Guénette Suzanne Y, Chang Yang, Hyman Bradley T, Tanzi Rudolph E, Rebeck G William
Genetics and Aging Research Unit, Center for Aging Genetics and Neurodegeneration, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Charlestown, Massachusetts 02129, USA.
J Neurochem. 2002 Aug;82(4):755-62. doi: 10.1046/j.1471-4159.2002.01009.x.
The FE65 adaptor protein family was identified in two-hybrid screens as proteins that bind the cytoplasmic domain of the amyloid precursor protein (APP). Studies have shown that FE65 binding to APP modulates APP processing. Increased levels of alpha-secretase derived secreted APP (APPsalpha) and beta-amyloid (Abeta) were recovered from conditioned media upon FE65L1 or FE65 overexpression. These effects were associated with an increase in the ratio of mature/immature APP and increased cell-surface APP. FE65 has also been reported to bind low-density lipoprotein receptor-related protein (LRP). Here we show that FE65L1 overexpression results in decreased LRP steady state levels, LRPs, and LRP endocytic receptor function. These changes in LRP protein levels are not due to decreased transcription of LRP. Furthermore, pulse/chase experiments demonstrate that changes in LRP protein only occurred 12-18 h after translation. We conclude that the decreases in LRP levels likely reflect routing of LRP away from the cell surface into a degradative pathway. Previous studies suggested that LRP plays an important role for Abeta production of Kunitz protease inhibitor forms of APP in the endocytic pathway. These data show that FE65L1 can differentially affect the metabolic fate of APP and LRP. In addition, these data suggest that the LRP decrease observed in FE65L1 overexpressing cells may in part contribute to altered APP processing.
FE65衔接蛋白家族是在双杂交筛选中作为与淀粉样前体蛋白(APP)胞质结构域结合的蛋白被鉴定出来的。研究表明,FE65与APP的结合可调节APP的加工过程。在过表达FE65L1或FE65后,从条件培养基中回收的α-分泌酶衍生的分泌型APP(APPsα)和β-淀粉样蛋白(Aβ)水平升高。这些效应与成熟/未成熟APP比例的增加以及细胞表面APP的增加有关。据报道,FE65还可与低密度脂蛋白受体相关蛋白(LRP)结合。在此我们表明,FE65L1的过表达导致LRP稳态水平、LRP数量及其内吞受体功能降低。LRP蛋白水平的这些变化并非由于LRP转录减少所致。此外,脉冲/追踪实验表明,LRP蛋白的变化仅在翻译后12 - 18小时出现。我们得出结论,LRP水平的降低可能反映了LRP从细胞表面转向降解途径的转运过程。先前的研究表明,LRP在APP的内吞途径中对库尼茨蛋白酶抑制剂形式的APP产生Aβ起重要作用。这些数据表明,FE65L1可不同程度地影响APP和LRP的代谢命运。此外,这些数据表明,在过表达FE65L1的细胞中观察到的LRP减少可能部分导致了APP加工的改变。