu}g$) in combination for 24, 48, and 72 hours respectively. Culture supernatants were harvested at 1, 2, and 3 days after incubation period and triplicate culture supernatants were pooled and TGF-${\beta}_1$ was assayed in duplicate. The results were as follows. 1. In facial dermal fibroblast induced with SEB and LPS respectively or in combination, the suppression of cell proliferation occurred very significantly at 1 day after incubation, compared with the control. In SEB exposure, the production of TGF-${\beta}_1$ was decreased very significantly at 1 day after incubation, compared with the control. However, in LPS, SEB and LPS exposure, the production of TGF-${\beta}_1$ was increased very significantly at 1 day after incubation, compared with the control. 2. In hypertrophic scar fibroblast induced with SEB and LPS respectively or in combination, the suppression of cell proliferation did not occur at 1 day after incubation, compared with the control. In SEB and LPS exposure in combination, the production of TGF-${\beta}_1$ was increased very significantly at 1 day after incubation, compared with the control. However, the production of TGF-${\beta}_1$ did not occur in SEB and LPS exposure respectively. In conclusion, the concentration of bacterial toxins and the incubation period correlated with cell proliferation and production of TGF-${\beta}_1$ very significantly and both fibroblasts have different phenotype each other in this regard. This data suggest that the significant production of TGF-${\beta}_1$ may develope abnormal wound healing associated with tissue fibroproliferative disorder, such as hypertrophic scar and keloid formation.

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파골세포에 대한 Transforming Growth Factor-$\beta$의 활성화 작용 (Transforming Growth Factor-Beta Stimulates Osteoclastic Bone Resorption in vitro)

  • 양대석;김일찬;고성희;유병제;남궁용;강신성;이창호
    • 한국동물학회지
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    • 제39권3호
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    • pp.317-324
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    • 1996
  • 파골세포는 골조직을 분해하는 세포로 알려져 있다. 따라서, 파골세포 활성조절은 골조직의 성장과 재조합의 조절에 있어 매우 중요한 의미를 갖는다. 기관배양을 통해 파골세포의 활성을 조절하는 여러가지 인자들이 알려져 있다. 그 중에서 transforming growth factor-$\beta$ (TGF-$\beta$)는 골조직 대사에 중요한 영향을 미치는 것이 알려져 있고, 또한 골조직내에 다량 존재하고 있기 때문에, TGF-$\beta$의 파골세포에 대한 효과를 알아보는 것은 전체 파골작용의 조절기작을 알아보는데 있어 중요한 의미를 갖는다. 본 연구인들은 계배를 이용한 파골세포의 배양법을 개발하였고, 이를 파골세포 활성을 측정하는데 사용하였다. 이 방법을 통해, TGF-$\beta$1이 파골세포의 골분해 활성을 증가시킨다는 것을 알수 있었다. 또한, 이러한 활성작용은 TGF-$\beta$의 파골세포에 대한 직접적인 효과라기 보다는 다른 세포를 통한 간접적인 효과일 가능성이 높다는 사실을 알 수 있었다. TGF-$\beta$에 의한 파골세포의 활성화는 nordihydroguaiaretic acid에 의해 현저하게 저해된 반면, idomethacin에 의해서는 저해되지 않았다. 이러한 실험결과들은 TGF-$\beta$가 arachidonic acid의 lipoxygenase 유도체를 통해 파골세포의 영향을 미칠 가능성을 제시하고 있다.

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4-O-Methylhonokiol Protects HaCaT Cells from TGF-β1-Induced Cell Cycle Arrest by Regulating Canonical and Non-Canonical Pathways of TGF-β Signaling

