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Molecular and Cellular Biochemistry 1997: Vol 174 Index PDF

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Preview Molecular and Cellular Biochemistry 1997: Vol 174 Index

Molecular and Cellular Biochemistry 174: 335-340, 1997. Index to Volume 174 Antoch J, see Durrieu G et al. Augustin W, Wiswedel I, Noack H, Reinheckel T, Reichelt O: Role of endogenous and exogenous antioxidants in the defence against functional damage and lipid peroxidation in rat liver mitochondria 199-205 Baniene R, see Mildaziene V et al. Bank W, Chance B: Diagnosis of defects in oxidative muscle metabolism by non-invasive tissue oximetry Barbiroli B, Iotti S, Lodi R: Jn vivo assessment of human skeletal muscle mitochondria respiration in health and disease Barnoux M-C, see Ferlin T et al. Basso E, see Scorrano L et al. Bastin ME, see Kemp GJ et al. Becker C, see Loffler M et al. Becker G, see Lindner A et al. Bédes F, see Mazat J-P et al. Bernardi P, see Scorrano L et al. Bessman SP, Mohan C: Insulin as a probe of mitochondrial metabolism in situ 91-96 Bettendorff L, Goessens G, Sluse FE: Reversibility of thiamine deficiency-induced partial necrosis and mitochon- drial uncoupling by addition of thiamine to neuroblastoma cell suspensions 121-124 Bezold R, see Hofmann S et al. Biagini G, see Lenaz G et al. Boonman AMC, see Scholte HR et al. Bovina C, see Lenaz G et al. Brdiczka D, see O’Gorman E et al Brierley EJ, Johnson MA, James OFW, Turnbull DM: Mitochondrial involvement in the ageing process. Facts and controversies 325-328 Brown GC: Nitric oxide inhibition of cytochrome oxidase and mitochondrial respiration: Implications for inflam- matory, neurodegenerative and ischaemic pathologies 189-192 Busch HFM, see Scholte HR et al. Buse G, see Zanssen S et al. Castedo M, see Petit PX et al. Castelli GP, see Lenaz G et al. Castelluccio C, see Lenaz G et al. Chance B, see Bank W Chretien D, see Rustin P et al. Clark JF, see Kemp GJ et al. Connern CP, see Halestrap AP et al. Dagys A, see Toleikis A et al. Daut J, see Kohnke D et al. Deshhouillers J-M, see Durrieu G et al. Dichgans J, see Schulz JB et al. DiMauro S, see Kaufmann P et al. Dorner A, Schulze K, Rauch U, Schultheiss H-P: Adenine nucleotide translocator in dilated cardiomyopathy: Pathophysiological alterations in expression and function 261-269 Dumoulin R, see Ferlin T et al. 336 Durrieu G, Letellier T, Antoch J, Deshouillers J-M, Malgat M, Mazat J-P: Identification of mitochondrial deficiency using principal component analysis 149-156 E]-Schahawi M, see Kaufmann P et al. Fato R, see Lenaz G et al. Ferlin T, Guironnet G, Barnoux M-C, Dumoulin R, Stepien G, Mousson B: Detection of mitochondrial DNA deletions by a screening procedure using the polymerase chain reaction 221-225 Flint Beal M, see Schulz JB et al. Formiggini G, see Lenaz G et al. Frank V, see Kadenbach B et al. Garstka HL, see MontoyaJ et al. Gellerich FN, see Laterveer FD et al. Gellerich FN, see Sperl W et al. Gellerich JF, see Van Dorsten FA et al. Genova ML, see Lenaz G et al. Gerbitz K-D, see Hofmann S et al. Gnaiger E, see Sperl W et al. Goessens G, see Bettendorff L et al. Griffiths EJ, see Halestrap AP et al. Guironnet G, see Ferlin T et al. Hager J, see Sperl W et al. Halestrap AP, Connern CP, Griffiths EJ, Kerr PM: Cyclosporin A binding to mitochondrial