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A list of all pages that have property "Has title" with value "Research Assistant". Since there have been only a few results, also nearby values are displayed.

Showing below up to 126 results starting with #1.

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List of results

  • Raboel 2009 J Clin Endocrinol Metabol  + (Rabøl R, Højberg PM, Almdal T, Boushel R, Haugaard SB, Madsbad S, Dela F (2009) Effect of hyperglycemia on mitochondrial respiration in type 2 diabetes. J Clin Endocrinol Metabol 94:1372-78.)
  • Raboel 2009 Metabolism  + (Rabøl R, Svendsen PF, Skovbro M, Boushel RRabøl R, Svendsen PF, Skovbro M, Boushel RC, Haugaard SB, Schjerling P, Schrauwen P, Hesselink MK, Nilas L, Madsbad S, Dela F (2009) Reduced skeletal muscle mitochondrial respiration and improved glucose metabolism in nondiabetic obese women during a very low calorie dietary intervention leading to rapid weight loss. Metabolism 58:1145-52. rapid weight loss. Metabolism 58:1145-52.)
  • Racker 1967 J Biol Chem  + (Racker E, Horstman LL (1967) Partial resolution of the enzymes catalyzing oxidative phosphorylation XIII. Structure and function of submitochondrial particles completely resolved with respect to coupling factor 1. J Biol Chem 242:2547-51.)
  • Racker 1971 J Biol Chem  + (Racker E, Kandrach A (1971) Reconstitution of the third site of oxidative phosphorylation. J Biol Chem 246:7069-71.)
  • Racker 1974 J Biol Chem  + (Racker E, Stoeckenius W (1974) Reconstitution of purple membrane vesicles catalyzing light-driven proton uptake and adenosine triphosphate formation. J Biol Chem 249:662-3.)
  • Rackham 2016 Cell Rep  + (Rackham O, Busch JD, Matic S, Siira SJ, KuRackham O, Busch JD, Matic S, Siira SJ, Kuznetsova I, Atanassov I, Ermer JA, Shearwood AM, Richman TR, Stewart JB, Mourier A, Milenkovic D, Larsson NG, Filipovska A (2016) Hierarchical RNA processing is required for mitochondrial ribosome assembly. Cell Rep 16:1874-90.al ribosome assembly. Cell Rep 16:1874-90.)
  • Rackham 2012 WIREs RNA  + (Rackham O, Mercer TR, Filipovska A (2012) The human mitochondrial transcriptome and the RNA-binding proteins that regulate its expression. WIREs RNA 3:675–95.)
  • Rackham 2011 RNA  + (Rackham O, Shearwood AM, Mercer TR, Davies SM, Mattick JS, Filipovska A (2011) Long noncoding RNAs are generated from the mitochondrial genome and regulated by nuclear-encoded proteins. RNA 17:2085-93.)
  • Radaelli 2023 Elife  + (Radaelli E, Assenmacher CA, Verrelle J, BaRadaelli E, Assenmacher CA, Verrelle J, Banerjee E, Manero F, Khiati S, Girona A, Lopez-Lluch G, Navas P, Spinazzi M (2023) Mitochondrial defects caused by PARL deficiency lead to arrested spermatogenesis and ferroptosis. https://doi.org/10.7554/elife.84710tosis. https://doi.org/10.7554/elife.84710)
  • Rademann 2017 Oxid Med Cell Longev  + (Rademann P, Weidinger A, Drechsler S, MeszRademann P, Weidinger A, Drechsler S, Meszaros A, Zipperle J, Jafarmadar M, Dumitrescu S, Hacobian A, Ungelenk L, Röstel F, Kaszaki J, Szabo A, Skulachev VP, Bauer M, Bahrami S, Weis S, Kozlov AV, Osuchowski MF (2017) Mitochondria-targeted antioxidants SKQ1 and MitoTEMPO failed to exert a long-term beneficial effect in murine polymicrobial sepsis. Oxid Med Cell Longev 6412682.bial sepsis. Oxid Med Cell Longev 6412682.)
