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F-Spondin Interaction with the Apolipoprotein E Receptor ApoEr2 Affects Processing of Amyloid Precursor Protein

机译:F-Spondin与载脂蛋白E受体ApoEr2的相互作用影响淀粉样前体蛋白的加工。

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摘要

A recent study showed that F-spondin, a protein associated with the extracellular matrix, interacted with amyloid precursor protein (APP) and inhibited β-secretase cleavage. F-spondin contains a thrombospondin domain that we hypothesized could interact with the family of receptors for apolipoprotein E (apoE). Through coimmunoprecipitation experiments, we demonstrated that F-spondin interacts with an apoE receptor (apoE receptor 2 [ApoEr2]) through the thrombospondin domain of F-spondin and the ligand binding domain of ApoEr2. Full-length F-spondin increased coimmunoprecipitation of ApoEr2 and APP in transfected cells and primary neurons and increased surface expression of APP and ApoEr2. Full-length F-spondin, but none of the individual F-spondin domains, increased cleavage of APP and ApoEr2, resulting in more secreted forms of APP and ApoEr2 and more C-terminal fragments (CTF) of these proteins. In addition, full-length F-spondin, but not the individual domains, decreased production of the β-CTF of APP and Aβ in transfected cells and primary neurons. The reduction in APP β-CTF was blocked by receptor-associated protein (RAP), an inhibitor of lipoprotein receptors, implicating ApoEr2 in the altered proteolysis of APP. ApoEr2 coprecipitated with APP α- and β-CTF, and F-spondin reduced the levels of APP intracellular domain signaling, suggesting that there are also intracellular interactions between APP and ApoEr2, perhaps involving adaptor proteins. These studies suggest that the extracellular matrix molecule F-spondin can cluster APP and ApoEr2 together on the cell surface and affect the processing of each, resulting in decreased production of Aβ.
机译:最近的一项研究表明,与细胞外基质相关的蛋白F-spondin与淀粉样蛋白前体蛋白(APP)相互作用并抑制β-分泌酶的裂解。 F-spondin包含一个我们认为可能与载脂蛋白E(apoE)受体家族相互作用的血小板反应蛋白结构域。通过共免疫沉淀实验,我们证明F-spondin通过F-spondin的血小板反应蛋白结构域和ApoEr2的配体结合结构域与apoE受体(apoE受体2 [ApoEr2])相互作用。全长F-spondin增强了ApoEr2和APP在转染细胞和原代神经元中的免疫共沉淀作用,并提高了APP和ApoEr2的表面表达。全长F-spondin,但没有一个单独的F-spondin结构域,增加了APP和ApoEr2的切割,导致APP和ApoEr2的分泌形式更加丰富,并且这些蛋白质的C末端片段(CTF)更多。此外,全长F-spondin而非单个域降低了转染细胞和原代神经元中APP和Aβ的β-CTF生成。受体相关蛋白(RAP)阻止了APPβ-CTF的减少,RAP是脂蛋白受体的抑制剂,与ApoEr2参与了APP的蛋白水解改变有关。 ApoEr2与APPα-和β-CTF共同沉淀,而F-spondin降低了APP细胞内结构域信号传导的水平,这表明APP与ApoEr2之间也存在细胞内相互作用,可能涉及衔接蛋白。这些研究表明,细胞外基质分子F-spondin可以将APP和ApoEr2聚集在细胞表面,并影响它们的加工,从而导致Aβ的产生减少。

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