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مرگ نوتروفیل با واسطه RIPK3-MLKL نیاز به فعالسازی همزمان پروتئین فعال کننده فیبروبلاست-آلفا دارد

Wang, Xiaoliang ، Gessier, Francois ، Perozzo, Remo ، Stojkov, Darko ، حسینی, عارف ، امیرشاهرخی, کیوان ، Kuchen, Stefan ، یوسفی, شیدا ، Lo¨tscher, Pius ، Simon, Hans-Uwe (1399) مرگ نوتروفیل با واسطه RIPK3-MLKL نیاز به فعالسازی همزمان پروتئین فعال کننده فیبروبلاست-آلفا دارد. Journal of Immunology ــ 505 (6). ص.ص.1663-1653. شاپا 0022-1767

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عنوان انگليسی

RIPK3–MLKL–mediated neutrophil death requires concurrent activation of fibroblast activation protein-a

خلاصه انگلیسی

Cytokine-primed neutrophils can undergo a non-apoptotic type of cell death using components of the necroptotic pathway, including receptor-interacting protein kinase-3 (RIPK3), mixed lineage kinase-like (MLKL) and nicotinamide adenine dinucleotide phosphate (NADPH) oxidase. In this report, we provide evidence for a potential role of serine proteases in CD44-mediated necroptotic death of GM-CSF-primed human neutrophils. Specifically, we observed that several inhibitors known to block the enzymatic function of FAP-α were able to block CD44-mediated ROS production and cell death, but not FAS receptor – mediated apoptosis. To understand how FAP-α is involved in this non-apoptotic death pathway, we performed immunoblotting experiments in the presence and absence of inhibitors of RIPK3, MLKL, p38 mitogen-activated protein kinase (MAPK), phosphatidylinositol 3’-kinase (PI3K) and FAP-α. The results of these experiments suggested that FAP-α is active in parallel with RIPK3, MLKL and p38 MAPK activation, but proximal to PI3K and NADPH oxidase activation. Interestingly, neutrophils isolated from the joints of patients suffering from rheumatoid arthritis (RA) underwent a GM-CSF - independent necroptosis following CD44 ligation; this effect was also blocked by both FAP-α and MLKL inhibitors. Taken together, our evidence shows that the RIPK3 – MLKL pathway activates NADPH oxidase, but requires, in addition to p38 MAPK and PI3K, a serine protease activity, whereby FAP-α is the most likely candidate. Thus, FAP-α could be a potential drug target in neutrophilic inflammatory responses to avoid exaggerated non-apoptotic neutrophil death leading to tissue damage.

نوع سند :مقاله
زبان سند : انگلیسی
نویسنده اول :Xiaoliang Wang
نویسنده :Francois Gessier
نویسنده :Remo Perozzo
نویسنده :Darko Stojkov
نویسنده :عارف حسینی
نویسنده :کیوان امیرشاهرخی
نویسنده :Stefan Kuchen
نویسنده :شیدا یوسفی
نویسنده :Pius Lo¨tscher
نویسنده مسئول :Hans-Uwe Simon
ضریب تاثیر و نمایه مجلات:IF: 5.422 Indexed in: ISI, Scopus, PubMed, Embase
کلیدواژه ها (انگلیسی):PHASE-II TRIAL; PLASMA-MEMBRANE; CELL-DEATH; INFLAMMATION; EXPRESSION; PROTEASES; APOPTOSIS; INHIBITORS; TALABOSTAT; DISCOVERY
موضوعات :QV فارماکولوژی
بخش های دانشگاهی :دانشکده داروسازی > بخش فارماکولوژی
کد شناسایی :13776
ارائه شده توسط : دکتر کیوان امیرشاهرخی
ارائه شده در تاریخ :06 دی 1399 07:36
آخرین تغییر :03 مرداد 1400 09:13

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