  • Kim, Sang-Cheol;Kang, Jung-Il;Hyun, Jin-Won;Kang, Ji-Hoon;Koh, Young-Sang;Kim, Young-Heui;Kim, Ki-Ho;Ko, Ji-Hee;Yoo, Eun-Sook;Kang, Hee-Kyoung
    • Biomolecules & Therapeutics
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    • 제25권4호
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    • pp.417-426
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    • 2017
  • 4-O-methylhonokiol, a neolignan compound from Magnolia Officinalis, has been reported to have various biological activities including hair growth promoting effect. However, although transforming growth factor-${\beta}$ (TGF-${\beta}$) signal pathway has an essential role in the regression induction of hair growth, the effect of 4-O-methylhonokiol on the TGF-${\beta}$ signal pathway has not yet been elucidated. We thus examined the effect of 4-O-methylhonokiol on TGF-${\beta}$-induced canonical and noncanonical pathways in HaCaT human keratinocytes. When HaCaT cells were pretreated with 4-O-methylhonokiol, TGF-${\beta}1$-induced G1/G0 phase arrest and TGF-${\beta}1$-induced p21 expression were decreased. Moreover, 4-O-methylhonokiol inhibited nuclear translocation of Smad2/3, Smad4 and Sp1 in TGF-${\beta}1$-induced canonical pathway. We observed that ERK phosphorylation by TGF-${\beta}1$ was significantly attenuated by treatment with 4-O-methylhonokiol. 4-O-methylhonokiol inhibited TGF-${\beta}1$-induced reactive oxygen species (ROS) production and reduced the increase of NADPH oxidase 4 (NOX4) mRNA level in TGF-${\beta}1$-induced noncanonical pathway. These results indicate that 4-O-methylhonokiol could inhibit TGF-${\beta}1$-induced cell cycle arrest through inhibition of canonical and noncanonical pathways in human keratinocyte HaCaT cell and that 4-O-methylhonokiol might have protective action on TGF-${\beta}1$-induced cell cycle arrest.

Expression Patterns of $TGF-{\beta}1,\;TGF-{\beta}$ Receptor Type I, II and Substrate Proteins Smad 2, 3, 4 and 7 in Bovine Oocytes and Embryos

  • Chung, Hak-Jae;Kim, Bong-Ki;Kim, Jong-Mu;Lee, Hyun-Gi;Han, Joo-Hee;Kim, Nam-Hyung;Park, Jin-Ki;Seong, Hwan-Hoo;Yang, Boh-Suk;Chang, Won-Kyong;Ko, Yeoung-Gyu
    • Reproductive and Developmental Biology
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    • 제30권4호
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    • pp.271-277
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    • 2006
  • Transforming growth $factor-{\beta}\;(TGF-{\beta})$ has been shown to have a positive effect on in vitro fertilization (IVF) and has been reported to stimulate meiosis at follicular level in variety of species. The study was designed to determine the expression patterns of $TGF-{\beta}1,\;TGF-{\beta}$ receptors type I, II and Smads gene in bovine oocytes and embryos. $TGF-{\beta}1$ and their receptors were observed in the unfertilized oocytes. $TGF-{\beta}1$ and type II receptor were not expressed at the blastocyst stage, however, only type I receptor was exclusively observed at the same stage. The blastocyst stage, in particular, showed high levels of mRNA expression patterns containing a $TGF-{\beta}1$ type I receptor. The mRNA expression pattern of Smad 2 at all stages of embryonic development was similar in all respect with $TGF-{\beta}1$ type I receptor. On the contrary, Smad 3 and 4 were expressed with high and low level mRNA at the blastocyst stage. In conclusion. it is suggested that $TGF-{\beta}1$ signaling may be regarded as an important entity during the preimplantation embryo development.

The Effects of Retinoic Acid and MAPK Inhibitors on Phosphorylation of Smad2/3 Induced by Transforming Growth Factor β1

