Abnormal Mitochondrial L-Arginine Transport Contributes to the Pathogenesis of Heart Failure and Rexoygenation Injury
暂无分享,去创建一个
Mandar Joshi | D. Kaye | S. McGee | P. Gregorevic | M. Byrne | David Williams | David M. Kaye | Paul Gregorevic | Melissa Byrne | Nicholas T. Lam | Sean L. McGee | Kylie M. Venardos | Duncan Horlock | N. Lam | M. Joshi | D. Horlock | K. Venardos | David R. Williams
[1] L. Blatter,et al. Modulation of mitochondrial Ca2+ by nitric oxide in cultured bovine vascular endothelial cells. , 2005, American journal of physiology. Cell physiology.
[2] D. Kaye,et al. The synergism between atrial fibrillation and heart failure. , 2008, Journal of cardiac failure.
[3] P. Ghafourifar,et al. Strategic localization of heart mitochondrial NOS: a review of the evidence. , 2012, American journal of physiology. Heart and circulatory physiology.
[4] E. Clementi,et al. Mitochondrial type I nitric oxide synthase physically interacts with cytochrome c oxidase , 2005, Neuroscience Letters.
[5] S. Vatner,et al. Activation of Mst1 causes dilated cardiomyopathy by stimulating apoptosis without compensatory ventricular myocyte hypertrophy. , 2003, The Journal of clinical investigation.
[6] E. Cadenas,et al. Sites and mechanisms of aconitase inactivation by peroxynitrite: modulation by citrate and glutathione. , 2005, Biochemistry.
[7] A. Boveris,et al. Mitochondrial metabolic states and membrane potential modulate mtNOS activity. , 2006, Biochimica et biophysica acta.
[8] R. Ritchie,et al. Reduced L‐arginine transport contributes to the pathogenesis of myocardial ischemia‐reperfusion injury , 2009, Journal of cellular biochemistry.
[9] Mark R. Duranski,et al. Cytoprotective effects of nitrite during in vivo ischemia-reperfusion of the heart and liver. , 2005, The Journal of clinical investigation.
[10] C. Sen,et al. Mitochondrial nitric oxide synthase. , 2007, Frontiers in bioscience : a journal and virtual library.
[11] F. Recchia,et al. Bovine polymerized hemoglobin increases cardiac oxygen consumption and alters myocardial substrate metabolism in conscious dogs: role of nitric oxide. , 2000, Journal of cardiovascular pharmacology.
[12] Q. Feng,et al. Modulation of apoptosis by nitric oxide: implications in myocardial ischemia and heart failure. , 2005, Pharmacology & therapeutics.
[13] A. Boveris,et al. Mitochondrial metabolic states regulate nitric oxide and hydrogen peroxide diffusion to the cytosol. , 2006, Biochimica et biophysica acta.
[14] L. Becker. Myocardial Reperfusion Injury , 2004, Journal of Thrombosis and Thrombolysis.
[15] D. Sawyer,et al. Mitochondrial oxidative stress in heart failure: "oxygen wastage" revisited. , 2000, Circulation research.
[16] D. Kaye,et al. In Vivo and In Vitro Evidence for Impaired Arginine Transport in Human Heart Failure , 2000, Circulation.
[17] V. Borutaite,et al. Nitric oxide and mitochondrial respiration in the heart. , 2007, Cardiovascular research.
[18] V. Mootha,et al. Maximum oxidative phosphorylation capacity of the mammalian heart. , 1997, The American journal of physiology.
[19] A. Kanai,et al. Identification of a neuronal nitric oxide synthase in isolated cardiac mitochondria using electrochemical detection , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[20] M. Duchen,et al. Effects of NO on mitochondrial function in cardiomyocytes: Pathophysiological relevance. , 2006, Cardiovascular research.
[21] J. Huss,et al. Mitochondrial energy metabolism in heart failure: a question of balance. , 2005, The Journal of clinical investigation.
[22] A. Shoukas,et al. Arginase modulates myocardial contractility by a nitric oxide synthase 1-dependent mechanism. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[23] T. Smith,et al. J-aggregate formation of a carbocyanine as a quantitative fluorescent indicator of membrane potential. , 1991, Biochemistry.