  • Radenkovic 2017 Biochem Pharmacol  + (Radenkovic F, Holland OJ, Vanderlelie JJ, Perkins AV (2017) Selective inhibition of endogenous antioxidants with Auranofin causes mitochondrial oxidative stress which can be countered by selenium supplementation. Biochem Pharmacol 146:42-52.)
  • Radi 2018 Proc Natl Acad Sci U S A  + (Radi R (2018) Oxygen radicals, nitric oxide, and peroxynitrite: Redox pathways in molecular medicine. Proc Natl Acad Sci U S A 115:5839-48. doi: 10.1073/pnas.1804932115)
  • Radi 1991 J Biol Chem  + (Radi R, Turrens JF, Chang LY, Bush KM, Crapo JD, Freeman BA (1991) Detection of catalase in rat heart mitochondria. J Biol Chem 266:22028-34.)
  • Radis 2020 Thesis  + (Radis C (2020) The benefits of involvement in scientific networks for firms in the scientific instruments industry. Master's Thesis p70.)
  • Radogna 2021 Methods Mol Biol  + (Radogna F, Gerard D, Dicato M, Diederich M (2021) Assessment of mitochondrial cell metabolism by respiratory chain electron flow assays. Methods Mol Biol 2276:129-41. https://doi.org/10.1007/978-1-0716-1266-8_9)
  • Radovic 2016 Diabetologia  + (Radović B, Vujić N, Leopold C, Schlager S,Radović B, Vujić N, Leopold C, Schlager S, Goeritzer M, Patankar JV, Korbelius M, Kolb D, Reindl J, Wegscheider M, Tomin T, Birner-Gruenberger R, Schittmayer M, Groschner L, Magnes C, Diwoky C, Frank S, Steyrer E, Du H, Graier WF, Madl T, Kratky D (2016) Lysosomal acid lipase regulates VLDL synthesis and insulin sensitivity in mice. Diabetologia 59:1743-52.sitivity in mice. Diabetologia 59:1743-52.)
  • Raffa 2010 Bull Hist Chem  + (Raffa RB, Tallarida RJ (2010) ‘Affinity’: historical development in chemistry and pharmacology. Bull Hist Chem 35:7-16.)
  • Ragan 1985 Biochim Biophys Acta  + (Ragan CI, Cottingham IR (1985) The kinetics of quinone pools in electron transport. Biochim Biophys Acta 811:13-31.)
  • Ragan 1975 J Biol Chem  + (Ragan CI, Hinkle PC (1975) Ion transport and respiratory control in vesicles formed from reduced nicotinamide adenine dinucleotide coenzyme Q reductase and phospholipids. J Biol Chem 250:8472-6.)
  • Ragan 1973 J Biol Chem  + (Ragan CI, Racker E (1973) Partial resolution of the enzymes catalyzing oxidative phosphorylation XXVII. The reconstitution of the first site of energy conservation. J Biol Chem 248:2563-9.)
  • Rahman 2021 Mol Biol Rep  + (Rahman A, Tabassum T, Araf Y, Al Nahid A, Ullah MA, Hosen MJ (2021) Silent hypoxia in COVID-19: pathomechanism and possible management strategy. Mol Biol Rep 48:3863-9. doi: 10.1007/s11033-021-06358-1)
  • Rahman 2022 Springer  + (Rahman S, Mayr JA (2022) Disorders of oxidative phosphorylation. In: Saudubray JM, Baumgartner MR, García-Cazorla Á, Walter J (eds) Inborn metabolic diseases. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-662-63123-2_10.)
