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异位表达的Slc34a2a正义-反义转录本根据RNA互补性和Dicer在斑马鱼胚胎中导致小脑表型。

Ectopically expressed Slc34a2a sense-antisense transcripts cause a cerebellar phenotype in zebrafish embryos depending on RNA complementarity and Dicer.

作者信息

Piatek Monica J, Henderson Victoria, Fearn Amy, Chaudhry Bill, Werner Andreas

机构信息

RNA Interest Group, Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle upon Tyne, United Kingdom.

Institute of Genetic Medicine, International Centre for Life, Newcastle University, Newcastle upon Tyne, United Kingdom.

出版信息

PLoS One. 2017 May 18;12(5):e0178219. doi: 10.1371/journal.pone.0178219. eCollection 2017.

Abstract

Natural antisense transcripts (NATs) are complementary to protein coding genes and potentially regulate their expression. Despite widespread occurrence of NATs in the genomes of higher eukaryotes, their biological role and mechanism of action is poorly understood. Zebrafish embryos offer a unique model system to study sense-antisense transcript interplay at whole organism level. Here, we investigate putative antisense transcript-mediated mechanisms by ectopically co-expressing the complementary transcripts during early zebrafish development. In zebrafish the gene Slc34a2a (Na-phosphate transporter) is bi-directionally transcribed, the NAT predominantly during early development up to 48 hours after fertilization. Declining levels of the NAT, Slc34a2a(as), coincide with an increase of the sense transcript. At that time, sense and antisense transcripts co-localize in the endoderm at near equal amounts. Ectopic expression of the sense transcript during embryogenesis leads to specific failure to develop a cerebellum. The defect is RNA-mediated and dependent on sense-antisense complementarity. Overexpression of a Slc34a2a paralogue (Slc34a2b) or the NAT itself had no phenotypic consequences. Knockdown of Dicer rescued the brain defect suggesting that RNA interference is required to mediate the phenotype. Our results corroborate previous reports of Slc34a2a-related endo-siRNAs in two days old zebrafish embryos and emphasize the importance of coordinated expression of sense-antisense transcripts. Our findings suggest that RNAi is involved in gene regulation by certain natural antisense RNAs.

摘要

天然反义转录本(NATs)与蛋白质编码基因互补,并可能调节其表达。尽管NATs在高等真核生物基因组中广泛存在,但其生物学作用和作用机制仍知之甚少。斑马鱼胚胎提供了一个独特的模型系统,用于在全生物体水平上研究正义-反义转录本的相互作用。在这里,我们通过在斑马鱼早期发育过程中异位共表达互补转录本来研究假定的反义转录本介导的机制。在斑马鱼中,基因Slc34a2a(钠-磷酸盐转运体)是双向转录的,NAT主要在受精后48小时内的早期发育阶段表达。NAT Slc34a2a(as)水平的下降与正义转录本的增加相一致。此时,正义和反义转录本在内胚层中以几乎相等的量共定位。胚胎发生过程中正义转录本的异位表达导致小脑发育出现特定缺陷。该缺陷是由RNA介导的,并且依赖于正义-反义互补性。Slc34a2a旁系同源物(Slc34a2b)或NAT本身的过表达没有表型后果。Dicer的敲低挽救了脑缺陷,表明RNA干扰是介导该表型所必需的。我们的结果证实了之前关于两天大斑马鱼胚胎中与Slc34a2a相关的内源性小干扰RNA的报道,并强调了正义-反义转录本协调表达的重要性。我们的发现表明RNA干扰参与了某些天然反义RNA的基因调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab7e/5436864/381cd550f083/pone.0178219.g001.jpg

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