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培养的海马神经元中树突状BC1 RNA的活性依赖性调节。

Activity-dependent regulation of dendritic BC1 RNA in hippocampal neurons in culture.

作者信息

Muslimov I A, Banker G, Brosius J, Tiedge H

机构信息

Department of Pharmacology, State University of New York, Health Science Center at Brooklyn, Brooklyn, New York 11203, USA.

出版信息

J Cell Biol. 1998 Jun 29;141(7):1601-11. doi: 10.1083/jcb.141.7.1601.

Abstract

Several neuronal RNAs have been identified in dendrites, and it has been suggested that the dendritic location of these RNAs may be relevant to the spatiotemporal regulation of mosaic postsynaptic protein repertoires through transsynaptic activity. Such regulation would require that dendritic RNAs themselves, or at least some of them, be subject to physiological control. We have therefore examined the functional regulation of somatodendritic expression levels of dendritic BC1 RNA in hippocampal neurons in culture. BC1 RNA, an RNA polymerase III transcript that is a component of a ribonucleoprotein particle, became first detectable in somatodendritic domains of developing hippocampal neurons at times of initial synapse formation. BC1 RNA was identified only in such neurons that had established synapses on cell bodies and/or developing dendritic arbors. When synaptic contact formation was initiated later in low-density cultures, BC1 expression was coordinately delayed. Inhibition of neuronal activity in hippocampal neurons resulted in a substantial but reversible reduction of somatodendritic BC1 expression. We conclude that expression of BC1 RNA in somatic and dendritic domains of hippocampal neurons is regulated in development, and is dependent upon neuronal activity. These results establish (for the first time to our knowledge) that an RNA polymerase III transcript can be subject to control through physiological activity in nerve cells.

摘要

在树突中已鉴定出几种神经元RNA,并且有人提出这些RNA在树突中的定位可能与通过跨突触活动对镶嵌型突触后蛋白库的时空调节有关。这种调节将要求树突RNA本身,或者至少其中一些,受到生理控制。因此,我们研究了培养的海马神经元中树突状BC1 RNA的体树突表达水平的功能调节。BC1 RNA是一种RNA聚合酶III转录本,是核糖核蛋白颗粒的一个组成部分,在发育中的海马神经元的体树突区域最初形成突触时首次被检测到。仅在那些在细胞体和/或发育中的树突分支上建立了突触的神经元中鉴定出BC1 RNA。当在低密度培养物中较晚开始突触接触形成时,BC1表达会相应延迟。海马神经元中神经元活动的抑制导致体树突BC1表达的显著但可逆的降低。我们得出结论,海马神经元的体细胞和树突区域中BC1 RNA的表达在发育过程中受到调节,并且依赖于神经元活动。这些结果(据我们所知首次)表明,RNA聚合酶III转录本可以通过神经细胞中的生理活动受到控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e11d/2133012/2a1a7fb6dc52/JCB9802085.f1.jpg

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