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Arc/Arg3.1启动子中对激活神经元的突触到细胞核信号传导至关重要的突触活动反应元件。

Synaptic activity-responsive element in the Arc/Arg3.1 promoter essential for synapse-to-nucleus signaling in activated neurons.

作者信息

Kawashima Takashi, Okuno Hiroyuki, Nonaka Mio, Adachi-Morishima Aki, Kyo Nan, Okamura Michiko, Takemoto-Kimura Sayaka, Worley Paul F, Bito Haruhiko

机构信息

Department of Neurochemistry, Graduate School of Medicine, University of Tokyo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

Proc Natl Acad Sci U S A. 2009 Jan 6;106(1):316-21. doi: 10.1073/pnas.0806518106. Epub 2008 Dec 30.

Abstract

The neuronal immediate early gene Arc/Arg-3.1 is widely used as one of the most reliable molecular markers for intense synaptic activity in vivo. However, the cis-acting elements responsible for such stringent activity dependence have not been firmly identified. Here we combined luciferase reporter assays in cultured cortical neurons and comparative genome mapping to identify the critical synaptic activity-responsive elements (SARE) of the Arc/Arg-3.1 gene. A major SARE was found as a unique approximately 100-bp element located at >5 kb upstream of the Arc/Arg-3.1 transcription initiation site in the mouse genome. This single element, when positioned immediately upstream of a minimal promoter, was necessary and sufficient to replicate crucial properties of endogenous Arc/Arg-3.1's transcriptional regulation, including rapid onset of transcription triggered by synaptic activity and low basal expression during synaptic inactivity. We identified the major determinants of SARE as a unique cluster of neuronal activity-dependent cis-regulatory elements consisting of closely localized binding sites for CREB, MEF2, and SRF. Consistently, a SARE reporter could readily trace and mark an ensemble of cells that have experienced intense activity in the recent past in vivo. Taken together, our work uncovers a novel transcriptional mechanism by which a critical 100-bp element, SARE, mediates a predominant component of the synapse-to-nucleus signaling in ensembles of Arc/Arg-3.1-positive activated neurons.

摘要

神经元即早基因Arc/Arg-3.1被广泛用作体内强烈突触活动最可靠的分子标记之一。然而,负责这种严格活动依赖性的顺式作用元件尚未得到明确鉴定。在这里,我们结合培养的皮层神经元中的荧光素酶报告基因检测和比较基因组图谱分析,以鉴定Arc/Arg-3.1基因的关键突触活动反应元件(SARE)。在小鼠基因组中,一个主要的SARE被发现是位于Arc/Arg-3.1转录起始位点上游>5 kb处的一个独特的约100 bp元件。当这个单一元件位于最小启动子的紧上游时,对于复制内源性Arc/Arg-3.1转录调控的关键特性是必要且充分的,这些特性包括突触活动触发的转录快速起始以及突触静止期间的低基础表达。我们将SARE的主要决定因素鉴定为一组独特的神经元活动依赖性顺式调控元件簇,该簇由紧密定位的CREB、MEF2和SRF结合位点组成。一致地,一个SARE报告基因能够很容易地追踪和标记体内近期经历过强烈活动的一群细胞。综上所述,我们的工作揭示了一种新的转录机制,通过该机制,一个关键的100 bp元件SARE介导了Arc/Arg-3.1阳性激活神经元群体中从突触到细胞核信号传导的主要成分。

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