• Title/Summary/Keyword: 근원세포

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Alteration in the Transferrin Receptor during the Chick Myoblast Fusion in Culture (계배 근원세포의 융합에 따른 Transferrin 수용체의 변화)

  • 이창호;유병제;전영주;정진하;하두봉
    • The Korean Journal of Zoology
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    • v.32 no.2
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    • pp.163-175
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    • 1989
  • Transferrin (Tf) has been known to exert profound effect on the myoblast differentiation in uirto. Therefore, the changes in the amount and affinity of the Tf receptor would accompany the myoblast differentiation. To investigate this possibility, we exarnined the afteration pattern in the level of the Tf receptor during the myoblast fusion. The level of Tf receptor was assayed by measuring the bound 125 I-Tf onto the surface of cultured myoblasts, and it was known that the level of Tf receptor reached the maximum at about 12 hr before the initi ation of the myoblast fusion and decreased as the differentiation proceeded, and that the affinity of Tf receptor to Tf was also decreased. In addition, various inhibitiors of the myoblast fusion also influenced the level of the Tf receptor. Accroding to these results, it is postulated that the level of Tf receptor is highly regulated during the myoblast differentiation.

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Alterations in the Level of Calpain During the Differentiation of Chick Embryonic Muscle Cells in Culture (배양 근원세포의 분화에 따른 Calpain의 활성 및 양적 변화)

  • 곽규봉;정성수;박혜경;김혜선;정진하;하두봉
    • The Korean Journal of Zoology
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    • v.33 no.2
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    • pp.158-165
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    • 1990
  • Proteolytic activity of calpain was found to increase as myoblast fusion proceeds. At 60 hr after cell seeding, lis activity reached to a maximal level and then slighdy decreased thereafter. Similarly, the protein level of calpain reached to a maximal level just proir to the initiation of fusion and remained elevated upon prolonged culture as analyzed by immunoblol using anti-calpain antiserum. These results suggest that the synthesis of calpain is regulated during myogenesis and its proteolytic activity may be related with the process of myoblasts fusion.

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Studies on the differentiation of Myoblasts: Molecular Cloning of differentiation related Genes in the Chick Embryonic Myoblasts by Differential Hybridization. (근세포 분화에 관한 연구: 차별 혼성화 스크리닝법에 의한 근원세포 분화 관련 유전자의 클로닝)

  • 강봉석;장세헌유병제양재섭
    • The Korean Journal of Zoology
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    • v.37 no.2
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    • pp.240-248
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    • 1994
  • 골격근 세포는 미분화 단핵 근원세포로부터 신장과 융합을 거쳐 다핵 횡문근섬유로 분화되어 가며 동시에 근특이 유전자의 발현이 선택적으로 일어난다. 본 연구에서는 계배 배양 근원세포의 분화동안 유전자 발현 조절 양상에 대한 연구를 위해, 계배 근원세포를 72시간 배양한 근섬유로부터 CDNA 라이브러리를 제작하였다. 이 cDNA 라이브러리를 미분화 단핵 근원세포(배양 36시간)와 분화된 다핵 근섬유(배양 72시간)의 poly(A)+ RNA 주형에서 합성된 [32P〕cDNA를 Probe로 사용한 differential plaque hybridization 방법으로 스크리닝하였다 분화된 다핵 근섬유 CDNA probe에 강한게 흔성화되는 CDNA clone을 선별하여 클로닝하였다. 선별한 CDNA clone 들 중 하나는 약 1.3 Kb 크기의 삽입절편을 갖고 있는 것으로 나타났고, 이 CDNA를 probe로 사용하여 northern blotting 한 결과, 이 CDNA엑 대한 유전자는 미분화 단핵 근원세포에서 분화된 다핵 근섬유로 분화가 진행됨에 따라 유전자 산물인 RNA 양이 증가되는 것으로 나타났다 또한 이 1.3 Kb CDNA에 대한 RNA의 크기는 약 2 7 Kb로 확인되었다.