[24] D. Kaye,et al. Myocardial ischemia-reperfusion injury, antioxidant enzyme systems, and selenium: a review. , 2007, Current medicinal chemistry.
[25] Linda Partridge,et al. Cardioprotection by S-nitrosation of a cysteine switch on mitochondrial complex I , 2013, Nature Medicine.
[26] Guang Tong,et al. Essential role of nitric oxide in acute ischemic preconditioning: S-nitros(yl)ation versus sGC/cGMP/PKG signaling? , 2013, Free radical biology & medicine.
[27] D. Busija,et al. Mitochondrial nitric oxide synthase: current concepts and controversies. , 2009, Frontiers in bioscience.
[28] D. Busija,et al. Mitochondrial nitric oxide synthase is constitutively active and is functionally upregulated in hypoxia. , 2001, Free radical biology & medicine.
[29] Emilio Clementi,et al. Calorie Restriction Promotes Mitochondrial Biogenesis by Inducing the Expression of eNOS , 2005, Science.
[30] E. Closs,et al. Plasma membrane transporters for arginine. , 2004, The Journal of nutrition.
[31] E. Block,et al. Classical isoforms of PKC as regulators of CAT-1 transporter activity in pulmonary artery endothelial cells. , 2003, American journal of physiology. Lung cellular and molecular physiology.
[32] C. Giulivi,et al. Biochemistry of Mitochondrial Nitric-oxide Synthase* , 2002, The Journal of Biological Chemistry.
[33] D. Kaye,et al. β-Adrenoceptor-mediated, nitric-oxide-dependent vasodilatation is abnormal in early hypertension: restoration by l-arginine , 2004, Journal of hypertension.
[34] E. Nisoli,et al. Amino acids and mitochondrial biogenesis. , 2008, The American journal of cardiology.
[35] L. Scorrano,et al. Organelle isolation: functional mitochondria from mouse liver, muscle and cultured filroblasts , 2007, Nature Protocols.
[36] Edward T Chouchani,et al. A mitochondria-targeted S-nitrosothiol modulates respiration, nitrosates thiols, and protects against ischemia-reperfusion injury , 2009, Proceedings of the National Academy of Sciences.
[37] D. Stowe,et al. Differential Increase of Mitochondrial Matrix Volume by Sevoflurane in Isolated Cardiac Mitochondria , 2008, Anesthesia and analgesia.
[38] D. Kaye,et al. Protein kinase C mediated inhibition of endothelial L-arginine transport is mediated by MARCKS protein. , 2009, Journal of molecular and cellular cardiology.
[39] B. Morris,et al. Identification of a Novel Polymorphism in the 3′UTR of the l-Arginine Transporter Gene SLC7A1: Contribution to Hypertension and Endothelial Dysfunction , 2007, Circulation.
[40] D. Kaye,et al. Impaired l-Arginine Transport and Endothelial Function in Hypertensive and Genetically Predisposed Normotensive Subjects , 2004, Circulation.
[41] A. Takeshita,et al. Mitochondrial electron transport complex I is a potential source of oxygen free radicals in the failing myocardium. , 1999, Circulation research.
[42] D. Kaye,et al. Reduced Myocardial and Systemic l-Arginine Uptake in Heart Failure , 2002, Circulation research.
[43] M. Crabeel,et al. Transport of arginine and ornithine into isolated mitochondria of Saccharomyces cerevisiae. , 1998, European journal of biochemistry.
[44] Mark R. Duranski,et al. Nitrite augments tolerance to ischemia/reperfusion injury via the modulation of mitochondrial electron transfer , 2007, The Journal of experimental medicine.
[45] E. Giordano,et al. Nitric oxide synthase activity in rat cardiac mitochondria , 2004, Basic Research in Cardiology.
[46] V. Borutaite,et al. S-nitrosothiol inhibition of mitochondrial complex I causes a reversible increase in mitochondrial hydrogen peroxide production. , 2006, Biochimica et biophysica acta.
[47] G. D’Antona,et al. Branched-chain amino acids, mitochondrial biogenesis, and healthspan: an evolutionary perspective , 2011, Aging.