• 제목/요약/키워드: myogenesis

검색결과 98건 처리시간 0.033초

근감소 및 염증 예방을 위한 운동과 인터루킨(IL-interleukin)의 역할 (The role of myokine(interleukin) and exercise for the prevention of scarcopenia and anti-inflammation)

  • 변용현;박우영
    • 한국응용과학기술학회지
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    • 제35권2호
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    • pp.509-518
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    • 2018
  • 이 연구의 목적은 신체활동이 마이오카인 발현에 미치는 영향을 보고자 문헌고찰을 하였다. 신체적인 활동은 제2형 당뇨, 심혈관질환, 대장암, 치매 및 우울증과 같은 질환을 예방하는 역할을 하고 있다. 그리고 마이오카인(myokine)은 운동 훈련에 의해 분비되는 호르몬으로 뇌성장이나 알츠하이머 같은 질환 예방에 도움을 준다. 운동수행과정에서 수축하는 근육으로부터 분비되는 항염증 마이오카인의 생성과 대사 조절에 필요한 분비 활성화가 건강증진에 중요한 요인으로 보고 있다. 인체 골격근에서 분비되는 마이오카인 가운데 IL-4, IL-6, IL-7, IL-8, IL-15 등은 근육비대(hypertrophy)와 세포(myogenesis) 및 혈관생성(angiogenesis) 등의 조절에 관여한다. IL-6는 AMPK 활성화로 인한 대사중 지방 산화를 촉진시키는 작용을 하고, IL-1Ra, IL-10 과 sTNF-R 는 염증성 싸이토카인 $TNF-{\alpha}$의 분비를 억제한다. IL-15는 저항 운동시 근수축을 통한 발현량이 증가하어 근육 성장의 중요 합성요인으로 작용한다. 한편 IL-7 및 IL-8도 신호 전달 수용체 C-X-C를 통해 혈관신생을 촉진시킨다.

Mouse 유래 $C_2C_{12}$세포주에서 청심연자탕(淸心蓮子湯)의 심근세포 손상 억제 효과 (Effect of Chungsimyeonjatang on Myocardiac Cell Injury in Mouse Myoblast $C_2C_{12}$ Cells)

  • 윤현덕;신오철;신유정;김승모;박치상
    • 대한한방내과학회지
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    • 제28권2호
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    • pp.333-345
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    • 2007
  • Determination and differentiation of cells in the skeletal muscle lineage is positively regulated by cell-cell contact. differentiation proteins proposed to mediate this effect include both classical MyoD and MEF members : potential interactions between the promyogenic activities of these classes of protein, however, are unknown. We show here that MyoD and MEF, two promyogenic family members that determine to each other in a cis fashion, form ineraction with MyoD- and MEF. These proteins contain myosin heavy chains and are enriched at sites of cell-cell contact between myoblasts, Therefore, In differentiation of MyoD MEF from CST (Chungsimyeonjatang) interact dependently, suggesting that the interactions occur in a cis fashio : consistent with this conclusion, MyoD-mediated differentiation is required for myoblast to occur by CST. Inhibition in myoblasts of a MyoD by STP in its ability to associate with MEF interferes with differentiation as assessed by morphological and transcription level, suggesting that this interaction is functionally important in myogenesis. Also, some of the differentiation-mediated proteins that are required for myogenesis seem to be based on interdependent activities of promyogenic classical SMAD-subfamilly.

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계배 근원세포 분화에 따른 Fibronection의 수준과 그 수용체의 변화 (Alterations in the Level of Fibronectin and its Receptors during Chick Myoblast Differentiation)