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Studies on Specific Genes Related to the Regulation of Muscle Cell Differentiation (근세포 분화 조절에 관련된 특이 유전자에 관한 연구)

  • 강성구;김상해
    • The Korean Journal of Zoology
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    • v.35 no.3
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    • pp.287-294
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    • 1992
  • 배양 중의 골격근 세포는 증식을 거쳐 세포융합을 통해 다핵세포로 분화되므로 세포분화의 연구에 좋은 모델로서 이용되고 있다. 이전 실험에서 근원세포 융합을 억제하는 단일클론항체(MII-3J31)가 제작되었으며(Kim et al., 1992)이 항체에 대한 항원은 분자량이 약 35 kDa인 세포막 단백질로 추정되었다. 본 실험에서는 13일 계배와 성체의 근섬유 mRNA에서 CDNA라이브러리를 제작하여 근원세포 분화에 특이적으로 나타나는 유전자를 추적하였다. 근원세포 융합에 관여하는 단백질에 대한 CDNA는 계배 13일 째의 근원세포 CDNA라이브러리에서 단일클론항체를 사용한 immunoscreening 방법을 이용하여 확인하였다. 이 CDNA의 크기는 약 1.5 kb였다. 한편 13일 계배와성체 근섬유 CDNA 라이브러 리를 이용하여 13일 계배에만 특이하게 유전자 발현 이 일어 나고 성체에서는 나타나지 않는 약 0.8 kb의 CDNA플 찾았다.

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Effect of Retinoic Acid on Membrane Fusion and Expression of Fibronectin in Chick Embryonic Myoblasts (Retinoic Acid가 배양게배 근원세포의 융합과 Fibronictin의 발현에 미치는 영향)

  • 김혜선;정필중;강만식;정진하;하두봉
    • The Korean Journal of Zoology
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    • v.38 no.4
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    • pp.483-489
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    • 1995
  • Retinoic acid was found to block membrane fusion of chick embryonic myoblasts in culture. This effed was dosedependent and could he reversed upon removal of the agent from the culture medium. Furthermore, the retinoic acid-mediated inhibition of membrane fusion was observed with the fusion competent cells but not with the cells that had already been committed for fusion, indicating that the effect of RA is differentiation stage-specific. However, retinoic acid showed little or no effect on the ability of the cells to form bipolar shape and to align along their axes. Neither the cell proliferation nor accumulation of muscle specific proteins, such as creatine kinase and tropomyosin, was impaired significantly. On the other hand, retinoic acid blocked the differentiation time~ependent loss of fibronectin, whose process is prerequisite for myoblast fusion. These results suggest that retinoic add acts as a specific inhibitor of membrane fusion by preventing the loss of fibronectin from the differentiating myoblasts.

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The Presence in Embryo Extract of a Myotrophic Protein That Affects Proliferation and Fusion of Chick Embryonic Myoblasts in Culture (배양 계배 근원세포의 분화에 미치는 계배 추출물내 Myotrophic Protein의 영향)

  • 유병제;이창호;곽규봉;정진하;하두봉
    • The Korean Journal of Zoology
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    • v.31 no.3
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    • pp.207-217
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    • 1988
  • A myotrophic protein that seemed to he eseentiai for the hision of chick embryonic myoblasts in culture was isolated from chick embryo extrad and was found to be identical or at least similar to the iron-transporting protein, transferrin. Embryo extract seemed to contain, in addition to this myotrophic protein, a heat stable protein that inhibits the fusion of myoblasts. Iron seemed to he necessary for myoblasts to fuse and it was supposed that the role of the myotrophic protein m myoblast fusion is to supply iron to the cell. The numher of the myotrophic protein receptors on myoblast surface membrane decreased immediately after the start of myoblast fusion, supposedly due to the decreased need of iron after the fusion once commenced. It was estimated that endocytosis of myotrophic protein took about 10 minutes and one recycling about 2 hours. The accumulation of iron in myoblasts continued linearly with cultre time and endocytosis of the myotrophic protein occured at a constant rate.

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Effects of Catecholamine on the Fusion of Chick Embryo Myoblasts in vitro (鷄胚筋原細胞의 融合에 미치는 카테콜아민의 影響)

  • Kang, Man-Sik;Ha, Doo-Bong;Lee, Chung-Choo;Park, Yung-Chul;Hyockman Kwon
    • The Korean Journal of Zoology
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    • v.27 no.2
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    • pp.73-84
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    • 1984
  • In order to investigate the effect of neurotransmitter on myoblast differentiation in vitro, the effects of dopamine and epinephrine on myoblast fusion and on the intracellular cAMP level in cultured myoblasts were examined. Dopamine $(3\\times10^{-5}M)$ and epinephrine $(3\\times10^{-5}M)$, when added at 34 hr after cell plating, markedly inhibited myoblast fusion, and dopamine was more potent than epinephrine. Both dopamine and epinephrine had no effect on intracellular cAMP level. At the same time, exogeneous dbcAMP, $PGE_1$, and aspirin were used to examine whether cAMP is involved in myoblast differentiation. dbcAMP $(1\\times10^{-4}M)$ inhibited myoblast fusion, whereas $PGE_1 (3\\times10^{-6}M)$ had no inhibitory effect, rather enhancing myoblast fusion. Aspirin, an inhibitor of PG synthetase, was shown to inhibit myoblast fusion. Possible mechanism by which dopamine or epinephrine at a specific concentration used inhibits myoblast fusion is discussed.

