Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicity

The fact that Alzheimer's beta amyloid (Aβ) peptides forms cation channels in lipid bilayers was discovered during the course of our experiments in the laboratory of "Guayo" Rojas at NIH in Bethesda, Maryland (USA). Recently, we found that the Aβ ion channel could be blocked selective...

Full description

Bibliographic Details
Main Authors: JUAN CARLOS DÍAZ, JOHN LINNEHAN, HARVEY POLLARD, NELSON ARISPE
Format: Article
Language:English
Published: BMC 2006-01-01
Series:Biological Research
Subjects:
Online Access:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602006000300007&lng=en&tlng=en
id doaj-8272153568634c13afbc4c7c44366822
record_format Article
spelling doaj-8272153568634c13afbc4c7c443668222020-11-25T00:38:34ZengBMCBiological Research0716-97602006-01-0139344746010.4067/S0716-97602006000300007S0716-97602006000300007Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicityJUAN CARLOS DÍAZ0JOHN LINNEHAN1HARVEY POLLARD2NELSON ARISPE3Uniformed Services University School of MedicineUniformed Services University School of MedicineUniformed Services University School of MedicineUniformed Services University School of MedicineThe fact that Alzheimer's beta amyloid (Aβ) peptides forms cation channels in lipid bilayers was discovered during the course of our experiments in the laboratory of "Guayo" Rojas at NIH in Bethesda, Maryland (USA). Recently, we found that the Aβ ion channel could be blocked selectively with small peptides that copy the amino acid sequence of the predicted mouth region of the Aβ channel pore. We now have searched for the essential amino acid residues required for this blocking effect by mutations. We found that the ability of peptides to block Aβ channel activity could be lost by replacement of histidines 13 and 14 by alanine or lysine. The amino acid substitution also resulted in the loss of the capacity of the peptides to protect cells from Aβ cytotoxicity. These data thus contribute to the definition of the region of the Aβ sequence that participates in the formation of the channel pore. Additionally, these data support the hypothesis that the ion channel activity of Ab contributes significantly to the cytotoxic properties of Aβ. These data also emphasize the potential value in using inhibition of Aβ ion channel activity as an end point for Alzheimer's disease drug discovery.http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602006000300007&lng=en&tlng=enAlzheimer's diseasebeta amyloidion channel blockerspeptideshistidinetoxicity
collection DOAJ
language English
format Article
sources DOAJ
author JUAN CARLOS DÍAZ
JOHN LINNEHAN
HARVEY POLLARD
NELSON ARISPE
spellingShingle JUAN CARLOS DÍAZ
JOHN LINNEHAN
HARVEY POLLARD
NELSON ARISPE
Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicity
Biological Research
Alzheimer's disease
beta amyloid
ion channel blockers
peptides
histidine
toxicity
author_facet JUAN CARLOS DÍAZ
JOHN LINNEHAN
HARVEY POLLARD
NELSON ARISPE
author_sort JUAN CARLOS DÍAZ
title Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicity
title_short Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicity
title_full Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicity
title_fullStr Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicity
title_full_unstemmed Histidines 13 and 14 in the Aβ sequence are targets for inhibition of Alzheimer's disease Aβ ion channel and cytotoxicity
title_sort histidines 13 and 14 in the aβ sequence are targets for inhibition of alzheimer's disease aβ ion channel and cytotoxicity
publisher BMC
series Biological Research
issn 0716-9760
publishDate 2006-01-01
description The fact that Alzheimer's beta amyloid (Aβ) peptides forms cation channels in lipid bilayers was discovered during the course of our experiments in the laboratory of "Guayo" Rojas at NIH in Bethesda, Maryland (USA). Recently, we found that the Aβ ion channel could be blocked selectively with small peptides that copy the amino acid sequence of the predicted mouth region of the Aβ channel pore. We now have searched for the essential amino acid residues required for this blocking effect by mutations. We found that the ability of peptides to block Aβ channel activity could be lost by replacement of histidines 13 and 14 by alanine or lysine. The amino acid substitution also resulted in the loss of the capacity of the peptides to protect cells from Aβ cytotoxicity. These data thus contribute to the definition of the region of the Aβ sequence that participates in the formation of the channel pore. Additionally, these data support the hypothesis that the ion channel activity of Ab contributes significantly to the cytotoxic properties of Aβ. These data also emphasize the potential value in using inhibition of Aβ ion channel activity as an end point for Alzheimer's disease drug discovery.
topic Alzheimer's disease
beta amyloid
ion channel blockers
peptides
histidine
toxicity
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602006000300007&lng=en&tlng=en
work_keys_str_mv AT juancarlosdiaz histidines13and14intheabsequencearetargetsforinhibitionofalzheimersdiseaseabionchannelandcytotoxicity
AT johnlinnehan histidines13and14intheabsequencearetargetsforinhibitionofalzheimersdiseaseabionchannelandcytotoxicity
AT harveypollard histidines13and14intheabsequencearetargetsforinhibitionofalzheimersdiseaseabionchannelandcytotoxicity
AT nelsonarispe histidines13and14intheabsequencearetargetsforinhibitionofalzheimersdiseaseabionchannelandcytotoxicity
_version_ 1725296886792847360