cyclophilin inhibits the permeability transition pore and protects hearts from ischaemia/reperfusion injury 167-172 Hassinen IE, see Majamaa K et al. Herman B, see Lemasters JJ et al. Hoek JB, Walajtys-Rode E, Wang X: Hormonal stimulation, mitochondrial Ca*+ accumulation, and the control of the mitochondrial permeability transition in intact hepatocytes 173-179 Hofmann E, see Lindner A et al. Hofmann S, Bezold R, Jaksch M, Kauthold P, Obermaier-Kusser B, Gerbitz K-D: Analysis of the mitochondrial DNA from patients with Wolfram (DIDMOAD) syndrome 209-213 Huizing M, see Trijbels FJM et al. Iotti S, see Barbiroli B et al. Jaksch M, see Hofmann §S et al. James OFW, see Brierley EJ et al. Jeneson JAL, Wiseman RW, Kushmerick MJ: Non-invasive quantitative *!P MRS assay of mitochondrial function in skeletal muscle in situ Joéckel J, see Loffler M et al. Johnson MA, see Brierley EJ et al. Kadenbach B, Frank V, Rieger T, Napiwotzki: Regulation of respiration and energy transduction in cytochrome c oxidase isozymes by allosteric effectors 131-135 Kalvenas A, see Mildaziene V et al. Kaufmann P, El-Schahawi M, DiMauro S: Carnitine palmitoyltransferase II deficiency: Diagnosis by molecular analysis of blood 237-239 Kaufhold P, see Hofmann S et al. Kay L, Rossi A, Saks V: Detection of early ischemic damage by analysis of mitochondrial function in skinned fibers Kemp GJ, Manners DN, Clark JF, Bastin ME, Radda GK: A theoretical model of some spatial and temporal aspects of the mitochondrion creatine kinase myofibril system in muscle Kemp GJ, see Taylor DJ et al. Kerr PM, see Halestrap AP et al. King MP, see Masucci JP et al. Kirches E, see Kunz WS et al. Klockgether T, see Schulz JB et al. Kohnke D, Schramm M, Daut J: Oxidative phosphorylation in myocardial mitochondria ‘in situ’: A calorimetric study on permeabilized cardiac muscle preparations 101-113 Klopstock T, Naumann M, Seibel P, Schalke B, Reiners K, Reichmann H: Mitochondrial DNA mutations in multiple symmetric lipomatosis 271-275 Korzeniewski B: Thermodynamic regulation of cytochrome oxidase 137-141 Korzeniewski B, see Mazat J-P et al. Kroemer G, see Petit PX et al. Kunz WS, Winkler K, Kuznetsov AV, Lins H, Kirches E, Wallesch CW: Detection of mitochondrial defects by laser fluorimetry Kushmerick MJ, see Jeneson JAL et al. Kushmerick MJ, see Wiseman RW Kuznetsov AV, see Kunz WS et al. Laterveer FD, Nicolay K, Gellerich FN: Experimental evidence for dynamic compartmentation of ADP at the mito- chondrial periphery: Coupling of mitochondrial adenylate kinase and mitochondrial hexokinase with oxidative phosphorylation under conditions mimicking the intracellular colloid osmotic pressure 43-5] Lemasters JJ, Nieminen A-L, Qian T, Trost LC, Herman B: The mitochondrial permeability transition in toxic, hypoxic and reperfusion injury 159-165 Lenaz G, Bovina C, Castelluccio C, Fato R, Formiggini G, Genova ML, Marchetti M, Pich MM, Pallotti F, Castelli GP, Biagini: Mitochondrial Complex I defects in aging 329-333 Letellier T, see Durrieu et al. Letellier T, see Mazat J-P et al. Lindner A, Hofmann E, Naumann M, Becker G, Reichmann H: Clinical, morphological, biochemical, and neuro- radiological features of mitochondrial encephalomyopathies. Presentation of 19 patients 297-303 Lins H, see Kunz WS et al. Lodi R, see Barbiroli B et al. Loffler M, Jockel J, Schuster G, Becker C: Dihydroorotat-ubiquinone