Evidence That Tumor Necrosis Factor α Converting Enzyme Is Involved in Regulated α-Secretase Cleavage of the Alzheimer Amyloid Protein Precursor

The amyloid protein, Aβ, which accumulates in the brains of Alzheimer patients, is derived by proteolysis of the amyloid protein precursor (APP). APP can undergo endoproteolytic processing at three sites, one at the amino terminus of the Aβ domain (β-cleavage), one within the Aβ domain (α-cleavage),...

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Veröffentlicht in:The Journal of biological chemistry 1998-10, Vol.273 (43), p.27765-27767
Hauptverfasser: Buxbaum, Joseph D., Liu, Kang-Nian, Luo, Yuxia, Slack, Jennifer L., Stocking, Kim L., Peschon, Jacques J., Johnson, Richard S., Castner, Beverly J., Cerretti, Douglas Pat, Black, Roy A.
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Sprache:eng
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Zusammenfassung:The amyloid protein, Aβ, which accumulates in the brains of Alzheimer patients, is derived by proteolysis of the amyloid protein precursor (APP). APP can undergo endoproteolytic processing at three sites, one at the amino terminus of the Aβ domain (β-cleavage), one within the Aβ domain (α-cleavage), and one at the carboxyl terminus of the Aβ domain (γ-cleavage). The enzymes responsible for these activities have not been unambiguously identified. By the use of gene disruption (knockout), we now demonstrate that TACE (tumor necrosis factor α converting enzyme), a member of the ADAM family (adisintegrinand metalloprotease-family) of proteases, plays a central role in regulated α-cleavage of APP. Our data suggest that TACE may be the α-secretase responsible for the majority of regulated α-cleavage in cultured cells. Furthermore, we show that inhibiting this enzyme affects both APP secretion and Aβ formation in cultured cells.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.273.43.27765