Bioquímica Básica

Anita Marzzoco e Bayardo Baptista Torres · Capítulo 93 de 225

Páginas do PDF

Bioquímica Básica

Bibliografia

Bibliogra a

Althoff T et al.: Arrangement of electron transport chain components in bovine mitochondrial

supercomplex I1III2IV1. EMBO J 30 (22): 4652-4664, 2011.

Azzu V et al.: The regulation and turnover of mitochondrial uncoupling proteins. Biochim Biophys

Acta 1797 (6-7): 785-791, 2010.

Baradaran R et al.: Crystal structure of the entire respiratory complex I. Nature 494 (7438): 443-448,

2013.

Belevich I et al.: Initiation of the proton pump of cytochrome c oxidase. Proc Natl Acad Sci USA

107: 18469-18474, 2010.

Brand MD: The sites and topology of mitochondrial superoxide production. Exp Gerontol 45 (7-8):

466-472, 2010.

Byers T: Anticancer Vitamins du Jour — The ABCED’s So Far. Am J Epidemiol 172 (1): 1-3, 2010. Cramer WA et al.: The Q cycle of cytochrome bc complexes: a structure perspective. Biochim

Biophys Acta 1807 (7): 788-802, 2011.

DeWeerdt S: Food: The omnivore’s labyrinth. Nature 471: S22-S24, 2011. Diano S, Horvath TL: Mitochondrial uncoupling protein 2 (UCP2) in glucose and lipid metabolism.

Trends Mol Med 18 (1): 52-58, 2012.

Dickinson BC, Chang CJ: Chemistry and biology of reactive oxygen species in signaling or stress

responses. Nat Chem Biol 7 (8): 504-511, 2011.

Drummond GR et al.: Combating oxidative stress in vascular disease: NADPH oxidases as

therapeutic targets. Nat Rev Drug Discov 10 (6): 453-471, 2011.

Ferguson SJ: ATP synthase: from sequence to ring size to the P/O ratio. Proc Natl Acad Sci USA 107

(39): 16755-16756, 2010.

Gleason C et al.: Mitochondrial complex II has a key role in mitochondrial-derived reactive oxygen

species influence on plant stress gene regulation and defense. Proc Natl Acad Sci USA 108 (26):

10768-10773, 2011.

Grundlingh J et al.: 2,4-Dinitrophenol (DNP): a weight loss agent with significant acute toxicity and

risk of death. J Med Toxicol 7 (3): 205-212, 2011.

Holmström KM, Finkel T: Cellular mechanisms and physiological consequences of redox-dependent

signaling. Nat Rev Mol Cell Biol 15 (6): 411-4216, 2014.

Jonckheere AI et al.: Mitochondrial ATP synthase: architecture, function and pathology. J Inherit

Metab Dis 35 (2): 211-225, 2012.

Key TJ: Fruit and vegetables and cancer risk. Br J Cancer 104 (1): 6-11, 2011.

Kunji ERS, Robinson AJ: Coupling of proton and substrate translocation in the transport cycle of

mitochondrial carriers. Curr Opin Struct Biol 20 (4): 440-447, 2010.

Mailloux RJ, Harper ME: Uncoupling proteins and the control of mitochondrial reactive oxygen

species production. Free Radic Biol Med 51 (6):1.106-1.115, 2011.

Maklashina E, Cecchini G. The quinone-binding and catalytic site of complex II. Biochim Biophys

Acta 1797 (12): 1877-1882, 2010.

Mitchell P: Coupling of phosphorylation to electron and hydrogen transfer by a chemiosmotic type of

mechanism. Nature 191: 144-148, 1961.

Noji et al.: Direct observation of the rotation of F1-ATPase. Nature 386: 299-302, 1997. Starkov AA: The molecular identity of the mitochondrial Ca2+ sequestration system. FEBS J 277

(18): 3652-3663, 2010.

Vercesi AE et al.: Plant uncoupling mitochondrial proteins. Annu Rev Plant Biol 57: 383-404, 2006. Watt IN et al.: Bioenergetic cost of making an adenosine triphosphate molecule in animal

mitochondria. Proc Natl Acad Sci USA 107: 16.823-16.827, 2010.

Weber J: Toward the ATP synthase mechanism. Nat Chem Biol 6: 794-795, 2010.

__________

1O espaço periplasmático, ou periplasma, localiza-se entre a membrana plasmática e a membrana externa de bactérias gram-negativas, como E. coli.

 

OceanofPDF.com