Mammalian Subtilisin/Kexin Isozyme SKI-1: A Widely Expressed Proprotein Convertase with a Unique Cleavage Specificity and Cellular Localization

Using reverse transcriptase-PCR and degenerate oligonucleotides derived from the active-site residues of subtilisin/kexin-like serine proteinases, we have identified a highly conserved and phylogenetically ancestral human, rat, and mouse type I membrane-bound proteinase called subtilisin/kexin-isozy...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 1999-02, Vol.96 (4), p.1321-1326
Hauptverfasser: Seidah, Nabil G., Mowla, Seyed J., Hamelin, Josee, Mamarbachi, Aida M., Benjannet, Suzanne, Toure, Barry B., Basak, Ajoy, Munzer, Jon Scott, Marcinkiewicz, Jadwiga, Zhong, Mei, Barale, Jean-Christophe, Lazure, Claude, Murphy, Richard A., Chretien, Michel, Marcinkiewicz, Mieczyslaw
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Sprache:eng
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Zusammenfassung:Using reverse transcriptase-PCR and degenerate oligonucleotides derived from the active-site residues of subtilisin/kexin-like serine proteinases, we have identified a highly conserved and phylogenetically ancestral human, rat, and mouse type I membrane-bound proteinase called subtilisin/kexin-isozyme-1 (SKI-1). Computer databank searches reveal that human SKI-1 was cloned previously but with no identified function. In situ hybridization demonstrates that SKI-1 mRNA is present in most tissues and cells. Cleavage specificity studies show that SKI-1 generates a 28-kDa product from the 32-kDa brain-derived neurotrophic factor precursor, cleaving at an RGLT$\downarrow $SL bond. In the endoplasmic reticulum of either LoVo or HK293 cells, proSKI-1 is processed into two membrane-bound forms of SKI-1 (120 and 106 kDa) differing by the nature of their N-glycosylation. Late along the secretory pathway some of the membrane-bound enzyme is shed into the medium as a 98-kDa form. Immunocytochemical analysis of stably transfected HK293 cells shows that SKI-1 is present in the Golgi apparatus and within small punctate structures reminiscent of endosomes. In vitro studies suggest that SKI-1 is a Ca2+-dependent serine proteinase exhibiting a wide pH optimum for cleavage of pro-brain-derived neurotrophic factor.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.96.4.1321