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The Effects of Fractions of Chick Embryo Extract on the Fusion of Cultured Chick Embryonic Myoblasts (培養 鷄胚 筋原細胞의 融合에 미치는 鷄胚 抽出液 分劃의 영향)

  • Ha, Doo-Bong;Lee, Chung-Choo;Park, Young-Chul;Lim, Woon-Ki;Yoo, Byoung-Je
    • The Korean Journal of Zoology
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    • v.28 no.3
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    • pp.179-193
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    • 1985
  • In order to find factors which are essential for the differentiation of chick embryonic myoblasts in culture, chick embryo extract was fractionated by ammonium sulfate or/and Sephadex G-75, and the effects of each fraction on the proliferation and fusion of the myoblasts were examined. The results obtained were as follows: (1) High concentration of embryo extract in the culture medium enhanced the cell proliferation and delayed the fusion of myoblasts. (2) The Sephadex G-75 fractions of embryo extract having proteins of molecular weight between 40,000 and 22,000 enhanced the proliferation and fusion of myoblasts when added to culture media. (3) The fraction of embryo extract precipitated in $60\\sim95%$ saturated ammonium sulfate solution enhanced evidently both the proliferation and fusion of myoblasts. Elution of this effective fraction by Sephadex G-75 showed similar elution profile and effects on the myoblast differentiation as those observed by Sephadex G-75 chromatography of the whole embryo extract, suggesting that the Sephadex fractions and ammonium sulfate fractions contain the same factors that enhance the proliferation and fusion of myoblasts.

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Effect of Fe3$^+$ on Differentiation of Chick Embryonic Myoblasts Cultured in nitro (배양계배 근원세포의 분화에 미치는 Fe3$^+$의 영향)

  • 유병제;지승완
    • The Korean Journal of Zoology
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    • v.34 no.4
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    • pp.610-617
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    • 1991
  • 계배 근원세포의 분화 및 증식에 미치는 F3+의 영향을 조사하였다. 철이 없는 배양액은 근원 세포의 분화와 증식을 억제하는 것으로 나타났으며 , 따라서 근원세포의 분화에 철과 transferrin (Tf)은 필수적이다. 또한, 철 대신에 Co2+가 부착된 Tf가 첨가된 배양액에서도 근세포의 분화가 정상적으로 일어나는 것으로 나타났다. Lysosomotrophic amine(chloroquine, $\mu$M 수준;ammonium chloride, mM 수준)은 근세포의 분화와 증식을 억제시켰으며 , 근세포 분화의 철에 대한 의존성은 분화됨에 따라 둔화되었다. 세포내로의 T니 수송량은 MEM과 8102배양액에서 비슷하였고, 근세포가 분화됨에 따라 감소하였다. Lysosomotrophic azine은 최소한 3시간이 내에서는 세포내로 수송되는 Tf의 양에 영향을 미치지 못하였다.

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Calpeptin Blocks Myogenic Time-dependent Loss of Cytoskeletal Proteins and Membrane Fusion of Chick Embryonic Myoblasts (계배 근원세포의 분화에 따른 세포 골격 단백질의 분해와 막 융합에 대한 Calpeptin의 억제 효과)

  • 곽규봉;김혜선;전영주;박영순;정진하;하두봉
    • The Korean Journal of Zoology
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    • v.36 no.3
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    • pp.342-346
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    • 1993
  • The protein level of cytoskeletons in cultured myoblasts was found to gradually decrease during the course of myogenesis. This decrease, however, could be prevented by treatiag the ceils with calpeptin (benzyloxycarbonyl-Leu-nLeu-H), a cell penetrating inhibitor of calpain. In contrast, E-64, which also is a potent inhibitor of calpain but can not be transported into the cells, showed little or no effect. In addition, the treatment of calpeptin was found to stabilize a number of specific cytoskeletal proteins from degradation but without any effect on the pattern of total cells proteins. Furthermore, calpeptin, but not E-64, blocked myoblast fusion in a dose-dependent manner. These results suggest that calpain is responsible for the myogenic time-dependent loss of cytoskeletal proteins and that the degradative process is associated with myoblast fusion. These results also suggest that the differential effects of the calpain inhibitors depend on the permeabIlity of the drugs across the cell membrane.

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