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核内弧调节 PML 依赖性 GluA1 转录和动态平衡可塑性。

Arc in the nucleus regulates PML-dependent GluA1 transcription and homeostatic plasticity.

机构信息

Gladstone Institutes of Neurological Disease, San Francisco, California, USA.

出版信息

Nat Neurosci. 2013 Jul;16(7):874-83. doi: 10.1038/nn.3429. Epub 2013 Jun 9.

Abstract

The activity-regulated cytoskeletal protein Arc (also known as Arg3.1) is required for long-term memory formation and synaptic plasticity. Arc expression is robustly induced by activity, and Arc protein localizes to both active synapses and the nucleus. Whereas its synaptic function has been examined, it is not clear why or how Arc is localized to the nucleus. We found that murine Arc nuclear expression is regulated by synaptic activity in vivo and in vitro. We identified distinct regions of Arc that control its localization, including a nuclear localization signal, a nuclear retention domain and a nuclear export signal. Arc localization to the nucleus promotes an activity-induced increase in the expression of promyelocytic leukemia nuclear bodies, which decreases GluA1 (also called Gria1) transcription and synaptic strength. We further show that Arc nuclear localization regulates homeostatic plasticity. Thus, Arc mediates the homeostatic response to increased activity by translocating to the nucleus, increasing promyelocytic leukemia protein expression and decreasing GluA1 transcription, ultimately downscaling synaptic strength.

摘要

活性调节细胞骨架蛋白 Arc(也称为 Arg3.1)是长时程记忆形成和突触可塑性所必需的。Arc 的表达被活性强烈诱导,Arc 蛋白定位于活跃的突触和细胞核。虽然已经研究了其突触功能,但不清楚为什么或如何将 Arc 定位到细胞核。我们发现,在体内和体外,Arc 的核表达受突触活动的调节。我们确定了控制其定位的 Arc 不同区域,包括核定位信号、核保留域和核输出信号。Arc 向细胞核的定位促进了早幼粒细胞白血病核小体的活性诱导增加,从而降低了 GluA1(也称为 Gria1)转录和突触强度。我们进一步表明,Arc 的核定位调节了同型性可塑性。因此,Arc 通过易位到细胞核来介导对活性增加的同型性反应,增加早幼粒细胞白血病蛋白的表达并降低 GluA1 转录,最终降低突触强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d361/3703835/b314c8bb712a/nihms479700f1.jpg

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