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鉴定斑马鱼松果体和睾丸中节律表达的长非编码 RNA。

Identification of Rhythmically Expressed LncRNAs in the Zebrafish Pineal Gland and Testis.

机构信息

Center for Circadian Clocks, Soochow University, Suzhou 215123, China.

School of Biology & Basic Medical Sciences, Medical College, Soochow University, Suzhou 215123, China.

出版信息

Int J Mol Sci. 2021 Jul 22;22(15):7810. doi: 10.3390/ijms22157810.

Abstract

Noncoding RNAs have been known to contribute to a variety of fundamental life processes, such as development, metabolism, and circadian rhythms. However, much remains unrevealed in the huge noncoding RNA datasets, which require further bioinformatic analysis and experimental investigation-and in particular, the coding potential of lncRNAs and the functions of lncRNA-encoded peptides have not been comprehensively studied to date. Through integrating the time-course experimentation with state-of-the-art computational techniques, we studied tens of thousands of zebrafish lncRNAs from our own experiments and from a published study including time-series transcriptome analyses of the testis and the pineal gland. Rhythmicity analysis of these data revealed approximately 700 rhythmically expressed lncRNAs from the pineal gland and the testis, and their GO, COG, and KEGG pathway functions were analyzed. Comparative and conservative analyses determined 14 rhythmically expressed lncRNAs shared between both the pineal gland and the testis, and 15 pineal gland lncRNAs as well as 3 testis lncRNAs conserved among zebrafish, mice, and humans. Further, we computationally analyzed the conserved lncRNA-encoded peptides, and revealed three pineal gland and one testis lncRNA-encoded peptides conserved among these three species, which were further investigated for their three-dimensional (3D) structures and potential functions. Our computational findings provided novel annotations and regulatory mechanisms for hundreds of rhythmically expressed pineal gland and testis lncRNAs in zebrafish, and set the stage for their experimental studies in the near future.

摘要

非编码 RNA 被认为参与了多种基本的生命过程,如发育、代谢和昼夜节律。然而,在庞大的非编码 RNA 数据集中,仍有许多未解之谜,这需要进一步进行生物信息学分析和实验研究——特别是 lncRNA 的编码潜力和 lncRNA 编码肽的功能尚未得到全面研究。通过将时间过程实验与最先进的计算技术相结合,我们研究了来自我们自己的实验和已发表研究的数万条斑马鱼 lncRNA,包括睾丸和松果体的时间序列转录组分析。对这些数据的节律性分析揭示了来自松果体和睾丸的大约 700 个节律表达的 lncRNA,并对其 GO、COG 和 KEGG 途径功能进行了分析。比较和保守性分析确定了 14 个在松果体和睾丸之间共同表达的节律性 lncRNA,以及 15 个松果体 lncRNA 和 3 个睾丸 lncRNA 在斑马鱼、小鼠和人类中保守。此外,我们还对保守的 lncRNA 编码肽进行了计算分析,揭示了这三个物种中三个松果体和一个睾丸 lncRNA 编码肽的保守性,进一步研究了它们的三维(3D)结构和潜在功能。我们的计算结果为斑马鱼中数百个节律性表达的松果体和睾丸 lncRNA 提供了新的注释和调控机制,并为它们在不久的将来的实验研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e940/8346003/0bf0cca1ce8e/ijms-22-07810-g001.jpg

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