Literatura científica selecionada sobre o tema "Coenzyme Q"
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Artigos de revistas sobre o assunto "Coenzyme Q"
Matthews, P. M., e D. L. Arnold. "Coenzyme Q". Neurology 43, n.º 3, Part 1 (1 de março de 1993): 628. http://dx.doi.org/10.1212/wnl.43.3_part_1.628.
Texto completo da fonteBendahan, D., G. K. Ribbens e P. J. Cozzone. "Coenzyme Q". Neurology 43, n.º 3, Part 1 (1 de março de 1993): 628. http://dx.doi.org/10.1212/wnl.43.3_part_1.628-a.
Texto completo da fonteMortensen, Svend Aage. "Coenzyme Q 10". JACC: Heart Failure 3, n.º 3 (março de 2015): 270–71. http://dx.doi.org/10.1016/j.jchf.2014.12.006.
Texto completo da fonteComhair, Suzy A. A., Deepa Grandon, Anam Khan, Renliang Zhang, Stanley L. Hazen e Serpil C. Erzurum. "Coenzyme Q in Asthma". American Journal of Respiratory and Critical Care Medicine 191, n.º 11 (junho de 2015): 1336–38. http://dx.doi.org/10.1164/rccm.201412-2259le.
Texto completo da fonteMorré, D. James, e Dorothy M. Morré. "Non-mitochondrial coenzyme Q". BioFactors 37, n.º 5 (14 de junho de 2011): 355–60. http://dx.doi.org/10.1002/biof.156.
Texto completo da fonteFinsterer, Josef, e Sinda Zarrouk-Mahjoub. "Causes of low muscle coenzyme-Q levels beyond primary coenzyme-Q-deficiency". Molecular Genetics and Metabolism Reports 15 (junho de 2018): 96–97. http://dx.doi.org/10.1016/j.ymgmr.2018.03.006.
Texto completo da fonteEnriquez, José Antonio, e Giorgio Lenaz. "Coenzyme Q and the Respiratory Chain: Coenzyme Q Pool and Mitochondrial Supercomplexes". Molecular Syndromology 5, n.º 3-4 (2014): 119–40. http://dx.doi.org/10.1159/000363364.
Texto completo da fonteArroyo, Antonio, Carlos Santos-Ocaña, Macarena Ruiz-Ferrer, Sergio Padilla, Ángela Gavilán, Juan C. Rodríguez-Aguilera e Plácido Navas. "Coenzyme Q is irreplaceable by demethoxy-coenzyme Q in plasma membrane ofCaenorhabditis elegans". FEBS Letters 580, n.º 7 (20 de fevereiro de 2006): 1740–46. http://dx.doi.org/10.1016/j.febslet.2006.02.025.
Texto completo da fonteBeyer, Robert E. "An analysis of the role of coenzyme Q in free radical generation and as an antioxidant". Biochemistry and Cell Biology 70, n.º 6 (1 de junho de 1992): 390–403. http://dx.doi.org/10.1139/o92-061.
Texto completo da fonteLiancai, Zhu, Wang Bochu ., Tan Jun . e Luo Min . "Coenzyme Q in Cancer Therapy". International Journal of Cancer Research 2, n.º 3 (15 de junho de 2006): 290–98. http://dx.doi.org/10.3923/ijcr.2006.290.298.
Texto completo da fonteTeses / dissertações sobre o assunto "Coenzyme Q"
Lunceford, Adam Lee. "The effect of coenzyme Q₁₀ supplementation on aging and disease". Diss., Restricted to subscribing institutions, 2008. http://proquest.umi.com/pqdweb?did=1692119651&sid=4&Fmt=2&clientId=1564&RQT=309&VName=PQD.
Texto completo da fonteOsonkie, Odi Christian. "Investigation of the role of monooxygenases in coenzyme q biosynthesis". Diss., Restricted to subscribing institutions, 2009. http://proquest.umi.com/pqdweb?did=1872149541&sid=12&Fmt=2&clientId=1564&RQT=309&VName=PQD.
