Biology Reference
In-Depth Information
AMP-activated protein kinase beta subunits. Mol Biol Cell 21(15):2578-88. doi: 10.1091/mbc.
E10-03-0227
Moreno-Sanchez R, Saavedra E, Rodriguez-Enriquez S, Olin-Sandoval V (2008) Metabolic
control analysis: a tool for designing strategies to manipulate metabolic pathways. J Biomed
Biotechnol 2008:597913
Mungai PT, Waypa GB, Jairaman A, Prakriya M, Dokic D, Ball MK et al. (2011) Hypoxia triggers
AMPK activation through reactive oxygen species-mediated activation of calcium release-
activated calcium channels. Mol Cell Biol 31(17):3531-45. doi: 10.1128/MCB.05124-11
Muoio DM, Seefeld K, Witters LA, Coleman RA (1999) AMP-activated kinase reciprocally
regulates triacylglycerol synthesis and fatty acid oxidation in liver and muscle: evidence that
sn-glycerol-3-phosphate acyltransferase is a novel target. Biochem J 338(Pt 3):783-91
Musi N, Hirshman MF, Arad M, Xing Y, Fujii N, Pomerleau J et al. (2005) Functional role of
AMP-activated protein kinase in the heart during exercise. FEBS Lett 579(10):2045-50.
doi: 10.1016/j.febslet.2005.02.052
Nabuurs C, Huijbregts B, Wieringa B, Hilbers CW, Heerschap A (2010) 31P saturation transfer
spectroscopy predicts differential intracellular macromolecular association of ATP and ADP in
skeletal muscle. J Biol Chem 285(51):39588-96. doi: 10.1074/jbc.M110.164665
Nabuurs CI, Choe CU, Veltien A, Kan HE, van Loon LJ, Rodenburg RJ et al. (2013) Disturbed
energy metabolism and muscular dystrophy caused by pure creatine deficiency are reversible
by creatine intake. J Physiol 591(Pt 2):571-92. doi: 10.1113/jphysiol.2012.241760
Nakano A, Takashima S (2012) LKB1 and AMP-activated protein kinase: regulators of cell
polarity. Genes Cells 17(9):737-47. doi: 10.1111/j.1365-2443.2012.01629.x
Nakano A, Kato H, Watanabe T, Min KD, Yamazaki S, Asano Y et al. (2010) AMPK controls the
speed of microtubule polymerization and directional cell migration through CLIP-170 phos-
phorylation. Nat Cell Biol 12(6):583-90. doi: 10.1038/ncb2060
Nascimben L, Ingwall JS, Pauletto P, Friedrich J, Gwathmey JK, Saks V et al. (1996) Creatine
kinase system in failing and nonfailing human myocardium. Circulation 94(8):1894-901
Neely J, Morgan H (1974) Relationship between carbohydrate and lipid metabolism and the
energy balance of heart muscle. Annu Rev Physiol 63:413-59
Neely JR, Denton RM, England PJ, Randle PJ (1972) The effects of increased heart work on the
tricarboxylate cycle and its interactions with glycolysis in the perfused rat heart. Biochem J 128
(1):147-59
Nemutlu E, Zhang S, Gupta A, Juranic NO, Macura SI, Terzic A et al. (2012) Dynamic phosphome-
tabolomic profiling of human tissues and transgenic models by 18O-assisted (3)(1)P NMR and
mass spectrometry. Physiol Genomics 44(7):386-402. doi: 10.1152/physiolgenomics.00152.2011
Neubauer S (2007) The failing heart-an engine out of fuel. N Engl J Med 356(11):1140-51
Neumann D, Schlattner U, Wallimann T (2003) A molecular approach to the concerted action of
kinases involved in energy homoeostasis. Biochem Soc Trans 31(Pt 1):169-74. doi: 10.1042/
Newsholme EA, Start C (1973) Regulation in metabolism. Wiley, London
Nivala M, Korge P, Weiss JN, Qu Z (2011) Linking flickering to waves and whole-cell oscillations
in a mitochondrial network model. Biophys J 101(9):2102-11. doi: 10.1016/j.bpj.2011.09.038
Oakhill JS, Chen ZP, Scott JW, Steel R, Castelli LA, Ling N et al. (2010) beta-Subunit
myristoylation is the gatekeeper for initiating metabolic stress sensing by AMP-activated
protein kinase (AMPK). Proc Natl Acad Sci USA 107(45):19237-41. doi: 10.1073/
pnas.1009705107
Oakhill JS, Steel R, Chen ZP, Scott JW, Ling N, Tam S et al. (2011) AMPK is a direct adenylate
charge-regulated protein kinase. Science 332(6036):1433-5. doi: 10.1126/science.1200094
Oakhill JS, Scott JW, Kemp BE (2012) AMPK functions as an adenylate charge-regulated protein
kinase. Trends Endocrinol Metab 23(3):125-32. doi: 10.1016/j.tem.2011.12.006
Oliveira SM, Zhang YH, Solis RS, Isackson H, Bellahcene M, Yavari A et al. (2012a)
AMP-activated protein kinase phosphorylates cardiac troponin I and alters contractility of
murine
ventricular
myocytes.
Circ
Res
110(9):1192-201.
doi: 10.1161/
CIRCRESAHA.111.259952
Search WWH ::




Custom Search