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首页> 外文期刊>Endocrinology >A Rapid Cytoplasmic Mechanism for PI3 Kinase Regulation by the Nuclear Thyroid Hormone Receptor, TR beta, and Genetic Evidence for Its Role in the Maturation of Mouse Hippocampal Synapses In Vivo
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A Rapid Cytoplasmic Mechanism for PI3 Kinase Regulation by the Nuclear Thyroid Hormone Receptor, TR beta, and Genetic Evidence for Its Role in the Maturation of Mouse Hippocampal Synapses In Vivo

机译:由核甲状腺激素受体,TR beta,PI3激酶调控的快速细胞质机制,及其在小鼠海马突触成熟中作用的遗传证据。

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摘要

Several rapid physiological effects of thyroid hormone on mammalian cells in vitro have been shown to be mediated by the phosphatidylinositol 3-kinase (PI3K), but the molecular mechanism of PI3K regulation by nuclear zinc finger receptor proteins for thyroid hormone and its relevance to brain development in vivo have not been elucidated. Here we show that, in the absence of hormone, the thyroid hormone receptor TR beta forms a cytoplasmic complex with the p85 subunit of PI3K and the Src family tyrosine kinase, Lyn, which depends on two canonical phosphotyrosine motifs in the second zinc finger of TR beta that are not conserved in TR alpha. When hormone is added, TR beta dissociates and moves to the nucleus, and phosphatidylinositol (3, 4, 5)-trisphosphate production goes up rapidly. Mutating either tyrosine to a phenylalanine prevents rapid signaling through PI3K but does not prevent the hormone-dependent transcription of genes with a thyroid hormone response element. When the rapid signaling mechanism was blocked chronically throughout development in mice by a targeted point mutation in both alleles of Thrb, circulating hormone levels, TR beta expression, and direct gene regulation by TR beta in the pituitary and liver were all unaffected. However, the mutation significantly impaired maturation and plasticity of the Schaffer collateral synapses on CA1 pyramidal neurons in the postnatal hippocampus. Thus, phosphotyrosine-dependent association of TR beta with PI3K provides a potential mechanism for integrating regulation of development and metabolism by thyroid hormone and receptor tyrosine kinases.
机译:磷脂酰肌醇3-激酶(PI3K)介导了甲状腺激素在体外对哺乳动物细胞的几种快速生理作用,但是核锌指受体蛋白调节甲状腺激素对PI3K的分子机制及其与脑发育的关系体内尚未阐明。在这里,我们显示,在没有激素的情况下,甲状腺激素受体TRβ与PI3K的p85亚基和Src家族酪氨酸激酶Lyn形成胞质复合物,这取决于TR第二个锌指中的两个规范性磷酸酪氨酸基序beta在TR alpha中不保守。添加激素后,TRβ分解并移至细胞核,磷脂酰肌醇(3,4,5)-三磷酸的产量迅速增加。将任一酪氨酸突变为苯丙氨酸可阻止通过PI3K的快速信号传导,但不能阻止具有甲状腺激素反应元件的基因的激素依赖性转录。当快速信号传导机制被Thrb两个等位基因中的靶点突变慢性阻断了小鼠的整个发育过程时,垂体和肝脏中循环激素水平,TRβ表达以及TRβ的直接基因调控均不受影响。但是,该突变显着损害了产后海马CA1锥体神经元上Schaffer侧突触的成熟和可塑性。因此,TRβ与PI3K的磷酸酪氨酸依赖性结合为整合甲状腺激素和受体酪氨酸激酶对发育和代谢的调节提供了潜在的机制。

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