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首页> 外文期刊>Journal of Biophysical and Biochemical Cytology >The polarity protein Angiomotin p130 controls dendritic spine maturation
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The polarity protein Angiomotin p130 controls dendritic spine maturation

机译:极性蛋白血管管素P130控制树突脊柱成熟

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The actin cytoskeleton is essential for the structural changes in dendritic spines that lead to the formation of new synapses. Although the molecular mechanisms underlying spine formation are well characterized, the events that drive spine maturation during development are largely unknown. In this study, we demonstrate that Angiomotin (AMOT-130) is necessary for spine stabilization. AMOT-130 is enriched in mature dendritic spines and functions to stabilize the actin cytoskeleton by coupling F-actin to postsynaptic protein scaffolds. These functions of AMOT are transiently restricted during postnatal development by phosphorylation imposed by the kinase Lats1. Our study proposes that AMOT-130 is essential for normal spine morphogenesis and identifies Lats1 as an upstream regulator in this process. Moreover, our findings may link AMOT-130 loss and the related spine defects to neurological disorders.
机译:肌动蛋白细胞骨架对于导致形成新突触的树突刺的结构变化至关重要。虽然脊柱形成的分子机制很好,但在发育过程中驱动脊柱成熟的事件在很大程度上是未知的。在这项研究中,我们证明血管素(AMOT-130)对于脊柱稳定是必要的。 AmOT-130富含成熟树突刺,通过将F-Actin偶联至后腹膜蛋白支架来稳定肌动蛋白细胞骨架。通过激酶Lats1施加的磷酸化在出生后开发期间这些功能瞬时限制。我们的研究提出,AmOT-130对于正常脊柱形态发生至关重要,并将LATS1识别在该过程中作为上游调节器。此外,我们的研究结果可以将AMOT-130损失链接到神经系统疾病的缺陷和相关的脊柱缺陷。

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