  • Rai 2022 G3 (Bethesda)  + (Rai M, Carter SM, Shefali SA, MahmoudzadehRai M, Carter SM, Shefali SA, Mahmoudzadeh NH, Pepin R, Tennessen JM (2022) The ''Drosophila melanogaster'' enzyme glycerol-3-phosphate dehydrogenase 1 is required for oogenesis, embryonic development, and amino acid homeostasis. G3 (Bethesda) 12:jkac115. https://doi.org/10.1093/g3journal/jkac115 https://doi.org/10.1093/g3journal/jkac115)
  • Raich 1990 CYCLOBIOS  + (Raich K, Haller T, Gnaiger E (1990) The kinetics of mitochondria isolated from oligochaetes: Comparison with classical rat liver mitochondria. CYCLOBIOS Newsletter 4:77-9.)
  • Raimondi 2020 Br J Cancer  + (Raimondi V, Ciccarese F, Ciminale V (2020) Oncogenic pathways and the electron transport chain: a dangeROS liaison. Br J Cancer 122:168-81. https://doi.org/10.1038/s41416-019-0651-y)
  • Rains 2011 Free Radic Biol Med  + (Rains JL, Jain SK (2011) Oxidative stress, insulin signaling, and diabetes. Free Radic Biol Med 50:567-75.)
  • Rajasekaran 2018 FASEB J  + (Rajasekaran R, Felser A, Nuoffer JM, Dufour JF, St-Pierre MV (2018) The histidine triad nucleotide-binding protein 2 (HINT-2) positively regulates hepatocellular energy metabolism. FASEB J 32:5143-61.)
  • Rajendran 2019 EMBO Mol Med  + (Rajendran J, Purhonen J, Tegelberg S, SmolRajendran J, Purhonen J, Tegelberg S, Smolander OP, Mörgelin M, Rozman J, Gailus-Durner V, Fuchs H, Hrabe de Angelis M, Auvinen P, Mervaala E, Jacobs HT, Szibor M, Fellman V, Kallijärvi J (2019) Alternative oxidase-mediated respiration prevents lethal mitochondrial cardiomyopathy. EMBO Mol Med 11:e9456.ial cardiomyopathy. EMBO Mol Med 11:e9456.)
  • Rajh 2016 PLOS ONE  + (Rajh M, Dolinar K, Miš K, Pavlin M, Pirkmajer (2016) Medium renewal blocks antiproliferative effects of metformin in cultured MDA-MB-231 breast cancer cells. PLOS ONE 11:e0154747.)
  • Raji 2016 J Alzheimers Dis  + (Raji CA, Merrill DA, Eyre H, Mallam S, TorRaji CA, Merrill DA, Eyre H, Mallam S, Torosyan N, Erickson KI, Lopez OL, Becker JT, Carmichael OT, Gach HM, Thompson PM, Longstreth WT, Kuller LH (2016) Longitudinal relationships between caloric expenditure and gray matter in the cardiovascular health study. J Alzheimers Dis 2016 Mar 11 52:719-29.y. J Alzheimers Dis 2016 Mar 11 52:719-29.)
  • Rajkumar 2018 Metabolism  + (Rajkumar A, Liaghati A, Chan J, Lamothe G, Dent R, Doucet É, Rabasa-Lhoret R, Prud'homme D, Harper ME, Tesson F (2018) ACSL5 genotype influence on fatty acid metabolism: a cellular, tissue, and whole-body study. Metabolism 83:271-9.)
  • Ramachandran 2012 Cells  + (Ramachandran H, Laux J, Moldovan I, Caspell R, Lehmann PV, Subbramanian RA (2012) Optimal Thawing of Cryopreserved Peripheral Blood Mononuclear Cells for Use in High-Throughput Human Immune Monitoring Studies. Cells 1:313-324.)
  • Ramalho 2019 J Leukoc Biol  + (Ramalho T, Ramalingam L, Filgueiras L, Festuccia W, Jancar S, Moustaid-Moussa N (2019) Leukotriene-B4 modulates macrophage metabolism and fat loss in type 1 diabetic mice. J Leukoc Biol 106:665-75.)
