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同源盒基因编码转录因子在光转导调控中的作用:实施初级松果体细胞培养作为光感受器模型。

The role of homeobox gene-encoded transcription factors in regulation of phototransduction: Implementing the primary pinealocyte culture as a photoreceptor model.

机构信息

Department of Neuroscience, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.

出版信息

J Pineal Res. 2021 Sep;71(2):e12753. doi: 10.1111/jpi.12753. Epub 2021 Jul 30.

Abstract

Homeobox genes encode transcription factors controlling development; however, a number of homeobox genes are expressed postnatally specifically in melatonin-producing pinealocytes of the pineal gland and photoreceptors of the retina along with transcripts devoted to melatonin synthesis and phototransduction. Homeobox genes regulate melatonin synthesis in pinealocytes, but some homeobox genes also seem to be involved in regulation of retinal phototransduction. Due to the lack of photoreceptor models, we here introduce the rat pinealocyte culture as an in vitro model for studying retinal phototransduction. Systematic qPCR analyses were performed on the rat retina and pineal gland in 24 hour in vivo series and on primary cultures of rat pinealocytes: All homeobox genes and melatonin synthesis components, as well as nine out of ten phototransduction genes, were readily detectable in all three experimental settings, confirming molecular similarity between cultured pinealocytes and in vivo retinal tissue. 24 hours circadian expression was mostly confined to transcripts in the pineal gland, including a novel rhythm in arrestin (Sag). Individual knockdown of the homeobox genes orthodenticle homeobox 2 (Otx2), cone-rod homeobox (Crx) and LIM homeobox 4 (Lhx4) in pinealocyte culture using siRNA resulted in specific downregulation of transcripts representing all levels of phototransduction; thus, all phototransduction genes studied in culture were affected by one or several siRNA treatments. Histological colocalization of homeobox and phototransduction transcripts in the rat retinal photoreceptor was confirmed by RNAscope in situ hybridization, thus suggesting that homeobox gene-encoded transcription factors control postnatal expression of phototransduction genes in the retinal photoreceptor.

摘要

同源盒基因编码转录因子,控制着发育过程;然而,许多同源盒基因在出生后特异性地表达于松果体中的褪黑素生成松果体细胞和视网膜中的光感受器中,同时还表达专门用于褪黑素合成和光转导的转录本。同源盒基因调节松果体细胞中的褪黑素合成,但一些同源盒基因似乎也参与视网膜光转导的调节。由于缺乏光感受器模型,我们在此引入大鼠松果体细胞培养作为研究视网膜光转导的体外模型。我们对大鼠视网膜和松果体进行了 24 小时体内系列的系统 qPCR 分析,并对大鼠松果体细胞原代培养进行了分析:所有同源盒基因和褪黑素合成成分,以及 10 个光转导基因中的 9 个,在所有三种实验设置中都很容易检测到,证实了培养的松果体细胞与体内视网膜组织之间的分子相似性。24 小时昼夜节律表达主要局限于松果体中的转录本,包括 arrestin (Sag) 的新节律。使用 siRNA 在松果体细胞培养物中对同源盒基因 orthodenticle homeobox 2 (Otx2)、cone-rod homeobox (Crx) 和 LIM homeobox 4 (Lhx4) 进行个体敲低,导致代表光转导所有水平的转录本特异性下调;因此,在培养物中研究的所有光转导基因都受到一种或几种 siRNA 处理的影响。通过 RNAscope 原位杂交在大鼠视网膜光感受器中对同源盒和光转导转录本进行组织学共定位,从而表明同源盒基因编码的转录因子控制视网膜光感受器中光转导基因的出生后表达。

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