نتایج جستجو برای: jnk

تعداد نتایج: 11549  

2016
Yiseul Choi Young San Ko Jinju Park Youngsun Choi Younghoon Kim Jung-Soo Pyo Bo Gun Jang Douk Ho Hwang Woo Ho Kim Byung Lan Lee

AIM To investigated the relationships between HER2, c-Jun N-terminal kinase (JNK) and protein kinase B (AKT) with respect to metastatic potential of HER2-positive gastric cancer (GC) cells. METHODS Immunohistochemistry was performed on tissue array slides containing 423 human GC specimens. Using HER2-positve GC cell lines SNU-216 and NCI-N87, HER2 expression was silenced by RNA interference, ...

Journal: :Genes & development 2004
Jin Mo Park Helen Brady Maria Grazia Ruocco Huaiyu Sun DeeAnn Williams Susan J Lee Tomohisa Kato Normand Richards Kyle Chan Frank Mercurio Michael Karin Steven A Wasserman

The molecular circuitry underlying innate immunity is constructed of multiple, evolutionarily conserved signaling modules with distinct regulatory targets. The MAP kinases and the IKK-NF-kappa B molecules play important roles in the initiation of immune effector responses. We have found that the Drosophila NF-kappa B protein Relish plays a crucial role in limiting the duration of JNK activation...

Journal: :Chemistry & biology 2014
Abdellah Messoussi Clémence Feneyrolles Aurélie Bros Arthur Deroide Bénédicte Daydé-Cazals Gwénaël Chevé Nathalie Van Hijfte Bénédicte Fauvel Khalid Bougrin Aziz Yasri

The c-Jun N-terminal kinase (JNK) family, with its three members JNK1, JNK2, and JNK3, is a subfamily of mitogen-activated protein kinases. Involved in many aspects of cellular processes, JNK has been also associated with pathological states such as neurodegenerative diseases, inflammation, and cancers. In oncology, each isoform plays a distinct role depending on the context of the targeted tis...

Journal: :The EMBO journal 1999
C P Bagowski M Stein-Gerlach A Choidas A Ullrich

In Rat-1 fibroblasts epidermal growth factor (EGF), but not platelet-derived growth factor (PDGF) stimulates the activity of the c-Jun N-terminal kinase (JNK). Moreover, PDGF induced suppression of EGF-mediated JNK activation, apparently through protein kinase C (PKC) activation. Further analysis revealed that PKD was specifically activated by PDGF but not EGF in Rat-1 cells. In SF126 glioblast...

Journal: :Circulation research 2009
Cornelia Hahn A Wayne Orr John M Sanders Krishna A Jhaveri Martin Alexander Schwartz

Atherosclerosis begins as local inflammation of artery walls at sites of disturbed flow. JNK (c-Jun NH(2)-terminal kinase) is thought to be among the major regulators of flow-dependent inflammatory gene expression in endothelial cells in atherosclerosis. We now show that JNK activation by both onset of laminar flow and long-term oscillatory flow is matrix-specific, with enhanced activation on f...

Journal: :Science 2000
F Urano X Wang A Bertolotti Y Zhang P Chung H P Harding D Ron

Malfolded proteins in the endoplasmic reticulum (ER) induce cellular stress and activate c-Jun amino-terminal kinases (JNKs or SAPKs). Mammalian homologs of yeast IRE1, which activate chaperone genes in response to ER stress, also activated JNK, and IRE1alpha-/- fibroblasts were impaired in JNK activation by ER stress. The cytoplasmic part of IRE1 bound TRAF2, an adaptor protein that couples pl...

2011
Ksenya Cohen-Katsenelson Tanya Wasserman Samer Khateb Alan J. Whitmarsh Ami Aronheim

JNK (c-Jun N-terminal kinase) is part of a MAPK (mitogen-activated protein kinase) signalling cascade. Scaffold proteins simultaneously associate with various components of the MAPK signalling pathway and play a crucial role in signal transmission and MAPK regulation. WDR62 (WD repeat domain 62) is a JNK scaffold protein. Recessive mutations within WDR62 result in severe cerebral cortical malfo...

Journal: :Cancer research 2003
Hiromasa Tsuiki Mehdi Tnani Isamu Okamoto Lawrence C Kenyon David R Emlet Marina Holgado-Madruga Irene S Lanham Christopher J Joynes Kim T Vo Albert J Wong

The c-Jun NH(2)-terminal kinases (JNKs) have a role both in promoting apoptosis and tumorigenesis. The JNKs are encoded by three separate genes (JNK1, 2, and 3), which are spliced alternatively to create 10 JNK isoforms that are either M(r) 55,000 or 46,000 in size. However, the functional significance and distinct role for each splice variant remains unclear. We have noted previously that 86% ...

Journal: :Development 2011
Hai Huang Guiping Du Hanqing Chen Xuehong Liang Changqing Li Nannan Zhu Lei Xue Jun Ma Renjie Jiao

Post-translational modification by the small ubiquitin-related modifier (SUMO) is important for a variety of cellular and developmental processes. However, the precise mechanism(s) that connects sumoylation to specific developmental signaling pathways remains relatively less clear. Here, we show that Smt3 knockdown in Drosophila wing discs causes phenotypes resembling JNK gain of function, incl...

Journal: :American journal of physiology. Gastrointestinal and liver physiology 2003
Mark J Czaja

Activation of the JNK/activator protein-1 (AP-1)-signaling pathway is a common mediator of hepatocyte death from a variety of stimuli. Although the mechanism by which JNK or AP-1 promotes death is unknown, it results when activation of this signaling pathway is unusually prolonged. Although JNK/AP-1 mediates TNF-induced cell death at or above the level of the mitochondria, the ability of JNK/AP...

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