  • Ramil 2018 Thesis  + (Ramil LR, Gulbinas A, Cesna V (2018) “HIPEC” hyperthermic intraperitoneal chemotherapy. Evaluation of intraperitoneal free cancer cells. Master's Thesis.)
  • Ramirez-Torres 2012 J Proteomics  + (Ramirez-Torres A, Barcelo-Batllori S, FernRamirez-Torres A, Barcelo-Batllori S, Fernandez-Vizarra E, Navarro MA, Arnal C, Guillen N, Acin S, Osada J (2012) Proteomics and gene expression analyses of mitochondria from squalene-treated apoE-deficient mice identify short-chain specific acyl-CoA dehydrogenase changes associated with fatty liver amelioration. J Proteomics 75:2563-75.ver amelioration. J Proteomics 75:2563-75.)
  • Ramkumar 2019 Mitochondrion  + (Ramkumar B, Dharaskar SP, Mounika G, Paithankar K, Sreedhar AS (2019) Mitochondrial chaperone, TRAP1 as a potential pharmacological target to combat cancer metabolism. Mitochondrion 50:42-50.)
  • Ramos 2020 PLoS One  + (Ramos SV, Hughes MC, Delfinis LJ, BellissiRamos SV, Hughes MC, Delfinis LJ, Bellissimo CA, Perry CGR (2020) Mitochondrial bioenergetic dysfunction in the D2.mdx model of Duchenne muscular dystrophy is associated with microtubule disorganization in skeletal muscle. https://doi.org/10.1371/journal.pone.0237138tps://doi.org/10.1371/journal.pone.0237138)
  • Ramos 2019 Am J Physiol Cell Physiol  + (Ramos SV, Hughes MC, Perry CGR (2019) Altered skeletal muscle microtubule-mitochondrial VDAC2 binding is related to bioenergetic impairments after paclitaxel but not vinblastine chemotherapies. Am J Physiol Cell Physiol 316:C449-C455.)
  • Ramos-Filho 2015 PLoS One  + (Ramos-Filho D, Chicaybam G, de-Souza-FerreRamos-Filho D, Chicaybam G, de-Souza-Ferreira E, Guerra Martinez C, Kurtenbach E, Casimiro-Lopes G, Galina A (2015) High intensity interval training (HIIT) induces specific changes in respiration and electron leakage in the mitochondria of different rat skeletal muscles. PLoS One 10:e0131766.at skeletal muscles. PLoS One 10:e0131766.)
  • Rampello 2018 Microb Cell  + (Rampello NG, Stenger M, Westermann B, Osiewacz HD (2018) Impact of F<sub>1</sub>F<sub>o</sub>-ATP-synthase dimer assembly factors on mitochondrial function and organismic aging. Microb Cell 5:198–207.)
  • Ramsay 2015 Fatty Acid Oxidation O2k-Network Discussion Forum  + (Ramsay 2015 Fatty Acid Oxidation O2k-Network Discussion Forum)
  • Ramirez 2017 Cell Metab  + (Ramírez S, Gómez-Valadés AG, Schneeberger Ramírez S, Gómez-Valadés AG, Schneeberger M, Varela L, Haddad-Tóvolli R, Altirriba J, Noguera E, Drougard A, Flores-Martínez Á, Imbernón M, Chivite I, Pozo M, Vidal-Itriago A, Garcia A, Cervantes S, Gasa R, Nogueiras R, Gama-Pérez P, Garcia-Roves PM, Cano DA, Knauf C, Servitja JM, Horvath TL, Gomis R, Zorzano A, Claret M (2017) Mitochondrial dynamics mediated by mitofusin 1 is required for POMC neuron glucose-sensing and insulin release control. Cell Metab 25:1390-9.lin release control. Cell Metab 25:1390-9.)
