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        17-DMAG이 마우스 골격근에서 autophagy flux에 미치는 영향

        주정선(Jeong-sun Ju),이유현(Yoo-Hyun Lee) 한국생명과학회 2016 생명과학회지 Vol.26 No.4

        본 연구는 17-DMAG이 골격근에서 autophagy에 관여하는 가를 조사하기 위해, C2C12세포와 마우스 골격근에서 17-DMAG (Hsp90 억제제/Hsp72 활성제)을 처치하는 그룹과 autophagy 억제제(Bafilomycin 또는 colchicine)를 처치하는 그룹과 처치하지 않는 그룹을 동시에 두고 autophagy flux를 측정하였다. C2C12 배양세포에서 17-DMAG이 Hsp90 억제/hsp72 활성화시켰으며 Akt-mTOR 신호체계를 유의하게 감소시켰지만(p<0.05) autophagy marker 단백질인 LC3 II와 p62를 증가시키지 않았다. In vivo 모델의 경우 17-DMAG 처치가 배양세포에서 발견된 것처럼 Hsp90억제/hsp72를 활성화시켰고 Akt-mTOR 신호체계를 유의하게 감소시켰다(p<0.05). 반면 LC3 II와 p62 단백질 수준은 autophagy 억제제(colchicine) 처치 수준보다 더 높게 증가되었다. 이는 17-DMAG이 골격근에서 autophagy를 증가시키지만 C2C12 배양세포에서는 autophagy의 활성화가 제한적임을 암시한다. 현재 이러한 in vitro와 in vivo 모델에서의 차이는 불분명하다. The purpose of this study was to determine if heat shock proteins are involved in autophagy in skeletal muscle. We used the autophagy flux strategy, which is an LC3 II/p62 turnover assay conducted with and without an autophagy inhibitor, to determine whether 17-DMAG (an Hsp90 inhibitor/Hsp72 activator) stimulates autophagy in skeletal muscle. We treated C2C12 cells with 17-DMAG (500 nM) for 24 hr with and without the autophagy inhibitor (Bafilomycin A1, 200 ng/ml), and we injected C57BL/6 mice i.p. with 17-DMAG (10 mg/kg) daily for 7 days with and without colchicine as an autophagy inhibitor (0.4 mg/kg/day, administered on the last 2 days). C2C12 myotubes and tibialis anterior muscles were harvested for analysis of mTOR-dependent autophagy signaling pathway proteins and autophagic marker proteins (p62 and LC3 II) by Western blot analysis. The blots showed that 17-DMAG upregulated hsp72 and decreased Akt protein levels and S6 phosphorylation in C2C12 cells. However, an in vitro autophagic flux assay demonstrated that 17-DMAG did not increase LC3 II and p62 protein concentrations to a greater extent than Bafilomycin A1 treatment alone. Similarly, 17- DMAG increased Hsp72 protein levels and decreased the expression of Akt and the phosphorylation of S6 in mouse skeletal muscle. However, unlike the response seen in C2C12 myotubes, the p62 protein levels were significantly decreased in 17-DMAG-treated mouse skeletal muscle (~50%; p<0.05). The LC3 II protein levels in 17-DMAG-treated mice were increased ~2-fold more when degradation was inhibited by colchicine (p<0.01). This suggests that 17-DMAG stimulates basal autophagy in skeletal muscle but is not found in C2C12 myotubes.

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      • KCI등재

        목차 : 보문 ; 의류소재 교과내용의 패션산업 실무 활용에 관한 연구

        주정아 ( Jeong Ah Ju ) 한국의류학회 2012 한국의류학회지 Vol.36 No.4

        This study investigated the practical use of educational subjects and contents of materials in the fashion industry field and analyzed all data from respondents depending on business area and years of work in order to develop appropriate educational methods and courses. The survey was conducted with 151 questionnaires; 148 responses were used in the data analysis. The statistical analysis methods were frequency analysis, factor analysis, and ANOVA. The factors of educational subjects for Clothing and Textiles were classified into three categories of product planning, manufacturing and basic information, and manufacturingrelated subjects (including materials); subsequently, these showed a high practical use in the fashion business. There were significant differences in the practical use of educational subjects that depended on business areas and years of work for respondents. In the case of education of materials, the contents of fibers, knit fabrics and textile planning were used the most in various business areas; in addition, there were also significant differences in the practical use of knits, textile care, textile planning and trade, and textile retailing depending on business area.

