0

Cardiovascular and Metabolic Disease Center
Mitochondrial Research Affinity Collaboration-Laboratories & Engineering

Home > 0

New light on muscle efficiency: it is not the power-plant

  • 작성자한진
  • 작성일2006-03-24 19:29:31
  • 조회수2088
  • 첨부파일첨부파일
A recent study from Scandinavia shows that the well-known differences between individuals in the efficiency of converting energy stored in food to work done by muscles are related to muscle fibre type composition and to the content of specific molecules in muscle. When muscles contract they use energy that is derived from food. It is a two-step process. The first step occurs in mitochondria, where the energy from molecules like glucose or fats is locked away in ATP (adenosine triphosphate). This ATP travels from the mitochondria to sites in the muscle where energy is needed, and the energy is released and used. At both of these stages there is the possibility for energy to be lost, causing a reduction in efficiency. The proportion of food energy that ends up making the muscles move is a measure of the efficiency of the system, and this is known to vary considerably between people. The main theory is that this variation comes from differences in the efficiency with which mitochondria convert food energy to ATP. But results published in this fortnight’s edition of The Journal of Physiology indicate that any differences in the efficiency of individual mitochondria cannot explain the differences in overall efficiency between people. Consequently these differences must lie in the way the ATP is used within the muscle. The research was carried out on healthy human volunteers by a team of scientists working at the University of Southern Denmark, Odense, and the Karolinska Institute/GIH, in Stockholm, Sweden. It combined exercise testing of individuals, with laboratory analysis of muscle samples. The results showed that work efficiency was correlated with muscle fibre type composition and with the amount of UCP3 protein – muscles with high proportions of this protein had lower efficiencies than those with low proportions. “It’s too early to say whether UCP3 causes this difference, or whether it is a marker of some other process, but further research might someday lead to training strategies that will help us improve efficiency, or identify subjects who have the potential to become more efficient over time,” says lead author Martin Mogensen. “The work is an excellent example of integrative physiology, addressing questions both at the sub-cellular and whole body levels that have implications for basic muscle energetics as well as athletic performance,” says Professor Edward Coyle, of the University of Texas at Austin, in an accompanying editorial. Source: Blackwell Publishing Ltd.
Total406 [ page4/28 ]
No. 제목 작성자 작성일 조회수
361 제 6회 논문연구계획서 발표대회: 최성우 학생 우수상 수상 첨부파일 2010.04.28 최성우 2010.04.28 2,859
360 다이어트 운동과 AMPK와의 관계 2010.04.20 고태희 2010.04.20 4,609
359 인슐린 생산 베타세포 재생 가능 2010.04.06 김형규 2010.04.06 3,453
358 축하합니다. 김나리 선생님: 2010 국제협력연구사업 선정 2010.03.05 한진 2010.03.05 3,581
357 동맥경화 촉진 유전자 찾아냈다...이화여대 오구택 교수 2010.02.25 허혜진 2010.02.25 3,293
356 국지적 항산화단백질 조절 메커니즘 규명...국가과학자 이서구 이화여대 교수 2010.02.25 허혜진 2010.02.25 3,295
355 Prog Biophys Mol Biol논문 accept소식 2010.02.20 박원선 2010.02.20 2,662
354 Pflugers Arch논문 accept소식 2010.02.17 박원선 2010.02.17 1,912
353 장미 박사님 질병관리본부 합격 2010.02.16 박원선 2010.02.16 2,976
352 Seaons's Greetings to ALL 첨부파일 2010.01.04 한진 2010.01.04 1,663
351 안준석 제 5회 부산미래과학자상 수상자 선정 첨부파일 2009.12.02 한진 2009.12.02 4,677
350 인슐린 신호전달과 미토콘드리아 기능을 통합시키는 Foxo1 첨부파일 2009.11.24 홍다혜 2009.11.24 5,358
349 심혈관·대사질환 10대 주목 프로젝트 선정 2009.11.16 한진 2009.11.16 2,357
348 JPS논문 accept소식 2009.11.06 박원선 2009.11.06 1,724
347 Bone논문 accept소식 2009.11.05 박원선 2009.11.05 2,369
처음이전 1 2 3 4 5 6 7 8 9 10 다음 마지막