  • Rana 2017 Nat Commun  + (Rana A, Oliveira MP, Khamoui AV, Aparicio R, Rera M, Rossiter HB, Walker DW (2017) Promoting Drp1-mediated mitochondrial fission in midlife prolongs healthy lifespan of ''Drosophila melanogaster''. https://doi.org/10.1038/s41467-017-00525-4)
  • Ranganathan 2020 Mitochondrion  + (Ranganathan A, Owiredu S, Jang DH, Eckmann DM (2020) Prophylaxis of mitochondrial dysfunction caused by cellular decompression from hyperbaric exposure . Mitochondrion 52:8-19.)
  • Ransy 2020 Int J Mol Sci  + (Ransy C, Vaz C, Lombès A, Bouillaud F (2020) Use of H<sub>2</sub>O<sub>2</sub> to cause oxidative stress, the catalase issue. Int J Mol Sci 21:9149. https://doi.org/10.3390/ijms21239149)
  • Rasheed 2018 Arch Pathol Lab Med  + (Rasheed MRHA, Tarjan G (2018) Succinate dehydrogenase Complex: an updated review. Arch Pathol Lab Med 142:1564-70. https://doi.org/10.5858/arpa.2017-0285-RS)
  • Rasmussen 1997 Mol Cell Biochem  + (Rasmussen HN, Rasmussen UF (1997) Small scale preparation of skeletal muscle mitochondria, criteria of integrity, and assays with reference to tissue function. Mol Cell Biochem 174:55-60.)
  • Rasmussen 2001 Pflugers Arch  + (Rasmussen UF, Krustrup P, Bangsbo J, Rasmussen HN (2001) The effect of high-intensity exhaustive exercise studied in isolated mitochondria from human skeletal muscle. Pflugers Arch 443:180-7.)
  • Rasmussen 2003 Eur J Physiol  + (Rasmussen UF, Krustrup P, Kjaer M, Rasmussen HN (2003) Human skeletal muscle mitochondrial metabolism in youth and senescence: no signs of functional changes in ATP formation and mitochondrial oxidative capacity. Pflugers Arch – Eur J Physiol 446:270-78.)
  • Rasmussen 2000 Mol Cell Biochem  + (Rasmussen UF, Rasmussen HN (2000) Human quadriceps muscle mitochondria: a functional characterization. Mol Cell Biochem 208:37-44.)
  • Rasmussen 1996 Biochem J  + (Rasmussen UF, Rasmussen HN, Andersen AJ, Fogd Jørgensen P, Quistorff B. (1996) Characterization of mitochondria from pig muscle: higher activity of exo-NADH oxidase in animals suffering from malignant hyperthermia. Biochem J 315:659-63.)
  • Rasmussen 2001 Am J Physiol Endocrinol Metab  + (Rasmussen UF, Rasmussen HN, Krustrup P, Quistorff B, Saltin B, Bangsbo J (2001) Aerobic metabolism of human quadriceps muscle: in vivo data parallel measurements on isolated mitochondria. Am J Physiol Endocrinol Metab 280:E301-7.)
  • Rasmussen 2004 Comp Biochem Physiol  + (Rasmussen UF, Vielwerth SE, Rasmussen HN (Rasmussen UF, Vielwerth SE, Rasmussen HN (2004) Skeletal muscle bioenergetics: a comparative study of mitochondria isolated from pigeon pectoralis, rat soleus, rat biceps brachii, pig biceps femoris and human quadriceps. Comp Biochem Physiol A Molec Integr Physiol 137:435-46.Physiol A Molec Integr Physiol 137:435-46.)
  • Ratajczak 2019 Anal Bioanal Chem  + (Ratajczak K, Lukasiak A, Grel H, DworakowsRatajczak K, Lukasiak A, Grel H, Dworakowska B, Jakiela S, Stobiecka M (2019) Monitoring of dynamic ATP level changes by oligomycin-modulated ATP synthase inhibition in SW480 cancer cells using fluorescent "On-Off" switching DNA aptamer. Anal Bioanal Chem 411:6899-911.A aptamer. Anal Bioanal Chem 411:6899-911.)
