Institute for Regenerative Medicine and Biotherapy, CHU Montpellier, Saint-Eloi Hospital, Montpellier F 34000, France.
INSERM, U1183, Montpellier F 34000, France.
Hum Reprod Update. 2016 Dec;23(1):19-40. doi: 10.1093/humupd/dmw035. Epub 2016 Sep 21.
Human long non-coding RNAs (lncRNAs) are an emerging category of transcripts with increasingly documented functional roles during development. LncRNAs and roles during human early embryo development have recently begun to be unravelled.
This review summarizes the most recent knowledge on lncRNAs and focuses on their expression patterns and role during early human embryo development and in pluripotent stem cells (PSCs). Public mRNA sequencing (mRNA-seq) data were used to illustrate these expression signatures.
The PubMed and EMBASE databases were first interrogated using specific terms, such as 'lncRNAs', to get an extensive overview on lncRNAs up to February 2016, and then using 'human lncRNAs' and 'embryo', 'development', or 'PSCs' to focus on lncRNAs involved in human embryo development or in PSC.Recently published RNA-seq data from human oocytes and pre-implantation embryos (including single-cell data), PSC and a panel of normal and malignant adult tissues were used to describe the specific expression patterns of some lncRNAs in early human embryos.
The existence and the crucial role of lncRNAs in many important biological phenomena in each branch of the life tree are now well documented. The number of identified lncRNAs is rapidly increasing and has already outnumbered that of protein-coding genes. Unlike small non-coding RNAs, a variety of mechanisms of action have been proposed for lncRNAs. The functional role of lncRNAs has been demonstrated in many biological and developmental processes, including cell pluripotency induction, X-inactivation or gene imprinting. Analysis of RNA-seq data highlights that lncRNA abundance changes significantly during human early embryonic development. This suggests that lncRNAs could represent candidate biomarkers for developing non-invasive tests for oocyte or embryo quality. Finally, some of these lncRNAs are also expressed in human cancer tissues, suggesting that reactivation of an embryonic lncRNA program may contribute to human malignancies.
LncRNAs are emerging potential key players in gene expression regulation. Analysis of RNA-seq data from human pre-implantation embryos identified lncRNA signatures that are specific to this critical step. We anticipate that further studies will show that these new transcripts are major regulators of embryo development. These findings might also be used to develop new tests/treatments for improving the pregnancy success rate in IVF procedures or for regenerative medicine applications involving PSC.
人类长链非编码 RNA(lncRNA)是一类新兴的转录本,其在发育过程中的功能作用越来越受到关注。lncRNA 及其在人类早期胚胎发育中的作用最近才开始被揭示。
本综述总结了 lncRNA 的最新知识,重点介绍了它们在人类早期胚胎发育和多能干细胞(PSCs)中的表达模式和作用。公共 mRNA 测序(mRNA-seq)数据用于说明这些表达特征。
首先使用特定术语(如“lncRNA”)在 PubMed 和 EMBASE 数据库中进行查询,以获得截至 2016 年 2 月的 lncRNA 广泛概述,然后使用“人类 lncRNA”和“胚胎”、“发育”或“PSCs”来关注参与人类胚胎发育或 PSC 的 lncRNA。最近发表的来自人类卵母细胞和植入前胚胎(包括单细胞数据)、PSC 和一系列正常和恶性成人组织的 RNA-seq 数据用于描述一些 lncRNA 在早期人类胚胎中的特定表达模式。
lncRNA 在生命树各个分支中的许多重要生物学现象中的存在和关键作用现在已经得到很好的证明。已鉴定的 lncRNA 数量迅速增加,已经超过了蛋白质编码基因的数量。与小非编码 RNA 不同,已经提出了多种 lncRNA 的作用机制。lncRNA 的功能作用已在许多生物学和发育过程中得到证明,包括细胞多能性诱导、X 失活或基因印记。RNA-seq 数据分析表明,lncRNA 的丰度在人类早期胚胎发育过程中发生显著变化。这表明 lncRNA 可能成为开发卵母细胞或胚胎质量非侵入性测试的候选生物标志物。最后,这些 lncRNA 中的一些也在人类癌组织中表达,表明胚胎 lncRNA 程序的重新激活可能导致人类恶性肿瘤。
lncRNA 是新兴的潜在基因表达调控关键参与者。对人类植入前胚胎 RNA-seq 数据的分析确定了特定于这一关键步骤的 lncRNA 特征。我们预计,进一步的研究将表明这些新的转录本是胚胎发育的主要调控因子。这些发现也可用于开发新的测试/治疗方法,以提高体外受精(IVF)程序中的妊娠成功率或用于涉及 PSC 的再生医学应用。