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A TAG1-APP signalling pathway through Fe65 negatively modulates neurogenesis

机译:通过Fe65的TAG1-APP信号通路负调控神经发生

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The release of amyloid precursor protein (APP) intracellular domain (AICD) may be triggered by extracellular cues through gamma-secretase-dependent cleavage. AICD binds to Fe65, which may have a role in AICD-dependent signalling; however, the functional ligand has not been characterized. In this study, we have identified TAG1 as a functional ligand of APP. We found that, through an extracellular interaction with APP, TAG1 increased AICD release and triggered Fe65-dependent activity in gamma-secretase-dependent manner. TAG1, APP and Fe65 colocalized in the neural stem cell niche of the fetal ventricular zone. Neural precursor cells from TAG1(-/-), APP(-/-) and TAG1(-/-); APP(-/-) mice had aberrantly enhanced neurogenesis, which was significantly reversed in TAG1(-/-) mice by TAG1 or AICD but not by AICD mutated at the Fe65 binding site. Notably, TAG1 reduced normal neurogenesis in Fe65(+/+) mice. Abnormally enhanced neurogenesis also occurred in Fe65(-/-) mice but could not be reversed by TAG1. These results describe a TAG1-APP signalling pathway that negatively modulates neurogenesis through Fe65.
机译:淀粉样前体蛋白(APP)细胞内结构域(AICD)的释放可能是通过γ分泌酶依赖性切割引起的细胞外信号触发的。 AICD与Fe65结合,Fe65可能在AICD依赖性信号传导中起作用。然而,功能性配体尚未被表征。在这项研究中,我们已经将TAG1识别为APP的功能性配体。我们发现,通过与APP的细胞外相互作用,TAG1增加了AICD的释放并以γ-分泌酶依赖性方式触发了Fe65依赖性活性。 TAG1,APP和Fe65共同定位在胎儿心室区的神经干细胞生态位中。来自TAG1(-/-),APP(-/-)和TAG1(-/-)的神经前体细胞; APP(-/-)小鼠的神经发生异常增强,在TAG1(-/-)小鼠中被TAG1或AICD显着逆转,但在Fe65结合位点突变的AICD却没有。值得注意的是,TAG1减少了Fe65(+ / +)小鼠的正常神经发生。 Fe65(-/-)小鼠中也发生异常增强的神经发生,但不能被TAG1逆转。这些结果描述了通过Fe65负调控神经发生的TAG1-APP信号通路。

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