  • Lee, Sang Hoon;Shin, Ju Hye;Shin, Mi Hwa;Kim, Young Sam;Chung, Kyung Soo;Song, Joo Han;Kim, Song Yee;Kim, Eun Young;Jung, Ji Ye;Kang, Young Ae;Chang, Joon;Park, Moo Suk
    • Tuberculosis and Respiratory Diseases
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    • 제82권1호
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    • pp.42-52
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    • 2019
  • Background: Transforming growth factor ${\beta}$ (TGF-${\beta}$), retinoic acid (RA), p38 mitogen-activated protein kinase (MAPK), and MEK signaling play critical roles in cell differentiation, proliferation, and apoptosis. We investigated the effect of RA and the role of these signaling molecules on the phosphorylation of Smad2/3 (p-Smad2/3) induced by TGF-${\beta}1$. Methods: A549 epithelial cells and CCD-11Lu fibroblasts were incubated and stimulated with or without all-trans RA (ATRA) and TGF-${\beta}1$ and with MAPK or MEK inhibitors. The levels of p-Smad2/3 were analyzed by western blotting. For animal models, we studied three experimental mouse groups: control, bleomycin, and bleomycin+ATRA group. Changes in histopathology, lung injury score, and levels of TGF-${\beta}1$ and Smad3 were evaluated at 1 and 3 weeks. Results: When A549 cells were pre-stimulated with TGF-${\beta}1$ prior to RA treatment, RA completely inhibited the p-Smad2/3. However, when A549 cells were pre-treated with RA prior to TGF-${\beta}1$ stimulation, RA did not completely suppress the p-Smad2/3. When A549 cells were pre-treated with MAPK inhibitor, TGF-${\beta}1$ failed to phosphorylate Smad2/3. In fibroblasts, p38 MAPK inhibitor suppressed TGF-${\beta}1$-induced p-Smad2. In a bleomycin-induced lung injury mouse model, RA decreased the expression of TGF-${\beta}1$ and Smad3 at 1 and 3 weeks. Conclusion: RA had inhibitory effects on the phosphorylation of Smad induced by TGF-${\beta}1$ in vitro, and RA also decreased the expression of TGF-${\beta}1$ at 1 and 3 weeks in vivo. Furthermore, pre-treatment with a MAPK inhibitor showed a preventative effect on TGF-${\beta}1$/Smad phosphorylation in epithelial cells. As a result, a combination of RA and MAPK inhibitors may suppress the TGF-${\beta}1$-induced lung injury and fibrosis.

Suppression of ADAM 10-induced Delta-1 Shedding Inhibits Cell Proliferation During the Chondro-Inhibitory Action of TGF-β3

  • Jin, Eun-Jung;Choi, Young-Ae;Sonn, Jong-Kyung;Kang, Shin-Sung
    • Molecules and Cells
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    • 제24권1호
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    • pp.139-147
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    • 2007
  • Although transforming growth factors (TGFs) are implicated in the process of endochondral ossification, which is initiated by the differentiation of mesenchymal cells into chondrocytes, it is not clear how $TGF-{\beta}3$ regulates the chondrogenic differentiation of limb bud mesenchymal cells. Here, differential display polymerase chain reaction (DD-PCR) screening and RT-PCR analysis revealed that transcripts of A Disintegrin And Metalloprotease 10 (ADAM 10) decreased during the chondro-inhibitory action of $TGF-{\beta}3$ on cultured chick leg bud mesenchymal cells. Electroporation of ADAM 10 morpholino antisense oligonucleotides inhibited the ectodomain shedding of delta-1, and cell proliferation and subsequent precartilage condensation, in a manner similar to that caused by $TGF-{\beta}3$. The suppression of mesenchymal cell proliferation induced by $TGF-{\beta}3$ and ADAM 10 morpholino antisense oligonucleotides was reversed by activation of ADAM 10 with phorbol 12-myristate 13-acetate (PMA) or knockdown of Notch-1 with siRNA. Collectively, these data indicate that, in cultured chick leg bud mesenchyme cells, $TGF-{\beta}3$ downregulates ADAM 10 and inhibits cell proliferation and subsequent precartilage condensation by inhibiting the ectodomain shedding of delta-1, and that this results in the activation of Notch signaling.

일측성 요로폐쇄에 의한 실험적 신 간질 섬유화에서 Phosphodiesterase(PDE) 억제제의 항 섬유화 작용 (Antifibrotic Effects of Phosphodiesterase (PDE) Inhibitor in Experimental Interstitial Fibrosis induced by Unilateral Ureteral Obstruction.)

