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TNF receptor associated factor - Wikipedia TNF receptor associated factors (TRAFs) are a family of proteins primarily involved in the regulation of inflammation, antiviral responses and apoptosis [1] Currently, seven TRAF proteins have been characterized in mammals: TRAF1, TRAF2, TRAF3, TRAF4, TRAF5, TRAF6 and TRAF7
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Inflammation and cancer cell survival: TRAF2 as a key player TNF receptor-associated factors (TRAFs) are key mediators in the intricate interplay between cancer and inflammation, making them promising therapeutic targets TRAFs belong to the TRAF
TRAF Family Molecules in T cells: Multiple Receptors and Functions The TNFR superfamily of receptors, the major focus of the recent TNFR Superfamily Conference held in June 2019, employ the TRAF family of adaptor proteins in key aspects of their signaling pathways
TRAF1 from a Structural Perspective - MDPI Tumor necrosis factor receptor-associated factor (TRAF) proteins play pivotal roles in a multitude of cellular signaling pathways, encompassing immune response, cell fate determination, development, and thrombosis
TRAF molecules in cell signaling and in human diseases Compelling evidence obtained from germ-line and cell-specific TRAF-deficient mice demonstrates that each TRAF plays indispensable and non-redundant physiological roles, regulating innate and adaptive immunity, embryonic development, tissue homeostasis, stress response, and bone metabolism