The caspase-derived C-terminal fragment of βAPP induces caspase-independent toxicity and triggers selective increase of Aβ42 in mammalian cells

被引:33
作者
Dumanchin-Njock, C
da Costa, CA
Mercken, L
Pradier, L
Checler, F
机构
[1] Univ Nice Sophia Antipolis, CNRS, UMR6097, IPMC, F-06560 Valbonne, France
[2] Aventis Pharma, Vitry Sur Seine, France
关键词
Alzheimer's disease; amyloid; beta-amyloid precursor protein; caspases; HEK293 cells TSM1 neurons;
D O I
10.1046/j.1471-4159.2001.00513.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
During its physiopathological maturation, the p-amyloid precursor protein undergoes several distinct proteolytic events by activities called secretases. In Alzheimer's disease, the main histological hallmark called senile plaque is clearly linked to the overproduction of the amyloid peptides A beta 40 and A beta 42, two highly aggregable beta APP-derived fragments generated by combined cleavages by beta- and gamma -secretases. Recently, an alternative hydrolytic pathway was described, involving another category of proteolytic activities called caspases, responsible for the production of a 31 amino acids beta APP C-terminal fragment called C31. C31 was reported to lower the viability of N2a cells but the exact mechanisms mediating C31-toxicity remained to be established. Here we show that the transient transfection of pSV2 vector encoding C31 lowers by about 80% TSM1 neuronal cells viability. Arguing against a C31-stimulated apoptotic response, we demonstrate by combined enzymatic and immunological approaches that C31 expression did not modulate basal or staurosporine-induced caspase 3-like activity and pro-caspase-3 activation. Furthermore, C31 did not modify Bax and p53 expressions, poly-(ADP-ribose)-polymerase cleavage and cytochrome c translocation into the cytosol. However, we established that C31 overexpression triggers selective increase of A beta 42 but not A beta 40 production by HEK293 cells expressing wild-type beta APP751. Altogether, our data demonstrate that C31 induces a caspase-independent toxicity in TSM1 neurons and potentiates the pathogenic beta APP maturation pathway by increasing selectively A beta 42 species in wild type-beta APP-expressing human cells.
引用
收藏
页码:1153 / 1161
页数:9
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