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Receptor-associated transcription factors

Cytokines all function using a group of transmembrane receptors embedded in the plasma membranes of target cells. The receptors have no tyrosine kinase activity but associate with and activate kinases known as Janus kinases (JAKs). These kinases phosphory-late tyrosine side chains in their receptors, and the phosphorylated receptors activate transcription factors of the STAT (signal transducer-activators of transcription) group.186-195 The specificity of cytokine action results from a combination of receptor recognition and recognition of the various STAT molecules by different JAKs.111 Cytokines have a variety of structures. Many are helix bundles or have (3 sheet structures (Fig. 30-6). [Pg.1847]

Peroxisome Proliferator-Activated Receptors. Figure 1 Common structural and functional features of nuclear receptor transcription factors. Consistent with other members of the nuclear receptor superfamily, the PPARs have a modular domain structure consisting of domains A/B, C, D, and E. Each domain is associated with specific functions. [Pg.940]

Gene regulation by tocopherols has mainly been associated with PKC because of its deactivation by a-tocopherol and its contribution in the regulation of a number of transcription factors (NF-kappaB, API). A direct participation of the pregnane X receptor (PXR)/ retinoid X receptor (RXR) has been also shown. The antioxidant-responsive element (ARE) and the TGF-beta-responsive element appear in some cases to be implicated as well. The obser ved immunmodulatory function of a-tocopherol may also be attributed to the fact that the release of the proinflammatory cytokine interlukin-l 3 can be inhibited by a-tocopherol via... [Pg.1296]

FIGURE 4.3 Growth hormone receptor. Monomeric GH associates with two receptor monomers. Activated JAK2 kinases /ram-phosphorylatc JAK2 and GH receptors, and STAT transcription factors are phosphorylated by JAK2. [Pg.137]


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