oxidoreductase links mitochondria in the biosynthesis of pyrimidine nucleotides 125-129 Ludolph, AC, see Riepe MW Majamaa K, Rusanen H, Remes A, Hassinen IE: Metabolic interventions against complex I deficiency in MELAS syndrome 291-296 Majiene D, see Toleikis A et al. Malgat M, see Durrieu G et al. Malgat M, see Mazat J-P et al. Manners DN, see Kemp GJ et al. Marchetti M, see Lenaz G et al. Marcinkeviciute A, see Mildaziene V et al. Masucci JP, Schon EA, King MP: Point mutations in the mitochondrial tRNA* gene: Implications for pathogenesis and mechanism 215-219 Matthews RT, see Schulz JB et al. Maurer I, Moller H-J: Inhibition of complex I by neuroleptics in normal human brain cortex parallels the extrapyra- midal toxicity of neuroleptics 255-259 Mayr U, see Sper! W et al. Mazat J-P, Letellier T, Bédes F, Malgat M, Korzeniewski B, Jouaville LS, Morkuniene R: Metabolic control analysis and threshold effect in oxidative phosphorylation: Implications for mitochondrial pathologies 143-148 338 Mazat J-P, see Durrieu G et al. Mignotte B, see Petit PX et al. Mildaziene V, Baniene R, Marcinkeviciute A, Nauciene Z, Kalvenas A, Zimkus A: Tetraphenylphosphonium inhibits ox:dation of physiological substrates in heart mitochondria Moller H-J, see Maurer | Mohan C, see Bessman SP Molnar M, see Schréder JM Molnar M, see Zanssen S et al. Montoya J, Garstka HL, Perez-Martos A, Wiesner RJ: Regulation of mitochondrial transcription by mitochondrial transcription factor A 227-230 Mousson B, see Ferlin T et al. Muller H-J, see Van Dorsten FA et al. Miller M, see O’Gorman E et al. Munnich A, see Rustin P et al. Napiwotzki J, see Kadenbach B et al. Nauciene Z, see Mildaziene V et al. Naumann M, see Klopstock T et al. Naumann M see Lindner A et al. Nederhoff MGJ, see Van Dorsten FA et al. Nicolay K, see Laterveer FD et al. Nicolay K, see Van Dorsten FA et al. Nicolli A, see Scorrano L et al. Nieminen A-L, see Lemasters JJ et al. Noack H, see Augustin W et al. Obermaier-Kusser B, see Hofmann §S et al. O’Gorman E, Piend] T, Miiller M, Brdiczka D, Wallimann T: Mitochondrial intermembrane inclusion bodies: The common denominator between human mitochondrial myopathies and creatine depletion, due to impairment of cellular energetics 283-289 Oosterkamp II, see Scholte HR et al. Pallotti F, see Lenaz G et al. Papa S, Skulachev VP: Reactive oxygen species, mitochondria, apoptosis and aging 305-319 Parfait B, see Rustin P et al. Perez-Martos A, see Montoya J et al. Petit PX, Zamzami N, Vayssiére J-L, Mignotte B, Kroemer G, Castedo M: Implication of mitochondria in apoptosis 185-188 Petronilli V, see Scorrano L et al. Pich MM, see Lenaz G et al. Piendl T, see O’Gorman E et al. Qian T, see Lemasters JJ et al. Radda GK, see Kemp GJ et al. Radda GK, see Taylor DJ et al. Rasmussen HN, Rasmussen UF: Small scale preparation of skeletal muscle mitochondria, criteria of integrity, and assays with reference to tissue function Rasmussen UF, see Rasmussen HN Rauch U, see Dorner A et al. Reese T, see Van Dorsten FA et al. Reichelt O, see Augustin W et al. Reichmann H, see Klopstock T et al. Reichmann H, see Lindner A et al. Reiners K, see Klopstock T et al. Reinheckel T, see Augustin W et al. Remes A, see Majamaa K et al. Rieger T, see Kadenbach B et al. Riepe MW, Ludolph AC: Chemical preconditioning: A cytoprotective strategy 249-254 Rotig A, see