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Interactions controlling the assembly of nuclear-receptor heterodimers and co-activators.

机译:控制核受体异二聚体和共激活剂装配的相互作用。

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Retinoic-acid receptor-alpha (RAR-alpha) and peroxisome proliferator-activated receptor-gamma (PPAR-gamma) are members of the nuclear-receptor superfamily that bind to DNA as heterodimers with retinoid-X receptors (RXRs). PPAR-RXR heterodimers can be activated by PPAR or RXR ligands, whereas RAR-RXR heterodimers are selectively activated by RAR ligands only, because of allosteric inhibition of the binding of ligands to RXR by RAR. However, RXR ligands can potentiate the transcriptional effects of RAR ligands in cells. Transcriptional activation by nuclear receptors requires a carboxy-terminal helical region, termed activation function-2 (AF-2), that forms part of the ligand-binding pocket and undergoes a conformational change required for the recruitment of co-activator proteins, including NCoA-1/SRC-1. Here we show that allosteric inhibition of RXR results from a rotation of the RXR AF-2 helix that places it in contact with the RAR coactivator-binding site. Recruitment of an LXXLL motif of SRC-1 to RAR in response to ligand displaces the RXR AF-2 domain, allowing RXR ligands to bind and promote the binding of a second LXXLL motif from the same SRC-1 molecule. These results may partly explain the different responses of nuclear-receptor heterodimers to RXR-specific ligands.
机译:维甲酸受体α(RAR-α)和过氧化物酶体增殖物激活受体-γ(PPAR-γ)是核受体超家族的成员,它们与类视黄醇-X受体(RXR)的异二聚体结合到DNA上。 PPAR-RXR异二聚体可以被PPAR或RXR配体激活,而RAR-RXR异二聚体只能被RAR配体选择性激活,因为RAR抑制了配体与RXR的结合变构。但是,RXR配体可以增强RAR配体在细胞中的转录作用。核受体的转录激活需要一个称为激活功能2(AF-2)的羧基末端螺旋区域,该区域形成配体结合口袋的一部分,并经历招募共激活蛋白(包括NCoA)所需的构象变化-1 / SRC-1。在这里,我们显示了RXR的变构抑制作用是由于RXR AF-2螺旋的旋转(使其与RAR共激活因子结合位点接触)引起的。响应配体而向RAR招募SRC-1的LXXLL基序可以取代RXR AF-2结构域,从而使RXR配体结合并促进来自同一SRC-1分子的第二个LXXLL基序的结合。这些结果可能部分解释了核受体异二聚体对RXR特异性配体的不同反应。

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