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Fritsch, Jürgen ; Frankenheim, Julia ; Marischen, Lothar ; Vadasz, Timea ; Troeger, Anja ; Rose-John, Stefan ; Schmidt-Arras, Dirk ; Schneider-Brachert, Wulf

Roles for ADAM17 in TNF-R1 Mediated Cell Death and Survival in Human U937 and Jurkat Cells

Fritsch, Jürgen , Frankenheim, Julia, Marischen, Lothar, Vadasz, Timea , Troeger, Anja, Rose-John, Stefan , Schmidt-Arras, Dirk and Schneider-Brachert, Wulf (2021) Roles for ADAM17 in TNF-R1 Mediated Cell Death and Survival in Human U937 and Jurkat Cells. Cells 10 (11), pp. 1-17.

Date of publication of this fulltext: 20 Jan 2022 17:16
Article
DOI to cite this document: 10.5283/epub.51469


Abstract

Signaling via death receptor family members such as TNF-R1 mediates pleiotropic biological outcomes ranging from inflammation and proliferation to cell death. Pro-survival signaling is mediated via TNF-R1 complex I at the cellular plasma membrane. Cell death induction requires complex IIa/b or necrosome formation, which occurs in the cytoplasm. In many cell types, full apoptotic or necroptotic ...

Signaling via death receptor family members such as TNF-R1 mediates pleiotropic biological outcomes ranging from inflammation and proliferation to cell death. Pro-survival signaling is mediated via TNF-R1 complex I at the cellular plasma membrane. Cell death induction requires complex IIa/b or necrosome formation, which occurs in the cytoplasm. In many cell types, full apoptotic or necroptotic cell death induction requires the internalization of TNF-R1 and receptosome formation to properly relay the signal inside the cell. We interrogated the role of the enzyme A disintegrin and metalloprotease 17 (ADAM17)/TACE (TNF-α converting enzyme) in death receptor signaling in human hematopoietic cells, using pharmacological inhibition and genetic ablation. We show that in U937 and Jurkat cells the absence of ADAM17 does not abrogate, but rather increases TNF mediated cell death. Likewise, cell death triggered via DR3 is enhanced in U937 cells lacking ADAM17. We identified ADAM17 as the key molecule that fine-tunes death receptor signaling. A better understanding of cell fate decisions made via the receptors of the TNF-R1 superfamily may enable us, in the future, to more efficiently treat infectious and inflammatory diseases or cancer.



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Details

Item typeArticle
Journal or Publication TitleCells
Publisher:MDPI
Volume:10
Number of Issue or Book Chapter:11
Page Range:pp. 1-17
Date10 November 2021
InstitutionsMedicine > Abteilung für Pädiatrische Ophthalmologie, Strabismologie und Ophthalmogenetik
Medicine > Lehrstuhl für Medizinische Mikrobiologie und Hygiene
Identification Number
ValueType
10.3390/cells10113100DOI
KeywordsTNF-R1; ADAM17; cell death
Dewey Decimal Classification600 Technology > 610 Medical sciences Medicine
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgYes
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-514699
Item ID51469

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