  • Ratcliffe 2022 Clin Med (Lond)  + (Ratcliffe PJ (2022) Harveian Oration 2020: Elucidation of molecular oxygen sensing mechanisms in human cells: implications for medicine. https://doi.org/10.7861/clinmed.ed.22.1.harv)
  • Ratti 2007 J Phycol  + (Ratti S, Giordano M, Morse D (2007) CO2 concentrating mechanisms of the potentially toxic dinoflagellate ''Protoceratium reticulatum'' (Dinophyceae, Gonyaulacales). J Phycol 43:693-701.)
  • Raturi 2016 J Cell Biol  + (Raturi A, Gutiérrez T, Ortiz-Sandoval C, RRaturi A, Gutiérrez T, Ortiz-Sandoval C, Ruangkittisakul A, Herrera-Cruz MS, Rockley JP, Gesson K, Ourdev D, Lou PH, Lucchinetti E, Tahbaz N, Zaugg M, Baksh S, Ballanyi K, Simmen T (2016) TMX1 determines cancer cell metabolism as a thiol-based modulator of ER-mitochondria Ca<sup>2+</sup> flux. J Cell Biol 214:433-44.lt;sup>2+</sup> flux. J Cell Biol 214:433-44.)
  • Rauchova 2008 J Bioenerg Biomembr  + (Rauchova H, Drahota Z, Bergamini C, Fato R, Lenaz G (2008) Modification of respiratory-chain enzyme activities in brown adipose tissue mitochondria by idebenone (hydroxydecyl-ubiquinone). J Bioenerg Biomembr 40:85-93.)
  • Rauchova 2003 Acta Biochim Polonica  + (Rauchova H, Drahota Z, Rauch P, Fato R, Lenaz G (2003) Coenzyme Q releases the inhibitory effect of free fatty acids on mitochondrial glycerophosphate dehydrogenase. Acta Biochim Polonica 50:405-13.)
  • Rauchova 2005 Biochem Biophys Res Comm  + (Rauchova H, Vrbacky M, Bergamini C, Fato R, Lenaz G, Houstek J, Drahota Z (2005) Inhibition of glycerophosphate-dependent H2O2 generation in brown fat mitochondria by idebenone. Biochem Biophys Res Comm 339:362-6.)
  • Rauchova 1995 Physiol Res  + (Rauchová H, Drahota Z, Lenaz G (1995) Function of coenzyme Q in the cell: some biochemical and physiological properties. Physiol Res 44:209-16.)
  • Rauchova 2003 Acta Biochim Pol  + (Rauchová H, Drahota Z, Rauch P, Fato R, Lenaz G (2003) Coenzyme Q releases the inhibitory effect of free fatty acids on mitochondrial glycerophosphate dehydrogenase. Acta Biochim Pol 50:405-13.)
  • Rauchova 1997 Arch Biochem Biophys  + (Rauchová H, Fato R, Drahota Z, Lenaz G (1997) Steady-state kinetics of reduction of coenzyme Q analogs by glycerol-3-phosphate dehydrogenase in brown adipose tissue mitochondria. Arch Biochem Biophys 344:235-41.)
  • Rauchova 2011 Horm Metab Res  + (Rauchová H, Mrácek T, Novák P, Vokurková M, Soukup T (2010) Glycerol-3-phosphate dehydrogenase expression and oxygen consumption in liver mitochondria of female and male rats with chronic alteration of thyroid status. Horm Metab Res 43:43-7.)
  • Rauchova 2014 Int J Biochem Cell Biol  + (Rauchová H, Vokurková M, Drahota Z (2014) Inhibition of mitochondrial glycerol-3-phosphate dehydrogenase by α-tocopheryl succinate. Int J Biochem Cell Biol 53:409-13.)
