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- Essalmani, RachidRemove Essalmani, Rachid filter
- Prat, AnnikRemove Prat, Annik filter
Author
- Asselin, Marie-Claude2
- Chamberland, Ann2
- Guillemot, Johann2
- Seidah, Nabil G2
- Awan, Zuhier1
- Benjannet, Suzanne1
- Butkinaree, Chutikarn1
- Canuel, Maryssa1
- Day, Robert1
- Desjardins, Roxane1
- Hamelin, Josée1
- Jacob, Yves1
- Kim, Woojin1
- Ly, Kévin1
- Marcinkiewicz, Jadwiga1
- Mayer, Gaétan1
- Poirier, Steve1
- Roubtsova, Anna1
- Sachan, Vatsal1
- Sisodia, Sangram S1
- Susan-Resiga, Delia1
Keyword
- anticoagulant serine pro1
- APLP21
- cardiovascular disease1
- dyslipidemia1
- furin1
- hepatocyte1
- lipoprotein metabolism1
- liver1
- low-density lipoprotein (LDL)1
- low-density lipoprotein receptor (LDLR) degradation1
- proprotein convertase1
- proprotein convertase subtilisin/kexin type 9 (PCSK9)1
- protein C1
- serine protease1
- Sortilin (SORT1)1
- thrombin1
- thrombin activation1
- vitamin K1
Protein Synthesis and Degradation
2 Results
- Protein Synthesis and DegradationOpen Access
Thrombin activation of protein C requires prior processing by a liver proprotein convertase
Journal of Biological ChemistryVol. 292Issue 25p10564–10573Published online: June 23, 2017- Rachid Essalmani
- Delia Susan-Resiga
- Johann Guillemot
- Woojin Kim
- Vatsal Sachan
- Zuhier Awan
- and others
Cited in Scopus: 7Protein C, a secretory vitamin K-dependent anticoagulant serine protease, inactivates factors Va/VIIIa. It is exclusively synthesized in liver hepatocytes as an inactive zymogen (proprotein C). In humans, thrombin cleavage of the propeptide at PR221↓ results in activated protein C (APC; residues 222–461). However, the propeptide is also cleaved by a furin-like proprotein convertase(s) (PCs) at KKRSHLKR199↓ (underlined basic residues critical for the recognition by PCs), but the order of cleavage is unknown. - Protein Synthesis and DegradationOpen Access
Amyloid Precursor-like Protein 2 and Sortilin Do Not Regulate the PCSK9 Convertase-mediated Low Density Lipoprotein Receptor Degradation but Interact with Each Other
Journal of Biological ChemistryVol. 290Issue 30p18609–18620Published online: June 17, 2015- Chutikarn Butkinaree
- Maryssa Canuel
- Rachid Essalmani
- Steve Poirier
- Suzanne Benjannet
- Marie-Claude Asselin
- and others
Cited in Scopus: 38Background It was reported that amyloid precursor-like protein 2 (APLP2) increases PCSK9-mediated low-density lipoprotein receptor (LDLR) degradation, and sortilin facilitates PCSK9 secretion. Results APLP2 or sortilin deficiency/overexpression in cells/mice did not affect LDLR degradation by PCSK9. However, APLP2 binds sortilin, and PCSK9 enhances their degradation. Conclusion APLP2/sortilin are not required for PCSK9 activity on LDLR, but their interaction may modulate APLP2 functions. Significance APLP2 and sortilin do not affect LDLR levels.