Thinakaran G, Teplow D B, Siman R, Greenberg B, Sisodia S S
Department of Pathology, The John Hopkins University School of Medicine, Baltimore, Maryland 21205-2196, USA.
J Biol Chem. 1996 Apr 19;271(16):9390-7. doi: 10.1074/jbc.271.16.9390.
The 4-kDa beta-amyloid peptide (Abeta), a principal component of parenchymal amyloid deposits in Alzheimer's disease, is derived from amyloid precursor proteins (APP). To identify potential intracellular compartments involved in Abeta production, we expressed human APP-695 (APPwt) and APP-695 harboring the Swedish double mutation (APPswe) associated with familial early-onset Alzheimer's disease, in mouse N2a cells. We demonstrate that cells expressing APPswe secrete high levels of Abeta peptides and beta-secretase-generated soluble APP derivatives (APP s beta) relative to cells expressing APPwt. In addition, we observed a concomitant diminution in the levels of alpha-secretase-generated soluble APP derivatives (APP s alpha). Our interpretation of these findings is that beta-secretase cleavage occurs in an intracellular compartment and disables those substrates which would normally be cleaved by alpha-secretase. As anticipated, the levels of APPswe are diminished relative to the steady-state levels of surface-bound APPwt; moreover, surface-bound APPswe and APPwt molecules are released from the plasma membrane after cleavage by alpha-secretase, but not by beta-secretase. Finally, by examining the rate of appearance of specific APP metabolites generated by beta-secretase, we now unequivocally demonstrate that beta-secretase cleavage of APPswe occurs within the Golgi apparatus, as early as the medial compartment.
4 kDa的β-淀粉样肽(Aβ)是阿尔茨海默病实质淀粉样沉积物的主要成分,它由淀粉样前体蛋白(APP)衍生而来。为了确定参与Aβ产生的潜在细胞内区室,我们在小鼠N2a细胞中表达了人APP-695(APPwt)和携带与家族性早发性阿尔茨海默病相关的瑞典双突变(APPswe)的APP-695。我们证明,相对于表达APPwt的细胞,表达APPswe的细胞分泌高水平的Aβ肽和β-分泌酶产生的可溶性APP衍生物(APP sβ)。此外,我们观察到α-分泌酶产生的可溶性APP衍生物(APP sα)水平同时降低。我们对这些发现的解释是,β-分泌酶切割发生在细胞内区室,并使那些通常会被α-分泌酶切割的底物失活。正如预期的那样,APPswe的水平相对于表面结合的APPwt的稳态水平降低;此外,表面结合的APPswe和APPwt分子在被α-分泌酶切割后从质膜释放,但不会被β-分泌酶切割。最后,通过检查β-分泌酶产生的特定APP代谢产物的出现速率,我们现在明确证明APPswe的β-分泌酶切割最早在内侧区室的高尔基体中发生。