  • 하일수;엄은영;강희경;한혜원;박혜원;정해일;최용
    • Childhood Kidney Diseases
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    • 제6권1호
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    • pp.85-91
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    • 2002
  • 서 론 : Phosphodiesterase (PDE) 억제제는 세포내 cAMP를 증가시키며, cAMP는 TGF-${\beta}1$에 의한 connective tissue growth factor (CTGF)의 발현을 억제하는 것으로 알러져 있다. 그러므로 저자들은 PDE 억제재가 TGF-${\beta}1$의 변화 없이 긴 섬유화를 억제할 수 있는지를 확인해 보고자 본 연구를 시행하였다. 방 법 : 백서에서 일측성 요관 결찰로 신 간질 섬유화를 유발하였다. 실험군에서는 PDE3 억제제인 cilostazol (1 g/L)이나 PDE5, PDE6, PDE8의 hybrid 억제제인 dipyridamole (750 mg/L)이 첨가된 음료수를 공급하였다. 일주일 후 신장을 적출하여 Masson-trichrome score를 평가하고, 신조직 조건배지에서 fibronectin과 TGF-${\beta}1$을 ELISA법으로 정량하였다. 결 과 : 대조군에 비해 cilostazol 군에서 Masson-trichrome score와 신조직 조건배지의 fibronectin 농도가 유의하게 낮았다(P<0.05). Dipyridamole군의 Masson-trichrome score와 조건배지의 fibronectin 농도도 대조군에 비해 낮아 보였으나 통계적 유의성을 보여주지 못했다. 신조직 조건배지의 TGF-${\beta}1$ 농도는 대조군, cilostazol군, dipyridamole군간에 차이가 없었다. 결 론 : 선택적 PDE3 억제제인 cilostazol은 TGF-${\beta}1$의 억제에 의존하지 않고 일측성 요로 폐쇄에 의한 신 섬유화를 억제하였다.

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근육세포 분화에 대한 TGF-β1과 OP-1의 억제 효과 (The Inhibitory Effect of TGF-β1 and OP-1 onto the Myogenic Differentiation)

  • 김병국;정성수
    • Journal of Oral Medicine and Pain
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    • 제26권1호
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    • pp.39-50
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    • 2001
  • In order to investigate the effect of Transforming growth factor ${\beta}1$(below TGF-${\beta}1$) and osteogenic protein-1(below Op-1) onto the myogenic differentiation, C2C12 satellite myoblastic cell line was cultured and treated with both growth factors. At first morphological changes with microscopical examination were examined, and isolated total RNA to analyse mRNA expression of bone marker proteins, muscle regulatory proteins, TGF-${\beta}$ receptor and their ligands by Northern blot analysis. And cellular proliferative inducibility of both growth factors was also tested to C2C12 cells. Incubating the cell with $5ng/m{\ell}$ of TGF-${\beta}1$ until 4 days almost inhibited multinucleated myotube formation expressing muscular regulatory proteins, and induced decreasing Id proteins. However, no osteoblastic phenotypes was induced by TGF-${\beta}1$ in C2C12 cells. The mRNA expression of TGF-${\beta}$ receptors with TGF-${\beta}1$ was conversed after 48 hours cultured. Type I TGF-${\beta}$ receptor was seemed to play a role in negative signalling for inhibition of myogenic differentiation. OP-1 dose dependently induced ALP activity, osteopontine production and bone sialoprotein production at concentrations above $100ng/m{\ell}$ and osteocalcin production at concentrations above $300ng/m{\ell}$. The concentration of OP-1 required to induce these osteoblastic phenotypes was the same as that required to almost completely inhibit myotube formation. Incubation with above $100ng/m{\ell}$ OP-1 suppressed the expression of mRNA for muscular egulatory proteins from 2 days after incubation. Expression of Id-1, 2, 3 mRNA were stimulated by OP-1 at concentration above $300ng/m{\ell}$. When C2C12 cells were treated with both growth factors, TGF-${\beta}1$ potentiated the inhibitory effect of OP-1 on myotube formation and expression of mRNA for myogenin at 12 days. And TGF-${\beta}1$ reduced osteocalcin and bone sialoprotein production induced by OP-1 at 12 days in C2C12 cells. Both growth factor had no mitogenic effect. These results indicate that OP-1 converts the differentiation pathway of C2C12 myoblasts into that of osteoblastic lineage cells and it's not heritable, but TGF-${\beta}1$ does not and has reversible inhibitory activity on the myogenic differentiation. TGF-${\beta}1$ and OP-1 play a role in myogenic differentiation via different mechanism between them.

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