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1.
Mol Cell Neurosci ; 49(4): 448-55, 2012 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-22353605

RESUMO

Amyloid precursor protein (APP), the parent molecule to amyloid ß peptide, is part of a larger gene family with two mammalian homologues, amyloid precursor-like protein 1 (APLP1) and amyloid precursor-like protein 2 (APLP2). Initial knock-out studies demonstrated that while single APP family gene deletions produced relatively mild phenotypes, deficiency of APLP2 and one other member of the gene family resulted in perinatal lethality, suggesting vital roles masked by functional redundancy of the other homologues. Because of the importance of APP in Alzheimer's disease, the vast majority of studies to date have concentrated on the neuronal functions of APP, leaving limited data on its homologues. APLP2 is of particular interest as it contains high sequence homology with APP, is processed similarly, is expressed in overlapping spatial and temporal patterns, and is obligatory for lethality when combined with deficiency of either APLP1 or APP but does not contain the toxic amyloid ß sequence. Here we sought to test the role of APLP2 on neuronal structure and function using a combined approach involving in vitro and in vivo techniques in young and aged animals. Surprisingly, we found that unlike APP, APLP2 appears not to be essential for maintenance of dendritic structure, spine density, or synaptic function. Thus, there is clear divergence in the functional redundancy between APP and APLP2.


Assuntos
Precursor de Proteína beta-Amiloide/deficiência , Hipocampo/metabolismo , Potenciação de Longa Duração/fisiologia , Neurônios/metabolismo , Precursor de Proteína beta-Amiloide/genética , Animais , Forma Celular , Potenciais Pós-Sinápticos Excitadores/fisiologia , Hipocampo/citologia , Camundongos , Camundongos Knockout , Microscopia Confocal , Neurônios/citologia , Técnicas de Patch-Clamp
2.
J Biol Chem ; 284(42): 28943-52, 2009 Oct 16.
Artigo em Inglês | MEDLINE | ID: mdl-19596858

RESUMO

The amyloid precursor protein (APP) plays a central role in Alzheimer disease (AD) pathogenesis because sequential cleavages by beta- and gamma-secretase lead to the generation of the amyloid-beta (Abeta) peptide, a key constituent in the amyloid plaques present in brains of AD individuals. In several studies APP has recently been shown to form homodimers, and this event appears to influence Abeta generation. However, these studies have relied on APP mutations within the Abeta sequence itself that may affect APP processing by interfering with secretase cleavages independent of dimerization. Therefore, the impact of APP dimerization on Abeta production remains unclear. To address this question, we compared the approach of constitutive cysteine-induced APP dimerization with a regulatable dimerization system that does not require the introduction of mutations within the Abeta sequence. To this end we generated an APP chimeric molecule by fusing a domain of the FK506-binding protein (FKBP) to the C terminus of APP. The addition of the synthetic membrane-permeant drug AP20187 induces rapid dimerization of the APP-FKBP chimera. Using this system we were able to induce up to 70% APP dimers. Our results showed that controlled homodimerization of APP-FKBP leads to a 50% reduction in total Abeta levels in transfected N2a cells. Similar results were obtained with the direct precursor of beta-secretase cleavage, C99/SPA4CT-FKBP. Furthermore, there was no modulation of different Abeta peptide species after APP dimerization in this system. Taken together, our results suggest that APP dimerization can directly affect gamma-secretase processing and that dimerization is not required for Abeta production.


Assuntos
Peptídeos beta-Amiloides/química , Precursor de Proteína beta-Amiloide/química , Doença de Alzheimer/metabolismo , Animais , Domínio Catalítico , Linhagem Celular Tumoral , Dimerização , Regulação da Expressão Gênica , Humanos , Camundongos , Modelos Biológicos , Mutagênese Sítio-Dirigida , Mutação , Estrutura Terciária de Proteína , Transfecção
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