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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >PKD1 Promotes Functional Synapse Formation Coordinated with N-Cadherin in Hippocampus
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PKD1 Promotes Functional Synapse Formation Coordinated with N-Cadherin in Hippocampus

机译:PKD1促进与海马的N-Cadherin协调的功能性Synapse形成

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Functional synapse formation is critical for the wiring of neural circuits in the developing brain. The cell adhesion molecule N-cadherin plays important roles in target recognition and synaptogenesis. However, the molecular mechanisms that regulate the localization of N-cadherin and the subsequent effects remain poorly understood. Here, we show that protein kinase D1 (PKD1) directly binds to N-cadherin at amino acid residues 836-871 and phosphorylates it at Ser 869, 871, and 872, thereby increasing the surface localization of N-cadherin and promoting functional synapse formation in primary cultured hippocampal neurons obtained from embryonic day 18 rat embryos of either sex. Intriguingly, neuronal activity enhances the interactions between N-cadherin and PKD1, which are critical for the activity-dependent growth of dendritic spines. Accordingly, either disruption the binding between N-cadherin and PKD1 or preventing the phosphorylation of N-cadherin by PKD1 in the hippocampal CA1 region of male rat leads to the reduction in synapse number and impairment of LTP. Together, this study demonstrates a novel mechanism of PKD1 regulating the surface localization of N-cadherin and suggests that the PKD1-N-cadherin interaction is critical for synapse formation and function.
机译:功能突触形成对于显影大脑的神经电路布线至关重要。细胞粘附分子n-cadherin在目标识别和突触发生中起重要作用。然而,调节N-钙粘蛋白的定位和随后效果的分子机制仍然明白。在这里,我们表明蛋白激酶D1(PKD1)在氨基酸残基836-871上直接与N-钙粘蛋白结合,并在SER 869,871和872处磷酸化,从而增加N-Cadherin的表面定位和促进功能性突触形成在原发性培养的海马神经元,从胚胎第18天获得任何性交的大鼠胚胎。有趣的是,神经元活性增强了N-cadherin和PKD1之间的相互作用,这对于树突刺的活性依赖性生长至关重要。因此,在雄性大鼠的海马CA1区域中破坏N-cadherin和PKD1之间的结合或通过PKD1预防N-Cadherin的磷酸化导致LTP的突触数和损伤的降低。该研究共同证明了PKD1调节N-Cadherin表面定位的新机制,并表明PKD1-N-Cadherin相互作用对于突触形成和功能至关重要。

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