  • Raud 2016 Cell Metab  + (Raud B, Roy DG, Divakaruni AS, Tarasenko TRaud B, Roy DG, Divakaruni AS, Tarasenko TN, Franke R, Ma EH, Samborska B, Hsieh WY, Wong AH, Stüve P, Arnold-Schrauf C, Guderian M, Lochner M, Rampertaap S, Romito K, Monsale J, Brönstrup M, Bensinger SJ, Murphy AN, McGuire PJ, Jones RG, Sparwasser T, Berod L (2016) Etomoxir Actions on Regulatory and Memory T Cells Are Independent of Cpt1a-Mediated Fatty Acid Oxidation. Cell Metab 28:504-515.tty Acid Oxidation. Cell Metab 28:504-515.)
  • Rausser 2021 Elife  + (Rausser S, Trumpff C, McGill MA, Junker A,Rausser S, Trumpff C, McGill MA, Junker A, Wang W, Ho SH, Mitchell A, Karan KR, Monk C, Segerstrom SC, Reed RG, Picard M (2021) Mitochondrial phenotypes in purified human immune cell subtypes and cell mixtures. Elife 10:e70899. https://doi.org/10.7554/eLife.7089970899. https://doi.org/10.7554/eLife.70899)
  • Ravasz 2019 Abstract IOC141  + (Ravasz D, Bui D, Kitayev A, Greenwood B, HRavasz D, Bui D, Kitayev A, Greenwood B, Hill C, Komlodi T, Doerrier C, Ozohanics O, Moore AL, Gnaiger E, Kiebish M, Kolev K, Seyfried TN, Willis WT, Narain N, Adam-Vizi V, Chinopoulos C (2019) Endogenous quinones sustain a moderate NADH oxidation by Complex I during anoxia. Mitochondr Physiol Network 24.02. anoxia. Mitochondr Physiol Network 24.02.)
  • Ravasz 2024 Sci Rep  + (Ravasz D, Bui D, Nazarian S, Pallag G, KarRavasz D, Bui D, Nazarian S, Pallag G, Karnok N, Roberts J, Marzullo BP, Tennant DA, Greenwood B, Kitayev A, Hill C, Komlódi T, Doerrier C, Cunatova K, Fernandez-Vizarra E, Gnaiger E, Kiebish Michael A, Raska A, Kolev K, Czumbel B, Narain NR, Seyfried TN, Chinopoulos C (2024) Residual Complex I activity and amphidirectional Complex II operation support glutamate catabolism through mtSLP in anoxia. Sci Rep 14:1729. https://doi.org/10.1038/s41598-024-51365-4https://doi.org/10.1038/s41598-024-51365-4)
  • Ravasz 2018 Biochim Biophys Acta  + (Ravasz D, Kacso G, Fodor V, Horvath K, AdaRavasz D, Kacso G, Fodor V, Horvath K, Adam-Vizi V, Chinopoulos C (2018) Reduction of 2-methoxy-1,4-naphtoquinone by mitochondrially-localized Nqo1 yielding NAD<sup>+</sup> supports substrate-level phosphorylation during respiratory inhibition. Biochim Biophys Acta 1859:909-24.piratory inhibition. Biochim Biophys Acta 1859:909-24.)
  • Ravasz 2017 Neurochem Int  + (Ravasz D, Kacso G, Fodor V, Horvath K, Adam-Vizi V, Chinopoulos C (2017) Catabolism of GABA, succinic semialdehyde or gamma-hydroxybutyrate through the GABA shunt impair mitochondrial substrate-level phosphorylation. Neurochem Int 109:41-53.)
  • Ravera 2018 Biol Cell  + (Ravera S, Signorello MG, Bartolucci M, Ferrando S, Manni L, Caicci F, Calzia D, Panfoli I, Morelli A, Leoncini G (2018) Extramitochondrial energy production in platelets. Biol Cell 110:97-108.)
