首页> 美国卫生研究院文献>Molecular and Cellular Biology >Mutation of the 3-Phosphoinositide-Dependent Protein Kinase 1 (PDK1) Substrate-Docking Site in the Developing Brain Causes Microcephaly with Abnormal Brain Morphogenesis Independently of Akt Leading to Impaired Cognition and Disruptive Behaviors
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Mutation of the 3-Phosphoinositide-Dependent Protein Kinase 1 (PDK1) Substrate-Docking Site in the Developing Brain Causes Microcephaly with Abnormal Brain Morphogenesis Independently of Akt Leading to Impaired Cognition and Disruptive Behaviors

机译:在发展中国家的大脑中的3-磷酸肌醇依赖性蛋白激酶1(PDK1)底物对接位点的突变导致小头畸形异常的大脑形态发生独立于Akt导致认知和破坏行为受损。

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摘要

The phosphoinositide (PI) 3-kinase/Akt signaling pathway plays essential roles during neuronal development. 3-Phosphoinositide-dependent protein kinase 1 (PDK1) coordinates the PI 3-kinase signals by activating 23 kinases of the AGC family, including Akt. Phosphorylation of a conserved docking site in the substrate is a requisite for PDK1 to recognize, phosphorylate, and activate most of these kinases, with the exception of Akt. We exploited this differential mechanism of regulation by generating neuron-specific conditional knock-in mice expressing a mutant form of PDK1, L155E, in which the substrate-docking site binding motif, termed the PIF pocket, was disrupted. As a consequence, activation of all the PDK1 substrates tested except Akt was abolished. The mice exhibited microcephaly, altered cortical layering, and reduced circuitry, leading to cognitive deficits and exacerbated disruptive behavior combined with diminished motivation. The abnormal patterning of the adult brain arises from the reduced ability of the embryonic neurons to polarize and extend their axons, highlighting the essential roles that the PDK1 signaling beyond Akt plays in mediating the neuronal responses that regulate brain development.
机译:磷酸肌醇(PI)3-激酶/ Akt信号转导通路在神经元发育过程中发挥重要作用。 3-磷酸​​肌醇依赖性蛋白激酶1(PDK1)通过激活AGC家族的23种激酶(包括Akt)来协调PI 3-激酶信号。底物中保守的对接位点的磷酸化是PDK1识别,磷酸化和激活大多数这些激酶(Akt除外)的必要条件。我们通过产生表达PDK1,L155E突变体形式的神经元特异性条件性敲入小鼠来利用这种不同的调控机制,其中PDK口袋的底物对接位点结合基序被破坏。结果,取消了除Akt以外所有测试的PDK1底物的活化。小鼠表现出小头畸形,改变的皮质层和减少的电路,导致认知缺陷和加剧的破坏性行为与动力减弱。成年大脑的异常模式是由于胚胎神经元极化和扩展其轴突的能力降低而引起的,这突显了ADK以外的PDK1信号传导在调节调节大脑发育的神经元反应中所起的重要作用。

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