Texto completo da fonteOzeir, Mohammad. "Etude de la voie du coenzyme Q¦ chez la levure Saccharomyces cerevisiae". Phd thesis, Université de Grenoble, 2012. http://tel.archives-ouvertes.fr/tel-00859892.
Texto completo da fonteBillon-Grand, Geneviève. "Contribution à la taxonomie et à la phylogénie des levures apport du critère "coenzyme Q /". Grenoble 2 : ANRT, 1988. http://catalogue.bnf.fr/ark:/12148/cb376120033.
Texto completo da fonteCanh, Tran UyenPhuong. "Characterization of Coq2 and Coq7 proteins, dual function polypeptides in Saccharomyces cerevisiae coenzyme Q biosynthesis". Diss., Restricted to subscribing institutions, 2007. http://proquest.umi.com/pqdweb?did=1320942011&sid=1&Fmt=2&clientId=1564&RQT=309&VName=PQD.
Texto completo da fonteBillon-Grand, Geneviève. "Contribution à la taxonomie et à la phylogénie des levures : apport du critère "coenzyme Q"". Lyon 1, 1988. http://www.theses.fr/1988LYO10141.
Texto completo da fonteGomes, Fernando. "A síntese de coenzima Q e a estabilidade de DNA mitocondrial em Saccharomyces cerevisiae". Universidade de São Paulo, 2012. http://www.teses.usp.br/teses/disponiveis/42/42132/tde-19092012-103914/.
Texto completo da fonteSaccharomyces cerevisiae respiratory mutants can show a wide range of mtDNA instability. We analyze different classes of mutants and observed a higher instability among mutants lacking a functional coenzyme Q (CoQ). The aim of this study was to evaluate the effects of alterations in the redox state of coenzyme Q on the stability of mtDNA mitochondrial in different strains of Saccharomyces cerevisiae. In Dcoq10 mutant, which synthesizes CoQ nonfunctional, inactivation of individual NADH dehydrogenases Ndi1p Nde1p has shown a decreased mtDNA instability, which was accompanied by a decrement in the rate of hydrogen peroxide (H2O2) release. Moreover, overexpression of Nde1p increased instability Dcoq10 mutant. The inactivation of individual NADH dehydrogenases in Dcoq4 strain which is deficient in the synthesis of CoQ, did not reduce the instability of the mtDNA. All the results indicate that changes in the redox state of coenzyme Q influence the stability of mtDNA, probably by the production of reactive oxygen species.
Dhanasettakorn, Khwankaew Grün Ingolf Lin Mengshi. "Coenzyme Q₁₀ content, composition, texture and physiochemical characteristics of pasta fortified with freeze-dried beef heart". Diss., Columbia, Mo. : University of Missouri--Columbia, 2008. http://hdl.handle.net/10355/6636.
Texto completo da fonteGalinier, Anne. "Etat redox des tissus adipeux : implication dans l'obésité". Toulouse 3, 2006. http://www.theses.fr/2006TOU30038.
Texto completo da fonteThe recent evolution of way of life and modifications of food intake involved a considerable development of obesity and associated metabolic complications, which results in co-morbid diseases such as diabetes and/or atherosclerosis. These disorders are generally associated a visceral obesity and related to the endocrine and immune systems but also to inflammatory phenomena. Indeed, beyond its well-known role as energy storage in the form of triglycerides, adipose tissues have endocrine function by secreting hormones and pro-inflammatory cytokines and contained macrophagic cells. The role of mitochondria and the redox metabolism in white adipose tissues was neglected a long time but are now emerging as crucial. To evaluate this, we first set up and validate a technique to measure coenzyme Q, the alone lipophilic antioxidant synthesized by human and an obligatory component of the respiratory chain. To achieve this goal, we used a high performance liquid chromatography-electrochemical technique and we controlled changes in redox state using various inhibitors of mitochondrial respiratory chain
Hajj, Chehade Mahmoud. "Élucidation du rôle de nouveaux acteurs de la biosynthèse de Q8 chez Escherichia coli et caractérisation du complexe protéique de biosynthèse de Q8". Thesis, Université Grenoble Alpes (ComUE), 2015. http://www.theses.fr/2015GREAV010/document.