  • 정창용;강만식
    • 한국동물학회지
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    • 제31권2호
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    • pp.95-103
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    • 1988
  • 배양 계배 근세포의 분호과정에서 fibronectin양의 변화를 immunoblotting법을 써서 정량해 본 결과 근세포의 분화에 따라 감소함을 알 수 있었다. 이처럼 근분화과정에서 fibronectin의 수준이 변하는 이유를 알아보기 위해서 fibronectin의 28,000 dalton(28 kDa)의 amino terminal fragment와 85,000 dalton (85kDa)의 cell binding fragment의 근원세포와의 상호작용에 관해 조사하여 보았다. 125 l-28 kDa fragment가 근원세포와 특이하게 결합하는 양상은 시간 경과에 따라 변하여 60분이내에 최대 수준에 도달하였다. 아울러 28 kDa fragment는 125 I-28 kDa fragment의 결합을 억제하였으나, 85 kDa fragment의 결합은 억제하지 않았다. 이러한 사실은 28 kDa fragment fibronectin수용체와 결합하고 cell adhesion수용체와는 결합하지 않음을 암시하는 것이다. 따라서 fibronectin수준의 감소는 근원세포에 존재하는 fibronectin수용체의 감소와 연관되는 현상으로 추정할 수 있었다.

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Deficiency of Anoctamin 5/TMEM16E causes nuclear positioning defect and impairs Ca2+ signaling of differentiated C2C12 myotubes

  • Phuong, Tam Thi Thanh;An, Jieun;Park, Sun Hwa;Kim, Ami;Choi, Hyun Bin;Kang, Tong Mook
    • The Korean Journal of Physiology and Pharmacology
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    • 제23권6호
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    • pp.539-547
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    • 2019
  • Anoctamin 5 (ANO5)/TMEM16E belongs to a member of the ANO/TMEM16 family member of anion channels. However, it is a matter of debate whether ANO5 functions as a genuine plasma membrane chloride channel. It has been recognized that mutations in the ANO5 gene cause many skeletal muscle diseases such as limb girdle muscular dystrophy type 2L (LGMD2L) and Miyoshi muscular dystrophy type 3 (MMD3) in human. However, the molecular mechanisms of the skeletal myopathies caused by ANO5 defects are poorly understood. To understand the role of ANO5 in skeletal muscle development and function, we silenced the ANO5 gene in C2C12 myoblasts and evaluated whether it impairs myogenesis and myotube function. ANO5 knockdown (ANO5-KD) by shRNA resulted in clustered or aggregated nuclei at the body of myotubes without affecting differentiation or myotube formation. Nuclear positioning defect of ANO5-KD myotubes was accompanied with reduced expression of Kif5b protein, a kinesin-related motor protein that controls nuclear transport during myogenesis. ANO5-KD impaired depolarization-induced $[Ca2^{+}]_i$ transient and reduced sarcoplasmic reticulum (SR) $Ca^{2+}$ storage. ANO5-KD resulted in reduced protein expression of the dihydropyridine receptor (DHPR) and SR $Ca^{2+}-ATPase$ subtype 1. In addition, ANO5-KD compromised co-localization between DHPR and ryanodine receptor subtype 1. It is concluded that ANO5-KD causes nuclear positioning defect by reduction of Kif5b expression, and compromises $Ca^{2+}$ signaling by downregulating the expression of DHPR and SERCA proteins.

Ginsenoside compound K ameliorates palmitate-induced atrophy in C2C12 myotubes via promyogenic effects and AMPK/autophagy-mediated suppression of endoplasmic reticulum stress

  • Kim, Tae Jin;Pyun, Do Hyeon;Kim, Myeong Jun;Jeong, Ji Hoon;Abd El-Aty, A.M.;Jung, Tae Woo
    • Journal of Ginseng Research
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    • 제46권3호
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    • pp.444-453
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    • 2022
  • Background: Compound K (CK) is among the protopanaxadiol (PPD)-type ginsenoside group, which produces multiple pharmacological effects. Herein, we examined the effects of CK on muscle atrophy under hyperlipidemic conditions along with its pro-myogenic effects. Further, the molecular pathways underlying the effects of CK on skeletal muscle have been justified. Methods: C2C12 myotubes were treated with palmitate and CK. C2C12 myoblasts were differentiated using CK for 4-5 days. For the in vivo experiments, CK was administered to mice fed on a high-fat diet for 8 weeks. The protein expression levels were analyzed using western blotting analysis. Target protein suppression was performed using small interfering (si) RNA transfection. Histological examination was performed using Jenner-Giemsa and H&E staining techniques. Results: CK treatment attenuated ER stress markers, such as eIF2a phosphorylation and CHOP expression and impaired myotube formation in palmitate-treated C2C12 myotubes and skeletal muscle of mice fed on HFD. CK treatment augmented AMPK along with autophagy markers in skeletal muscle cells in vitro and in vivo experiments. AMPK siRNA or 3-MA, an autophagy inhibitor, abrogated the impacts of CK in C2C12 myotubes. CK treatment augmented p38 and Akt phosphorylation, leading to an enhancement of C2C12 myogenesis. However, AMPK siRNA abolished the effects of CK in C2C12 myoblasts. Conclusion: These findings denote that CK prevents lipid-induced skeletal muscle apoptosis via AMPK/autophagy-mediated attenuation of ER stress and induction of myoblast differentiation. Therefore, we may suggest the use of CK as a potential therapeutic approach for treating muscle-wasting conditions associated with obesity.