      • KCI등재

        보문 : 의류학 분야 대학교육내용의 산업 실무 활용에 관한 연구 -의류소재 관련 교과목 분석을 중심으로-

        주정아 ( Jeong Ah Ju ),유효선 ( Hyo Seon Ryu ),김현아 ( Hyun Ah Kim ) 한국의류학회 2011 한국의류학회지 Vol.35 No.3

        This study analyzes the current educational curricula in the field of Clothing and Textiles in order to develop appropriate educational methods and courses. We reviewed the curricula offered by 58 Clothing and Textiles Departments at four-year universities in Korea. We analyzed the educational content of each curriculum by dividing all of the courses offered into eight categories. The analysis was based on the information posted on the universities` Internet websites, and the analysis was performed by using descriptive statistics. The results of this study are as follows: First, the educational courses of the Clothing and Textiles Departments are composed of, 36.2% design, 20.4% production, and 14.5% textile categories. In comparison with the results of a similar study conducted in 1999, emphases on the design, distribution, and marketing categories have increased, while the emphases on the production, apparel material, basic knowledge, and consumption science categories have decreased. Second, in the case of the apparel material category, basic knowledge of materials constituted 18.5%, the largest part of the category. The average number of units offered in the area of apparel materials by the 58 Departments was 17 units per year. The curricula were found to vary by regions of the country. The universities located in the Chungcheong region offer more textile material courses, but the universities in the Capital region offer fewer textile material courses than other regions. Departments that are affiliated with universities that emphasize Art and Design have more courses on basic knowledge, dyeing and finishing, and fabric design than other universities.

      • KCI등재
      • KCI등재

        지구성 훈련에 반응한 골격근의 미토콘드리아 항상성 조절

        주정선(Jeong-sun Ju) 한국생명과학회 2017 생명과학회지 Vol.27 No.3

        미토콘드리아의 항상성은 미토콘드리아 생합성과 마이토파지(자가포식에 의한 미토콘드리아 분해)로 불리는 2가지 주요 과정들에 의해 정교하게 조절되고 있다. 지구성 운동 훈련에 반응하여 골격근에서 미토콘드리아 생합성에 관한 기전들은 잘 정립되어 있는 반면 지구성 운동 훈련 후 골격근의 마이토파지 조절 기전과 마이토파지와 미토콘드리아 생합성의 협응을 조절하는 기전은 아직 명확히 밝혀져 있지 않다. 최근 연구들에 의하면 지구성 운동 훈련은 골격근에서 미토콘드리아 생합성, 미토콘드리아 역동성, 미토콘드리아 분해와 관련된 유전인자들의 발현을 증가시킨다고 하였다. 하지만 골격근에서 자가포식이 억제되었을 경우, 지구성 운동 훈련에 의한 미토콘드리아 생합성과 관련된 지표들인 Cox IV와 citrate synthase의 증가는 상쇄되었다. 따라서 자가포식과 마이토파지는 골격근의 미토콘드리아 생합성에 중요한 역할을 하며 정반대되는 이 두 과정(이화 또는 동화작용)의 협응 과정이 지구성 운동 훈련에 반응하여 대사적 기능과 지구력 운동 수행능력을 향상시키는 것과 같은 골격근의 적응에 중요한 듯하다. 지구성 운동은 미토콘드리아의 일정한 숫자를 유지시키기 위해 미토콘드리아 생합성, 미토콘드리아의 융합과 분열, 자가포식/마이토 파지들의 각각의 과정들을 조절하는 것으로 여겨진다. 지구성 운동 훈련은 골격근에서 마이토파지를 활성화시켜 미토콘드리아 양과 질을 조절하여 늙고 건강하지 않은 미토콘드리아를 젊고 건강한 미토콘드리아로 교체시킬 수 있다. 이 총론에서 미토콘드리아 생합성과 마이토파지의 분자학적 기전과 서로 상반되는 이 두 과정간의 협응이 골격근의 지구성 훈련에 대한 세포적 적응에 관련한다는 내용이 논의될 것이다. Mitochondrial homeostasis is tightly regulated by two major processes: mitochondrial biogenesis and mitochondrial degradation by autophagy (mitophagy). Research in mitochondrial biogenesis in skeletal muscle in response to endurance exercise training has been well established, while the mechanisms regulating mitophagy and the relationship between mitochondrial biogenesis and degradation following endurance exercise training are not yet well defined. Studies have demonstrated that endurance exercise training increases the expression levels of mitochondrial biogenesis-, dynamics-, mitophagy-related genes in skeletal muscle. However, the increased levels of mitochondrial biogenesis marker proteins such as Cox IV and citrate synthase, by endurance exercise training were abolished when autophagy/mitophagy was inhibited in skeletal muscle. This suggests that both autophagy/mitophagy plays an important role in mitochondrial biogenesis/homeostasis and the coordination between the opposing processes may be important for skeletal muscle adaptation to endurance exercise training to improve metabolic function and endurance exercise performance. It is considered that endurance exercise training regulates each of these processes, mitochondrial biogenesis, fusion and fission events and autophagy/mitophagy, ensuring a relatively constant mitochondrial population. Exercise training may also have contributed to mitochondrial quality control which replaces old and/or unhealthy mitochondria with new and/or healthy ones in skeletal muscle. In this review paper, the molecular mechanisms regulating mitochondrial biogenesis and mitophagy and the coordination between the opposing processes is involved in the cellular adaptation to endurance exercise training in skeletal muscle will be discussed.

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