Texto completo da fonteUbiquinone (Q) is a lipophilic compound that plays an important role in electron and proton transport in the respiratory chains of Escherichia coli. Besides this important role in energy production, Q also functions as a membrane soluble antioxidant. The biosynthesis of Q8 requires eight reactions and involves at least nine proteins (UbiA-UbiH and UbiX) in Escherichia coli. Three of these reactions are hydroxylations resulting in the introduction of a hydroxyl group on carbon atoms at position 1, 5 and 6 of the aromatic ring. The C1 and C6 hydroxylation are well characterized whereas the C5 hydroxylation has been proposed to involve UbiB, a protein kinase without any sequence homology with monooxygenase. In this work, by genetic and biochemical methods we provide evidence that VisC which we renamed UbiI, displays sequence homology with monooxygenases and catalyzes the C5 hydroxylation, not UbiB. We have identified two new genes, yqiC and yigP (renammed UbiJ and UbiK) which are required only for Q8 biosynthesis in aerobic conditions. The exact role of the corresponding proteins, renamed UbiJ and UbiK, remains unknown. These proteins are able to interact with other Ubi proteins to be able to produce Q supporting the protein complex hypothesis. Our progress on the characterization of an Ubi-complex regrouping several Ubi proteins suggest that UbiJ and UbiK may fulfill functions related to the Ubi-complex stability. Mutants affected in hydroxylation steps are deficient for Q8 in aerobic conditions but recover a wild type Q8 content when grown in anaerobic conditions. This intriguing observation supports the existence of an alternative hydroxylation system independent from dioxygen which has not been characterized so far. By phylogenetic studies, we have identified a new gene in which the deletion affect the biosynthesis of Q only in anaerobic conditions suggesting a reorganization of Q biosynthesis in these two conditions. Our results has improved our knowledge of the prokaryotic Q biosynthetic pathway through the discovery of new genes involved in this process and through the identification of the molecular function of some proteins
Livros sobre o assunto "Coenzyme Q"
López Lluch, Guillermo, ed. Coenzyme Q in Aging. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9.
Texto completo da fonteL, Hunt Gerald, ed. The miracle nutrient: Coenzyme Q₁₀. Toronto: Bantam, 1987.
Encontre o texto completo da fonteBliznakov, Emile G. The Miracle nutrient: Coenzyme Q subscript 10. New York: Bantam Books, 1986.
Encontre o texto completo da fonteInternational, Symposium on the Biomedical and Clinical Aspects of Coenzyme Q. (5th 1985 Tokyo Japan). Biomedical and clinical aspects of coenzyme Q: Volume 5 : proceedings of the Fifth International Symposium on the Biomedical and Clinical Aspects of Coenzyme Q, held in Tokyo, Japan, 24-26 October 1985. Amsterdam: Elsevier Science Publishers, 1986.
Encontre o texto completo da fonteInternational Symposium on the Biomedical and Clinical Aspects of Coenzyme Q. (6th 1990 Rome, Italy). Biomedical and clinical aspects of coenzyme Q, volume 6: Proceedings of the sixth International Symposium on the Biomedical and Clinical Aspects of Coenzyme Q, held in Rome, Italy, 22-24 January, 1990. Editado por Folkers Karl August, Littarru G. P e Yamagami T. Amsterdam: Elsevier Science Publishers, 1991.
Encontre o texto completo da fonteKagan, Valerian E., e Peter J. Quinn, eds. Coenzyme Q. CRC Press, 2000. http://dx.doi.org/10.1201/9781420036701.
Texto completo da fonteFolkers, K., e T. Yamagami. Biomedical and Clinical Aspects of Coenzyme Q: Proceedings (Biomedical & Clinical Aspects of Coenzyme Q). Elsevier Science Publishing Company, 1991.
Encontre o texto completo da fonteCoenzyme Q-10 (Woodland Health Ser). Woodland Publishing, 1999.
