In order to clarify the basis of neuronal toxicity exerted by the shortest active peptides of amyloid beta-protein (A beta), the toxic effects of A beta(31-35) and A beta(25-35) peptides on isolated rat brain mitochondria were investigated. The results show that exposure of isolated rat brain mitochondria to A beta(31-35) and A beta(25-35) peptides determines: (i) release of cytochrome c; (ii) mitochondrial swelling and (iii) a significant reduction in mitochondrial oxygen consumption. In contrast, the amplitude of these events resulted attenuated in isolated brain mitochondria exposed to the A beta(31-35)Met35(OX) in which methionine-35 was oxidized to methionine sulfoxide. The AP peptide derivative with norleucine substituting Met-35, i.e., A beta(31-35)Nle-35, had not effect on any of the biochemical parameters tested. We have further characterized the action of A beta(31-35) and A beta(25-35) peptides on neuronal cells. Taken together our result indicate that A beta(31-35) and A beta(25-35) peptides in non-aggregated form, i.e., predominantly monomeric, are strongly neurotoxic, having the ability to enter within the cells, determining mitochondrial damage with an evident trigger of apoptotic signals. Such a mechanism of toxicity seems to be dependent by the redox state of methionine-35.
Ab(31-35) and Ab(25-35) fragments of amyloid beta-protein induce cellular death through apoptotic signals: Role of the redox state of methionine-35
Clementi ME;Giardina B;
2005
Abstract
In order to clarify the basis of neuronal toxicity exerted by the shortest active peptides of amyloid beta-protein (A beta), the toxic effects of A beta(31-35) and A beta(25-35) peptides on isolated rat brain mitochondria were investigated. The results show that exposure of isolated rat brain mitochondria to A beta(31-35) and A beta(25-35) peptides determines: (i) release of cytochrome c; (ii) mitochondrial swelling and (iii) a significant reduction in mitochondrial oxygen consumption. In contrast, the amplitude of these events resulted attenuated in isolated brain mitochondria exposed to the A beta(31-35)Met35(OX) in which methionine-35 was oxidized to methionine sulfoxide. The AP peptide derivative with norleucine substituting Met-35, i.e., A beta(31-35)Nle-35, had not effect on any of the biochemical parameters tested. We have further characterized the action of A beta(31-35) and A beta(25-35) peptides on neuronal cells. Taken together our result indicate that A beta(31-35) and A beta(25-35) peptides in non-aggregated form, i.e., predominantly monomeric, are strongly neurotoxic, having the ability to enter within the cells, determining mitochondrial damage with an evident trigger of apoptotic signals. Such a mechanism of toxicity seems to be dependent by the redox state of methionine-35.File | Dimensione | Formato | |
---|---|---|---|
prod_17364-doc_5204.pdf
non disponibili
Descrizione: Ab(31-35) and Ab(25-35) fragments of amyloid beta-protein induce cellular death through apoptotic signals: Role of the redox state of methionine-35
Dimensione
203.26 kB
Formato
Adobe PDF
|
203.26 kB | Adobe PDF | Visualizza/Apri Richiedi una copia |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.