Rustin P et al. Ross JD, see Scholte HR et al. Rossi A, see Kay L et al. Ruitenbeek W, see Trijbels FJM et al. Rusanen H, see Majamaa K et al. Rustin P, Chretien D, Parfait B, R6tig A, Munnich A: Nicotinamide adenine dinucleotides permeate through mitochondrial membranes in human Epstein-Barr virus-transformed lymphocytes 115-119 Saks V, see Kay L et al. Schalke B, see Klopsock T et al. Scholte HR, Yu Y, Ross JD, Oosterkamp II, Boonman AMC, Busch HFM: Rapid isolation of muscle and heart mitochondria, the lability of oxidative phosphorylation and attempts to stabilize the process in vitro by taurine, carnitine and other compounds Schon EA, see Masucci JP et al. Schramm M, see Kohnke D et al. Schréder JM, Molnar M: Mitochondrial abnormalities and peripheral neuropathy in inflammatory myopathy, especially inclusion body myositis 277-281 Schréder JM, see Zanssen S et al. Schultheiss H-P, see Dorner A et al. Schulz JB, Matthews RT, Klockgether T, Dichgans J, Beal MF: The role of mitochondrial dysfunction and neuronal nitric oxide in animal models of neurodegenerative diseases 193-197 Schulze K, see Dorner A et al. Schuster G, see L6ffler M et al. Scorrano L, Nicolli A, Basso E, Petronilli V, Bernardi P: Two modes of activation of the permeability transition pore: The role of mitochondrial cyclophilin 181-184 Seibel P, see Klopstock T et al. Sengers RCA, see Trijbels FJM et al. Skladal D, see Sperl W et al. Skulachev VP, see Papa S Sluse FE, see Bettendorff L et al. Smeitink JAM, see Trijbels FJM et al. Sperl W, Skladal D, Gnaiger E, Wyss M, Mayr U, Hager J, Gellerich FN: High resolution respirometry of permeabilized skeletal muscle fibers in the diagnosis of neuromuscular disorders Stepien G, see Ferlin T et al. Taylor DJ, Kemp GJ, Thompson CH, Radda GK: Ageing: Effects on oxidative function of skeletal muscle in vivo 321-324 Thompson CH, see Taylor DJ et al. Toleikis A, Majiene D, Trumbeckaite S, Dagys A: The effects of ischemia and experimental conditions on the respiration rate of cardiac fibers 87-90 Trijbels FJM, Ruitenbeek W, Huizing M, Wendel U, Smeitink JAM, Sengers RCA: Defects in the mitochondrial energy metabolism outside the respiratory chain and the pyruvate dehydrogenase complex 243-247 Trost LC see Lemasters JJ et al. Trumbeckaite S, see Toleikis A et al. Turnbull DM, see Brierley EJ et al. Van Dorsten FA, Reese T, Gellerich JF, Van Echteld CJA, Nederhoff, MGJ, Muller H-J, Van Vliet G, Nicolay K: Fluxes through cytosolic and mitochondrial creatine kinase, measured by P-31 NMR Van Echteld CJA, see Van Dorsten FA et al. 340 Van Vliet G, see Van Dorsten FA et al. Vayssiére J-L, see Petit PX et al. Walajtys-Rode E, see Hoek JB et al. Walles CW, see Kunz WS et al. Walliman T, see O’Gorman E et al. Wang X, see Hoek JB et al. Wendel U, see Trijbels FJM et al. Wiesner RJ, see Montoya J et al. Winkler K, see Kunz WS et al. Wiseman RW, Kushmerick MJ: Phosphorus metabolite distribution in skeletal muscle: Quantitative bioenergetics using creatine analogs Wiseman RM, see Jeneson JAL et al. Wiswedel I, see Augustin W et al. Wyss M, see Sperl W et al. Yu Y, see Scholte HR et al. Zamzani N, see Petit PX et al. Zanssen S, Molnar M, Schréder JM, Buse G: Multiple mitochondrial tRNA‘"(VR] mutations associated with infantile myopathy 231-236 Zimkus A, see Mildaziene V et al.

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