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Atrophin 作为核心抑制因子,特异性决定果蝇嗅觉受体的表达。

The corepressor Atrophin specifies odorant receptor expression in Drosophila.

机构信息

1Department of Clinical and Experimental Medicine, Linköping University, S-581 83 Linköping, Sweden.

出版信息

FASEB J. 2014 Mar;28(3):1355-64. doi: 10.1096/fj.13-240325. Epub 2013 Dec 13.

Abstract

In both insects and vertebrates, each olfactory sensory neuron (OSN) expresses one odorant receptor (OR) from a large genomic repertoire. How a receptor is specified is a tantalizing question addressing fundamental aspects of cell differentiation. Here, we demonstrate that the corepressor Atrophin (Atro) segregates OR gene expression between OSN classes in Drosophila. We show that the knockdown of Atro result in either loss or gain of a broad set of ORs. Each OR phenotypic group correlated with one of two opposing Notch fates, Notch responding, Nba (N(on)), and nonresponding, Nab (N(off)) OSNs. Our data show that Atro segregates ORs expressed in the Nba OSN classes and helps establish the Nab fate during OSN development. Consistent with a role in recruiting histone deacetylates, immunohistochemistry revealed that Atro regulates global histone 3 acetylation (H3ac) in OSNs and requires Hdac3 to segregate OR gene expression. We further found that Nba OSN classes exhibit variable but higher H3ac levels than the Nab OSNs. Together, these data suggest that Atro determines the level of H3ac, which ensures correct OR gene expression within the Nba OSNs. We propose a mechanism by which a single corepressor can specify a large number of neuron classes.

摘要

在昆虫和脊椎动物中,每个嗅觉感觉神经元(OSN)都从大量基因组中表达一种气味受体(OR)。一个受体是如何被指定的,这是一个令人着迷的问题,涉及到细胞分化的基本方面。在这里,我们证明了核心抑制因子 Atrophin(Atro)在果蝇的 OSN 类之间分离 OR 基因表达。我们表明,Atro 的敲低导致广泛的一组 OR 丢失或获得。每个 OR 表型组与两种相反的 Notch 命运之一相关,即 Notch 反应型 Nba(N(on))和非反应型 Nab(N(off))OSN。我们的数据表明,Atro 分离了在 Nba OSN 类中表达的 OR,并有助于在 OSN 发育过程中建立 Nab 命运。与招募组蛋白去乙酰化酶的作用一致,免疫组织化学显示 Atro 调节 OSN 中的全局组蛋白 3 乙酰化(H3ac),并且需要 Hdac3 来分离 OR 基因表达。我们进一步发现,Nba OSN 类表现出比 Nab OSN 更高的可变 H3ac 水平。总之,这些数据表明 Atro 决定了 H3ac 的水平,这确保了 Nba OSN 中正确的 OR 基因表达。我们提出了一种机制,其中单个核心抑制因子可以指定大量神经元类。

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