Korean red ginseng suppresses mitochondrial apoptotic pathway in denervation-induced skeletal muscle atrophy

  • Ji-Soo Jeong;Jeong-Won Kim;Jin-Hwa Kim;Chang-Yeop Kim;Je-Won Ko;Tae-Won Kim
    • Journal of Ginseng Research
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    • 제48권1호
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    • pp.52-58
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    • 2024
  • Background: Skeletal muscle denervation leads to motor neuron degeneration, which in turn reduces muscle fiber volumes. Recent studies have revealed that apoptosis plays a role in regulating denervation-associated pathologic muscle wasting. Korean red ginseng (KRG) has various biological activities and is currently widely consumed as a medicinal product worldwide. Among them, ginseng has protective effects against muscle atrophy in in vivo and in vitro. However, the effects of KRG on denervation-induced muscle damage have not been fully elucidated. Methods: We induced skeletal muscle atrophy in mice by dissecting the sciatic nerves, administered KRG, and then analyzed the muscles. KRG was administered to the mice once daily for 3 weeks at 100 and 400 mg/kg/day doses after operation. Results: KRG treatment significantly increased skeletal muscle weight and tibialis anterior (TA) muscle fiber volume in injured areas and reduced histological alterations in TA muscle. In addition, KRG treatment reduced denervation-induced apoptotic changes in TA muscle. KRG attenuated p53/Bax/cytochrome c/Caspase 3 signaling induced by nerve injury in a dose-dependent manner. Also, KRG decreases protein kinase B/mammalian target of rapamycin pathway, reducing restorative myogenesis. Conclusion: Thus, KRG has potential protective role against denervation-induced muscle atrophy. The effect of KRG treatment was accompanied by reduced levels of mitochondria-associated apoptosis.

Homology Modelling of Chemerin like Receptor-1 (CMKLR1): Potential Target for Treating Type II Diabetes

  • B, Sathya.
    • 통합자연과학논문집
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    • 제10권1호
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    • pp.20-26
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    • 2017
  • Chemerin receptor, which predominantly expressed in immune cells as well as adipose tissue, was found to stimulate chemotaxis of dendritic cells and macrophages to the site of inflammation. Chemerin is a widely distributed multifunctional secreted protein implicated in immune cell migration, adipogenesis, osteoblastogenesis, angiogenesis, myogenesis, and glucose homeostasis. Recent studies suggest chemerin may play an important role in the pathogenesis of obesity and insulin resistance and it becomes a potential therapeutic target for treating type II diabetes. The crystal structure of chemerin receptor has not yet been resolved. Therefore, in the present study, homology modelling of CMKLR1 was done utilizing the crystal structure of human angiotension receptor in complex with inverse agonist olmesartan as the template. Since the template has low sequence identity, we have incorporated both threading and comparative modelling approach to generate the three dimensional structure. 3D models were generated and validated. The reported models can be used to characterize the critical amino acid residues in the binding site of CMKLR1.

단일클론항체를 이용한 배양 계배 근원세포의 융합과 연관된 단백질의 확인 (Identification of a Fusion-associated Protein in the Skeletal Myoblast Using Monoclonal Antibody)

  • Kim, Chons-Rak;Won
    • 한국동물학회지
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    • 제35권1호
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    • pp.29-36
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    • 1992
  • The present study describes the production of monoclonal antibodies against cultured chick myoblast to pursue critical proteins in muscle cell fusion. Among a panel of monoclonal antibodies, three, Mll-3H 13, Mll-3Hl8 and Mll-3H35 were inhibited movblast fusion. A single 101-kDa antigen reactive with monoclonal antibody Mll-3H35 was detected by radioimmu-noprecipitation or by immunoblotting. During the course of myogenesis, the level of the protein remarkably decreased as the cells there differentiated. These results suggest that the protein platys a direct role in the process of myoblast fusion mechanism.

