INVESTIGADORES
BRONDINO Carlos Dante
artículos
Título:
Amyloid -Peptide Disrupts Mithocondrial Membrane Lipid and Protein Structure: Protective Role of Tauroursodeoxycholate
Autor/es:
C.M.P. RODRIGUES; S. SOLÁ; M.A. BRITO; C.D. BRONDINO; D. BRITES; J.J.G. MOURA
Revista:
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
Editorial:
ACADEMIC PRESS INC ELSEVIER SCIENCE
Referencias:
Año: 2001 vol. 281 p. 468 - 474
ISSN:
0006-291X
Resumen:
Mitochondria have been implicated in the cytotoxicity of amyloid b-peptide (Ab), which accumulates as senile plaques in the brain of Alzheimer’s disease patients. Tauroursodeoxycholate (TUDC) modulates cell death, in part, by preventing mitochondrial membrane perturbation.Using electron paramagnetic resonance spectroscopy analysis of isolated mitochondria, we tested the hypothesis that Ab acts locally in mitochondrial membranes to induce oxidative injury, leading to increased membrane permeability and subsequent release of caspase-activating factors. Further, we intended to determine the role of TUDC at preventing Ab-induced mitochondrialmembrane dysfunction. The results demonstrate oxidative injury of mitochondrial membranesduring exposure to Ab and reveal profound structural changes, including modified membrane lipid polarity and disrupted protein mobility. Cytochrome c is released from the intermembrane space of mitochondria as a consequence of increased membrane permeability. TUDC, but not cyclosporine A, almost completely abrogated Ab-induced perturbation of mitochondrial membrane structure. We conclude that Ab directly induces cytochrome c release from mitochondria through a mechanism that is accompanied by profound effects on mitochondrial membrane redox status, lipid polarity, and protein order. TUDC can directly suppress Abinduced disruption of the mitochondrial membrane structure, suggesting a neuroprotective role for this bile salt.