Literature DB >> 1656157

Conservation of the sequence of the Alzheimer's disease amyloid peptide in dog, polar bear and five other mammals by cross-species polymerase chain reaction analysis.

E M Johnstone1, M O Chaney, F H Norris, R Pascual, S P Little.   

Abstract

Neuritic plaque and cerebrovascular amyloid deposits have been detected in the aged monkey, dog, and polar bear and have rarely been found in aged rodents (Biochem. Biophy. Res. Commun., 12 (1984) 885-890; Proc. Natl. Acad. Sci. U.S.A., 82 (1985) 4245-4249). To determine if the primary structure of the 42-43 residue amyloid peptide is conserved in species that accumulate plaques, the region of the amyloid precursor protein (APP) cDNA that encodes the peptide region was amplified by the polymerase chain reaction and sequenced. The deduced amino acid sequence was compared to those species where amyloid accumulation has not been detected. The DNA sequences of dog, polar bear, rabbit, cow, sheep, pig and guinea pig were compared and a phylogenetic tree was generated. We conclude that the amino acid sequence of dog and polar bear and other mammals which may form amyloid plaques is conserved and the species where amyloid has not been detected (mouse, rat) may be evolutionarily a distinct group. In addition, the predicted secondary structure of mouse and rat amyloid that differs from that of amyloid bearing species is its lack of propensity to form a beta sheeted structure. Thus, a cross-species examination of the amyloid peptide may suggest what is essential for amyloid deposition.

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Year:  1991        PMID: 1656157     DOI: 10.1016/0169-328x(91)90088-f

Source DB:  PubMed          Journal:  Brain Res Mol Brain Res        ISSN: 0169-328X


  77 in total

1.  Accumulation of amyloid precursor protein in neurons after intraventricular injection of colchicine.

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2.  Aβ aggregation profiles and shifts in APP processing favor amyloidogenesis in canines.

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3.  Long-term high-dose atorvastatin decreases brain oxidative and nitrosative stress in a preclinical model of Alzheimer disease: a novel mechanism of action.

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4.  Role of Species-Specific Primary Structure Differences in Aβ42 Assembly and Neurotoxicity.

Authors:  Robin Roychaudhuri; Xueyun Zheng; Aleksey Lomakin; Panchanan Maiti; Margaret M Condron; George B Benedek; Gal Bitan; Michael T Bowers; David B Teplow
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5.  Calorimetric investigation of copper(II) binding to Aβ peptides: thermodynamics of coordination plasticity.

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Authors:  Lori-Ann Christie; Richard C Saunders; Danuta M Kowalska; William A MacKay; Elizabeth Head; Carl W Cotman
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Review 7.  The Janus face of the heme oxygenase/biliverdin reductase system in Alzheimer disease: it's time for reconciliation.

Authors:  Eugenio Barone; Fabio Di Domenico; Cesare Mancuso; D Allan Butterfield
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8.  Immunoreactivities and levels of mineralocorticoid and glucocorticoid receptors in the hippocampal CA1 region and dentate gyrus of adult and aged dogs.

Authors:  Jung Hoon Choi; In Koo Hwang; Choong Hyun Lee; Dae Won Chung; Ki-Yeon Yoo; Hua Li; Moo-Ho Won; Je Kyung Seong; Yeo Sung Yoon; In Se Lee
Journal:  Neurochem Res       Date:  2007-11-06       Impact factor: 3.996

Review 9.  A canine model of human aging and Alzheimer's disease.

Authors:  Elizabeth Head
Journal:  Biochim Biophys Acta       Date:  2013-03-23

10.  Natural non-trasgenic animal models for research in Alzheimer's disease.

Authors:  Manuel Sarasa; Pedro Pesini
Journal:  Curr Alzheimer Res       Date:  2009-04       Impact factor: 3.498

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