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한우 태아기 6, 9개월령 등심 조직의 전사체 분석을 통한 근생성 및 지방생성 관여 유전자 발굴 (Transcriptome Analysis of Longissimus Tissue in Fetal Growth Stages of Hanwoo (Korean Native Cattle) with Focus on Muscle Growth and Development)

  • 정태준;정기용;박원철;손주환;박종은;채한화;권응기;안준상;;이지웅;임다정
    • 생명과학회지
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    • 제30권1호
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    • pp.45-57
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    • 2020
  • 동물의 근섬유는 배아기와 태아기를 거치며 형성하게 되며 출생 후에는 상처 치유를 위한 것 외에 근섬유 수를 늘리는 순수한 근섬유 형성은 없으며, 이미 존재하고 있는 근섬유의 비대로 근육의 성장이 이뤄진다. 따라서 태아기의 근육의 성장과 발달이 성체의 근육량 및 조성에 미치는 영향이 매우 크며 이 시기에 발현되는 유전자 및 기능을 구명하는 것은 최종적으로 육질, 육량에 개선시키기 위한기초 자료로 활용될 수 있을 것이다. 하지만 한우에서의 연구는 전무한 실정이다. 본 연구는한우 태아기 성장 단계별 근육의 성장과 발달에 관여하는 유전자를 찾기 위한 전사체 분석을 수행하였다. 한우 태아기 6, 9개월령 등심 조직 시료에서 생산한 전사체 자료를 대상으로 DESeq2와 edgeR을 활용하여 성장단계별 유전자의 발현량을 분석하여 차등발현유전자군을 추출했으며, 2개 소프트웨어서 공통적으로 추출된 유전자군(6개월령 특이 발현 유전자 913개, 9개월령 특이 발현 유전자 233개)을 차등발현유전자로 구명 하였다. 차등발현유전자군으로 분류하였다. 차등발현유전자군을 활용하여공발현 유전자 네트워크 분석을 구성하였으며, 유사한 발현 양상을 보이는 유전자들을 그룹화하여 6개월령 특이 발현 유전자군 5개, 9개월령 특이 발현 유전자군 2개의 모듈로 분류했다. 각 모듈은 Gene Ontology (GO) 및 KEGG pathway 분석으로 유의한 기능을 확인하였다. 그 결과, 한우 태아기 6, 9개월령 특이 발현 유전자 네트워크 중, 근육과 지방생성 대사회로와 관련된 2개의 모듈에 대해 네트워크 내에 허브 유전자를 선정할 수 있었다. STRING을 활용하여 단백질 상호작용 네트워크를 구성하고, MCC (maximal clique centrality) 점수를 활용하여 상위 10%의 유전자들을 공발현 분석의 모듈내 허브 유전자로 선정하였다. 그 결과 6개월령 특이 발현 유전자군의 모듈에서는 axin1(AXIN1) 유전자, 9개월령 특이 발현 유전자군 모듈에서는 succinate-CoA ligase ADP-forming beta subunit(SUCLA2) 유전자가 허브 유전자로 확인되었다. AXIN1 유전자는 선행 연구를 통해 6개월령에서 9개월령으로 넘어가면서 근섬유 수의 증식이 억제되고 지방생성이 활발히 이뤄지는 것에 핵심적인 역할을 하는 것으로 추정할 수 있었다. 또한, 시트르산 회로의 중요 요소인 SUCLA2 유전자는 소의 태아기 지방 조직 성장단계에 따라 유전자의 발현이 증가된다는 보고에 따라, 지방 대사와 관련된 유전자임을 알 수 있었다. 추후 한우 태아기 6, 9개월령에 특이적으로 발현된 유전자들을 대상으로 근육 및 지방 형성 관련 기능을 검증하는 후속 연구가 필요할 것이다.