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首页> 外文期刊>The Journal of biological chemistry >Cathepsin B Degrades Amyloid-β in Mice Expressing Wild-type Human Amyloid Precursor Protein
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Cathepsin B Degrades Amyloid-β in Mice Expressing Wild-type Human Amyloid Precursor Protein

机译:组织蛋白酶B降解表达野生型人淀粉样蛋白前体蛋白的小鼠中的淀粉样蛋白-β

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Accumulation of amyloid-β (Aβ), believed to be a key trigger of Alzheimer disease (AD), could result from impaired clearance mechanisms. Previously, we showed that the cysteine protease cathepsin B (CatB) degrades Aβ, most likely by C-terminal truncation, in mice expressing human amyloid precursor protein with familial AD-linked mutations (hAPPFAD). In addition, the Aβ-degrading activity of CatB is inhibited by its endogenous inhibitor, cystatin C (CysC). Reducing CysC expression markedly lowers Aβ levels by enhancing CatB-mediated Aβ degradation in hAPPFAD mice. However, because a vast majority of AD patients do not carry familial mutations, we investigated how the CysC-CatB axis affects Aβ levels in mice expressing wild-type hAPP (hAPPWT). Enhancing CatB activity by CysC deletion significantly lowered total Aβ and Aβ42 levels in hAPPWT mice, whereas CatB deletion increased Aβ levels. To determine whether neuron-derived CatB degrades Aβ in vivo, we generated transgenic mice overexpressing CatB under the control of a neuron-specific enolase promoter. Enhancing neuronal CatB activity in hAPPWT mice significantly lowered Aβ42 levels. The processing of hAPPWT was unaffected by increasing or ablating CatB activity. Thus, the CysC-CatB axis affects degradation of Aβ42 derived from hAPP lacking familial mutations. These findings support the notion that enhancing CatB activity could lower Aβ, especially Aβ42, in AD patients with or without familial mutations.
机译:淀粉样蛋白-β(Aβ)的积累,被认为是Alzheimer疾病(AD)的关键触发,可能由受损的间隙机制产生。以前,我们表明半胱氨酸蛋白酶组织蛋白酶B(CATB)在表达人淀粉样蛋白前体蛋白的小鼠中降解Aβ,最有可能是C末端截短与家族性ad-Linked突变(Happfad)。此外,CATB的Aβ降解活性受其内源性抑制剂胱抑素C(CYSC)抑制。通过提高HappFad小鼠的CATB介导的Aβ降解,减少CysC表达明显降低Aβ水平。然而,由于绝大多数AD患者不携带家族性突变,我们研究了Cysc-Catb轴如何影响表达野生型Happ(Happwt)的小鼠中的Aβ水平。通过CySC缺失增强CATB活性显着降低HappWt小鼠的总Aβ和Aβ42水平,而CATB缺失增加Aβ水平。为了确定神经元衍生的CATB是否在体内降解Aβ,我们在神经元特异性烯醇酶启动子的控制下产生过表达CATb的转基因小鼠。在HappWt小鼠中增强神经元CATB活性显着降低Aβ42水平。 Happwt的处理不受增加或消融CATB活性的影响。因此,CySC-CATB轴影响源自缺乏家族性突变的Aβ42的降解。这些发现支持增强CATB活性可能降低Aβ,尤其是Aβ42,在具有或没有家族性突变的AD患者中降低Aβ。

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