Encontre o texto completo da fonteBiomedical & Clinical Aspects of Coenzyme Q. Elsevier Science Publishing Company, 1987.
Encontre o texto completo da fonteCapítulos de livros sobre o assunto "Coenzyme Q"
Hatefi, Youssef. "Coenzyme Q (Ubiquinone)". In Advances in Enzymology - and Related Areas of Molecular Biology, 275–328. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2006. http://dx.doi.org/10.1002/9780470122709.ch5.
Texto completo da fonteBrea-Calvo, Gloria, María Alcázar-Fabra, Eva Trevisson e Plácido Navas. "Coenzyme Q Biosynthesis Disorders". In Mitochondrial Diseases, 143–90. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-70147-5_6.
Texto completo da fonteNavas, Plácido. "The Current Coenzyme Q Science and Knowledge". In Coenzyme Q in Aging, 3–9. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_1.
Texto completo da fonteQuiles, José L., Alfonso Varela-López, María D. Navarro-Hortal e Maurizio Battino. "Coenzyme Q, mtDNA and Mitochondrial Dysfunction During Aging". In Coenzyme Q in Aging, 191–225. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_10.
Texto completo da fonteHernández-Camacho, Juan Diego. "Coenzyme Q10 and Metabolic Syndrome". In Coenzyme Q in Aging, 227–40. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_11.
Texto completo da fonteAlcaín, Francisco J., Javier Domínguez, Mario Durán-Prado e Julia Vaamonde. "Coenzyme Q and Age-Related Neurodegenerative Disorders: Parkinson and Alzheimer Diseases". In Coenzyme Q in Aging, 241–68. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_12.
Texto completo da fonteHernández-Camacho, Juan Diego, Catherine Meza-Torres e Guillermo López-Lluch. "Immunosenescence and CoQ10". In Coenzyme Q in Aging, 269–82. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_13.
Texto completo da fonteVaamonde, Diana, Anthony C. Hackney, Carolina Algar-Santacruz, María José Garcia-Moreno e Juan Manuel García-Manso. "Coenzyme Q10 in Fertility and Reproduction". In Coenzyme Q in Aging, 283–308. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_14.
Texto completo da fonteBurón, María Isabel, Cristina Parrado, José Antonio González-Reyes, Lucía Fernández del Río, Elena Gutiérrez-Casado, Miguel Calvo-Rubio, Sandra Rodríguez-López e José Manuel Villalba. "Caloric Restriction, Longevity and Coenzyme Q". In Coenzyme Q in Aging, 311–28. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_15.
Texto completo da fonteBentinger, Magnus, Gustav Dallner, Kerstin Brismar, Ewa Swiezewska e Michael Tekle. "Age Dependent Changes of Coenzyme Q Levels and its Induction in Experimental Systems". In Coenzyme Q in Aging, 329–46. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-45642-9_16.
Texto completo da fonteTrabalhos de conferências sobre o assunto "Coenzyme Q"
Sharp, Jacqueline, Margaret Park, Erika L. Lundgrin, Wilson Tang, James Thomas, Kewal Asosingh, Suzy Comhair et al. "Coenzyme Q Affects Cardiac Function And Erythropoiesis In Pulmonary Arterial Hypertension". In American Thoracic Society 2012 International Conference, May 18-23, 2012 • San Francisco, California. American Thoracic Society, 2012. http://dx.doi.org/10.1164/ajrccm-conference.2012.185.1_meetingabstracts.a6738.
Texto completo da fonteAwate, Pallavi, Tulin Dadali, Ryan Ng, Saie Mogre, Anne R. Diers, Hannah Rockwell, Justice McDaniel et al. "Abstract 3530: Coenzyme Q10 (BPM31510-IV in clinical trials) increases mitochondrial Q-pool and modulates electron transport chain function to elicit cell death in pancreatic cancer cells". In Proceedings: AACR Annual Meeting 2018; April 14-18, 2018; Chicago, IL. American Association for Cancer Research, 2018. http://dx.doi.org/10.1158/1538-7445.am2018-3530.
Texto completo da fonte