Pns1000391 92..99
نویسنده
چکیده
The AMP-activated protein kinase (AMPK) is a sensor of cellular energy status, and a regulator of energy balance at both the cellular and whole body levels. Although ubiquitously expressed, its function is best understood in skeletal muscle. AMPK contains sites that reversibly bind AMP or ATP, with an increase in cellular AMP:ATP ratio (signalling a fall in cellular energy status) switching on the kinase. In muscle, AMPK activation is therefore triggered by sustained contraction, and appears to be particularly important in the metabolic changes that occur in the transition from resistance to endurance exercise. Once activated, AMPK switches on catabolic processes that generate ATP, while switching off energy-requiring processes not essential in the short term. Thus, it acutely activates glucose uptake (by promoting translocation of the transporter GLUT4 to the membrane) and fatty acid oxidation, while switching off glycogen synthesis and protein synthesis (the later via inactivation of the mammalian target-ofrapamycin pathway). Prolonged AMPK activation also causes some of the chronic adaptations to endurance exercise, such as increased GLUT4 expression and mitochondrial biogenesis. AMPK contains a glycogen-binding domain that causes a sub-fraction to bind to the surface of the glycogen particle, and it can inhibit glycogen synthesis by phosphorylating glycogen synthase. We have shown that AMPK is inhibited by exposed non-reducing ends in glycogen. We are working on the hypothesis that this ensures that glycogen synthesis is rapidly activated when glycogen becomes depleted after exercise, but is switched off again as soon as glycogen stores are replenished.
منابع مشابه
Variations in survival and perioperative complications between hospitals based on data from two phase III clinical trials for oesophageal cancer.
BACKGROUND Variations in institutional practice may contribute to different outcomes of cancer treatment. The impact of interinstitutional heterogeneity on outcomes between hospitals after oesophagectomy has not been examined previously using data from surgical clinical trials. METHODS The data from two phase III trials for oesophageal cancer were used. Japan Clinical Oncology Group (JCOG) 92...
متن کاملHenri Poincaré Prize of the IAMP
Oded Schramm was born in Israel slightly more than fourty years ago (Dec. 1961). He received his undergraduate education at the Hebrew University in Jerusalem (B.Sc. 1986, M.Sc. 1987), and following that pursued graduate studies at Princeton University (Ph.D. 1990), advised there in research by W.P. Thurston. He held research and academic appointments at Univ. Cal. San Diego (92), the Weizmann ...
متن کاملar X iv : h ep - t h / 92 07 06 2 v 1 1 6 Ju l 1 99 2 CTP TAMU - 57 / 92 EFI - 92 - 39 July , 1992
In this note we investigate the generalised critical N = 2 superstrings in (1, 2p) spacetime signature. We calculate the four-point functions for the tachyon operators of these theories. In contrast to the usual N = 2 superstring in (2, 2) spacetime, the four-point functions do not vanish. The exchanged particles of the four-point function are included in the physical spectrum of the correspond...
متن کاملar X iv : h ep - t h / 92 06 05 6 v 2 8 J ul 1 99 3 hep - th / 9206056 UCSBTH – 92 – 22 Revised July 1993 IS PURITY ETERNAL ?
Phenomenological and formal restrictions on the evolution of pure into mixed states are discussed. In particular, it is argued that, if energy is conserved, loss of purity is incompatible with the weakest possible form of Lorentz covariance.
متن کاملar X iv : h ep - p h / 92 12 25 2 v 2 1 4 D ec 1 99 2 UW / PT - 92 - 23 2 → n threshold production at tree level
The threshold behavior of a theory with two coupled scalar fields χ and φ is investigated. We compute the amplitude for two on-mass-shell χ-particles to produce an arbitrary number of φ-particles at rest in the tree approximation.
متن کامل