By E.J. McShane (Eds.)
Hormones and Signaling specializes in the mechanisms of gene law on the mobile point. It additionally describes the activities of hormones in modulating gene rules and animal improvement. Key beneficial properties* Glococorticoid and mineralcorticoid signaling* Orphan nuclear receptors* Nuclear receptor coactivators* Cytokines and STAT signaling* Coordination of cAMP signaling occasions via PKA anchoring* G protein-coupled extracellular Ca2+ (Ca2+0)-sensing receptor (CaR)* Pancreatic islet improvement* Genetic research of androgen receptors in improvement and illness* Antioprogestin regulable gene change for induction of gene expression in vivo* Steroid receptor knockout version
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Hormones and Signaling makes a speciality of the mechanisms of gene legislation on the mobile point. It additionally describes the activities of hormones in modulating gene legislation and animal improvement. Key positive aspects* Glococorticoid and mineralcorticoid signaling* Orphan nuclear receptors* Nuclear receptor coactivators* Cytokines and STAT signaling* Coordination of cAMP signaling occasions via PKA anchoring* G protein-coupled extracellular Ca2+ (Ca2+0)-sensing receptor (CaR)* Pancreatic islet improvement* Genetic research of androgen receptors in improvement and sickness* Antioprogestin regulable gene change for induction of gene expression in vivo* Steroid receptor knockout version
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1993). In vitro, submicromolar concentrations of oleoyl-CoA displace triiodothyronine (T3) bound to T3R. Although no studies were performed to determine if these agents altered T3R activity, acyl-CoAs might play a physiologic role in modulating thyroid-hormone-induced lipogenesis by antagonizing T3 binding to its receptor. , 1998). 6 ȐM ): other long-chain acyl-CoAs also bound to HNF-4Ͱ with affinities that were not significantly affected by the chain length or by the degree of side chain saturation.