Lopez-Perez E, Zhang Y, Frank S J, Creemers J, Seidah N, Checler F
IPMC du CNRS, UMR6097, Valbonne, France.
J Neurochem. 2001 Mar;76(5):1532-9. doi: 10.1046/j.1471-4159.2001.00180.x.
The beta-amyloid precursor protein (betaAPP) undergoes a physiological cleavage triggered by one or several proteolytic activities referred to as alpha-secretases, leading to the secretion of sAPPalpha. Several lines of evidence indicate that the alpha-secretase cleavage is a highly regulated process. Thus, besides constitutive production of sAPPalpha, several studies have reported on protein kinase C-regulated sAPPalpha secretion. Studies aimed at identifying alpha-secretase(s) candidates suggest the involvement of enzymes belonging to the pro-hormone convertases and disintegrin families. The delineation of respective contributions of proteolytic activities in constitutive and regulated sAPPalpha secretion is rendered difficult by the fact that the overall regulated response always includes the basal constitutive counterpart that cannot be selectively abolished. Here we report on the fact that the furin-deficient LoVo cells are devoid of regulated PKC-dependent sAPPalpha secretion and therefore represent an interesting model to study exclusively the constitutive sAPPalpha secretion. We show here, by a pharmacological approach using selective inhibitors, that pro-hormone convertases and proteases of the ADAM (disintegrin metalloproteases) family participate in the production/secretion of sAPPalphas in LoVo cells. Transfection analysis allowed us to further establish that the pro-hormone convertase 7 and ADAM10 but not ADAM17 (TACE, tumour necrosis factor alpha-converting enzyme) likely contribute to constitutive sAPPalpha secretion by LoVo cells.
β-淀粉样前体蛋白(βAPP)会经历一种由一种或几种被称为α-分泌酶的蛋白水解活性触发的生理性切割,从而导致分泌可溶性APPα(sAPPα)。多项证据表明,α-分泌酶切割是一个高度受调控的过程。因此,除了组成性产生sAPPα外,多项研究还报道了蛋白激酶C调节的sAPPα分泌。旨在鉴定α-分泌酶候选物的研究表明,激素原转化酶家族和去整合素家族的酶参与其中。由于整体的调控反应总是包括无法被选择性消除的基础组成部分,因此难以确定蛋白水解活性在组成性和受调控的sAPPα分泌中的各自贡献。在此我们报告一个事实,即缺乏弗林蛋白酶的LoVo细胞不存在受调控的蛋白激酶C依赖性sAPPα分泌,因此是一个专门研究组成性sAPPα分泌的有趣模型。我们在此通过使用选择性抑制剂的药理学方法表明,激素原转化酶和ADAM(去整合素金属蛋白酶)家族的蛋白酶参与了LoVo细胞中sAPPα的产生/分泌。转染分析使我们能够进一步确定,激素原转化酶7和ADAM10而非ADAM17(肿瘤坏死因子α转换酶TACE)可能对LoVo细胞组成性sAPPα分泌有贡献。