Suchbegriffe: XIAP, . Treffer: 19
Lohberger, B; Glänzer, D; Kaltenegger, H; Eck, N; Leithner, A; Bauer, R; Kretschmer, N; Steinecker-Frohnwieser, B
Shikonin derivatives cause apoptosis and cell cycle arrest in human chondrosarcoma cells via death receptors and MAPK regulation.
BMC Cancer. 2022; 22(1):758
Doi: 10.1186/s12885-022-09857-x
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Yang, L; Booth, C; Speckmann, C; Seidel, MG; Worth, AJJ; Kindle, G; Lankester, AC; Grimbacher, B; Gennery, AR; Seppanen, MRJ; Morris, EC; Burns, SO, , ESID, Clinical, and, Registry, Working, Parties
Phenotype, genotype, treatment, and survival outcomes in patients with X-linked inhibitor of apoptosis deficiency.
J Allergy Clin Immunol. 2022; 150(2):456-466
Doi: 10.1016/j.jaci.2021.10.037
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Jost, PJ; Vucic, D
Regulation of Cell Death and Immunity by XIAP.
Cold Spring Harb Perspect Biol. 2020; 12(8):
Doi: 10.1101/cshperspect.a036426
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Knop, J; Spilgies, LM; Rufli, S; Reinhart, R; Vasilikos, L; Yabal, M; Owsley, E; Jost, PJ; Marsh, RA; Wajant, H; Robinson, MD; Kaufmann, T; Wong, WW
TNFR2 induced priming of the inflammasome leads to a RIPK1-dependent cell death in the absence of XIAP.
Cell Death Dis. 2019; 10(10):700-700
Doi: 10.1038/s41419-019-1938-x
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Neuwirth, M; Kalt, L; Pipam, W; Rab, M
[Long-term experience with Collagenase Clostridium Histolyticum (CCH, Xiapex®) for the treatment of Dupuytren's contracture: lessons learned].
HANDCHIR MIKROCHIR P. 2019; 51(1): 38-44.
Doi: 10.1055/a-0832-2254
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Lawlor, KE; Feltham, R; Yabal, M; Conos, SA; Chen, KW; Ziehe, S; Graß, C; Zhan, Y; Nguyen, TA; Hall, C; Vince, AJ; Chatfield, SM; D'Silva, DB; Pang, KC; Schroder, K; Silke, J; Vaux, DL; Jost, PJ; Vince, JE
XIAP Loss Triggers RIPK3- and Caspase-8-Driven IL-1β Activation and Cell Death as a Consequence of TLR-MyD88-Induced cIAP1-TRAF2 Degradation.
Cell Rep. 2017; 20(3):668-682
Doi: 10.1016/j.celrep.2017.06.073
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Račkauskas, R; Zhou, D; Ūselis, S; Strupas, K; Herr, I; Schemmer, P
Sulforaphane sensitizes human cholangiocarcinoma to cisplatin via the downregulation of anti-apoptotic proteins.
Oncol Rep. 2017; 37(6):3660-3666
Doi: 10.3892/or.2017.5622
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Engel, K; Rudelius, M; Slawska, J; Jacobs, L; Ahangarian Abhari, B; Altmann, B; Kurutz, J; Rathakrishnan, A; Fernández-Sáiz, V; Brunner, A; Targosz, BS; Loewecke, F; Gloeckner, CJ; Ueffing, M; Fulda, S; Pfreundschuh, M; Trümper, L; Klapper, W; Keller, U; Jost, PJ; Rosenwald, A; Peschel, C; Bassermann, F
USP9X stabilizes XIAP to regulate mitotic cell death and chemoresistance in aggressive B-cell lymphoma.
EMBO Mol Med. 2016; 8(8):851-862
Doi: 10.15252/emmm.201506047
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Wicki, S; Gurzeler, U; Wei-Lynn Wong, W; Jost, PJ; Bachmann, D; Kaufmann, T
Loss of XIAP facilitates switch to TNFα-induced necroptosis in mouse neutrophils.
