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MT5-MMP 通过对阿尔茨海默病相关的蛋白水解依赖和非依赖机制来控制 APP 和β-CTF/C99 的代谢。

MT5-MMP controls APP and β-CTF/C99 metabolism through proteolytic-dependent and -independent mechanisms relevant for Alzheimer's disease.

机构信息

Aix-Marseille Univ, CNRS, INP, Inst Neurophysiopathol, Marseille, France.

IPMC, UMR 7275 CNRS-UCA, Labex DistAlz, Valbonne, France.

出版信息

FASEB J. 2021 Jul;35(7):e21727. doi: 10.1096/fj.202100593R.

Abstract

We previously discovered the implication of membrane-type 5-matrix metalloproteinase (MT5-MMP) in Alzheimer's disease (AD) pathogenesis. Here, we shed new light on pathogenic mechanisms by which MT5-MMP controls the processing of amyloid precursor protein (APP) and the fate of amyloid beta peptide (Aβ) as well as its precursor C99, and C83. We found in human embryonic kidney cells (HEK) carrying the APP Swedish familial mutation (HEKswe) that deleting the C-terminal non-catalytic domains of MT5-MMP hampered its ability to process APP and release the soluble 95 kDa form (sAPP95). Catalytically inactive MT5-MMP variants increased the levels of Aβ and promoted APP/C99 sorting in the endolysosomal system, likely through interactions of the proteinase C-terminal portion with C99. Most interestingly, the deletion of the C-terminal domain of MT5-MMP caused a strong degradation of C99 by the proteasome and prevented Aβ accumulation. These discoveries reveal new control of MT5-MMP over APP by proteolytic and non-proteolytic mechanisms driven by the C-terminal domains of the proteinase. The targeting of these non-catalytic domains of MT5-MMP could, therefore, provide new insights into the therapeutic regulation of APP-related pathology in AD.

摘要

我们之前发现了膜型 5-基质金属蛋白酶(MT5-MMP)在阿尔茨海默病(AD)发病机制中的作用。在这里,我们通过 MT5-MMP 控制淀粉样前体蛋白(APP)的加工以及淀粉样β肽(Aβ)及其前体 C99 和 C83 的命运的致病机制提供了新的见解。我们在携带 APP 瑞典家族突变的人胚肾细胞(HEK)中发现(HEKswe),删除 MT5-MMP 的 C 端非催化结构域会削弱其加工 APP 和释放可溶性 95 kDa 形式(sAPP95)的能力。无催化活性的 MT5-MMP 变体增加了 Aβ 的水平,并促进 APP/C99 在内溶酶体系统中的分选,可能是通过蛋白酶 C 端部分与 C99 的相互作用。最有趣的是,MT5-MMP 的 C 端结构域缺失会导致 C99 被蛋白酶体强烈降解,并阻止 Aβ 积累。这些发现揭示了 MT5-MMP 通过由蛋白酶的 C 端驱动的蛋白水解和非蛋白水解机制对 APP 的新控制。因此,靶向 MT5-MMP 的这些非催化结构域可能为 AD 中 APP 相关病理学的治疗调节提供新的见解。

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