  • Ravera 2023 Cells  + (Ravera S, Signorello MG, Panfoli I (2023) Platelet metabolic flexibility: a matter of substrate and location. Cells 12:1802. https://doi.org/10.3390/cells12131802)
  • Rawat 2019 J Mol Biol  + (Rawat S, Anusha V, Jha M, Sreedurgalakshmi K, Raychaudhuri S (2019) Aggregation of respiratory complex subunits marks the onset of proteotoxicity in proteasome inhibited cells. J Mol Biol 431:996-1015.)
  • Razak 2018 RUMeS  + (Razak SHA, Hassan H, Hakimi NH, Rani NA, Ibrahim NF, Ngah WZW, Makpol S, Damanhuri MHA, Karim NA, Tan JK (2018) Isolation of mitochondria and measurement of oxygen consumption rate by high-resolution respirometry in rat hippocampus. RUMeS 6:11-18.)
  • Read 2021 Redox Biol  + (Read AD, Bentley RE, Archer SL, Dunham-Snary KJ (2021) Mitochondrial iron-sulfur clusters: Structure, function, and an emerging role in vascular biology. Redox Biol 47:102164. doi:10.1016/j.redox.2021.102164)
  • Real-Hohn 2018 bioRxiv  + (Real-Hohn A, Navegantes C, Ramos K, Ramos-Real-Hohn A, Navegantes C, Ramos K, Ramos-Filho D, Cahuê F, Galina A, Salerno V (2018) Hexokinase: a central player in the synergism of high-intensity intermittent exercise and every-other-day intermittent fasting regimen on energy metabolism adaptations. bioRxiv doi: https://doi.org/10.1101/389668.oRxiv doi: https://doi.org/10.1101/389668.)
  • Rebane-Klemm 2020 Cancers (Basel)  + (Rebane-Klemm E, Truu L, Reinsalu L, PuuranRebane-Klemm E, Truu L, Reinsalu L, Puurand M, Shevchuk I, Chekulayev V, Timohhina N, Tepp K, Bogovskaja J, Afanasjev V, Suurmaa K, Valvere V, Kaambre T (2020) Mitochondrial respiration in KRAS and BRAF mutated colorectal tumors and polyps. Cancers (Basel) 12:E815.umors and polyps. Cancers (Basel) 12:E815.)
  • Rector 2010 J Hepatol  + (Rector RS, Thyfault JP, Uptergrove GM, MorRector RS, Thyfault JP, Uptergrove GM, Morris EM, Naples SP, Borengasser SJ, Mikus CR, Laye MJ, Laughlin MH, Booth FW, Ibdah JA (2010) Mitochondrial dysfunction precedes insulin resistance and hepatic steatosis and contributes to the natural history of non-alcoholic fatty liver disease in an obese rodent model. J Hepatol 52:727-36.n obese rodent model. J Hepatol 52:727-36.)
  • Reda 2019 Sci Rep  + (Reda A, Refaat A, Abd-Rabou AA, Mahmoud AM, Adel M, Sabet S, Ali SS (2019) Role of mitochondria in rescuing glycolytically inhibited subpopulation of triple negative but not hormone-responsive breast cancer cells. Sci Rep 9:13748.)
  • Reddoch-Cardenas 2020 Transfusion  + (Reddoch-Cardenas KM, Peltier GC, Chance TCReddoch-Cardenas KM, Peltier GC, Chance TC, Nair PM, Meledeo MA, Ramasubramanian AK, Cap AP, Bynum JA (2020) Cold storage of platelets in platelet additive solution maintains mitochondrial integrity by limiting initiation of apoptosis-mediated pathways. Transfusion 61:178-90.-mediated pathways. Transfusion 61:178-90.)
  • Koopman 2014 Abstract MiP2014  + (Redox regulation of mitochondrial dynamics and function.)
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