Cell Death Dis. 2016; 7(10):e2422-e2422
Doi: 10.1038/cddis.2016.311
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Yabal, M; Jost, PJ
XIAP as a regulator of inflammatory cell death: the TNF and RIP3 angle.
Mol Cell Oncol. 2015; 2(1):e964622-e964622
Doi: 10.4161/23723548.2014.964622
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Binter, A; Neuwirth, M; Rab, M
Treatment of Dupuytren's disease with collagenase - a 1-year follow-up of 37 patients].
Handchir Mikrochir Plast Chir. 2014; 46(6): 355-360.
Doi: 10.1055/s-0034-1395604
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Wong, WW; Vince, JE; Lalaoui, N; Lawlor, KE; Chau, D; Bankovacki, A; Anderton, H; Metcalf, D; O'Reilly, L; Jost, PJ; Murphy, JM; Alexander, WS; Strasser, A; Vaux, DL; Silke, J
cIAPs and XIAP regulate myelopoiesis through cytokine production in an RIPK1- and RIPK3-dependent manner.
Blood. 2014; 123(16):2562-2572
Doi: 10.1182/blood-2013-06-510743
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Yabal, M; Müller, N; Adler, H; Knies, N; Groß, CJ; Damgaard, RB; Kanegane, H; Ringelhan, M; Kaufmann, T; Heikenwälder, M; Strasser, A; Groß, O; Ruland, J; Peschel, C; Gyrd-Hansen, M; Jost, PJ
XIAP restricts TNF- and RIP3-dependent cell death and inflammasome activation.
Cell Rep. 2014; 7(6):1796-1808
Doi: 10.1016/j.celrep.2014.05.008
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Damgaard, RB; Fiil, BK; Speckmann, C; Yabal, M; zur Stadt, U; Bekker-Jensen, S; Jost, PJ; Ehl, S; Mailand, N; Gyrd-Hansen, M
Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling.
EMBO Mol Med. 2013; 5(8):1278-1295
Doi: 10.1002/emmm.201303090
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Damgaard, RB; Nachbur, U; Yabal, M; Wong, WW; Fiil, BK; Kastirr, M; Rieser, E; Rickard, JA; Bankovacki, A; Peschel, C; Ruland, J; Bekker-Jensen, S; Mailand, N; Kaufmann, T; Strasser, A; Walczak, H; Silke, J; Jost, PJ; Gyrd-Hansen, M
The ubiquitin ligase XIAP recruits LUBAC for NOD2 signaling in inflammation and innate immunity.
Mol Cell. 2012; 46(6):746-758
Doi: 10.1016/j.molcel.2012.04.014
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Kaufmann, T; Strasser, A; Jost, PJ
Fas death receptor signalling: roles of Bid and XIAP.
Cell Death Differ. 2012; 19(1):42-50
Doi: 10.1038/cdd.2011.121
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Schmidt, K; Martens-Lobenhoffer, J; Meinitzer, A; Graier, WF; Torres, CM; Venema, RC; Mayer, B
Activation of endothelial nitric oxide synthase by the pro-apoptotic drug embelin: Striking discrepancy between nitric oxide-mediated cyclic GMP accumulation and L-citrulline formation.
Nitric Oxide. 2010; 22(4): 281-289.
Doi: 10.1016/j.niox.2010.02.001
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Jost, PJ; Grabow, S; Gray, D; McKenzie, MD; Nachbur, U; Huang, DC; Bouillet, P; Thomas, HE; Borner, C; Silke, J; Strasser, A; Kaufmann, T
XIAP discriminates between type I and type II FAS-induced apoptosis.
Nature. 2009; 460(7258):1035-1039
Doi: 10.1038/nature08229
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Resch, U; Schichl, YM; Sattler, S; de, Martin, R
XIAP regulates intracellular ROS by enhancing antioxidant gene expression.
Biochem Biophys Res Commun. 2008; 375(1): 156-61.
Doi: 10.1016/j.bbrc.2008.07.142
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