重新审视细胞核小核仁RNA的存在与定位

The Existence and Localization of Nuclear snoRNAs in Revisited.

作者信息

Streit Deniz, Shanmugam Thiruvenkadam, Garbelyanski Asen, Simm Stefan, Schleiff Enrico

机构信息

Department of Biosciences, Molecular Cell Biology of Plants, Goethe University, D-60438 Frankfurt am Main, Germany.

Institute of Bioinformatics, University Medicine Greifswald, D-17475 Greifswald, Germany.

出版信息

Plants (Basel). 2020 Aug 12;9(8):1016. doi: 10.3390/plants9081016.

Abstract

Ribosome biogenesis is one cell function-defining process. It depends on efficient transcription of rDNAs in the nucleolus as well as on the cytosolic synthesis of ribosomal proteins. For newly transcribed rRNA modification and ribosomal protein assembly, so-called small nucleolar RNAs (snoRNAs) and ribosome biogenesis factors (RBFs) are required. For both, an inventory was established for model systems like yeast and humans. For plants, many assignments are based on predictions. Here, RNA deep sequencing after nuclei enrichment was combined with single molecule species detection by northern blot and in vivo fluorescence in situ hybridization (FISH)-based localization studies. In addition, the occurrence and abundance of selected snoRNAs in different tissues were determined. These approaches confirm the presence of most of the database-deposited snoRNAs in cell cultures, but some of them are localized in the cytosol rather than in the nucleus. Further, for the explored snoRNA examples, differences in their abundance in different tissues were observed, suggesting a tissue-specific function of some snoRNAs. Thus, based on prediction and experimental confirmation, many plant snoRNAs can be proposed, while it cannot be excluded that some of the proposed snoRNAs perform alternative functions than are involved in rRNA modification.

摘要

核糖体生物合成是一个定义细胞功能的过程。它依赖于核仁中rDNA的高效转录以及核糖体蛋白的胞质合成。对于新转录的rRNA修饰和核糖体蛋白组装,需要所谓的小核仁RNA(snoRNA)和核糖体生物合成因子(RBF)。对于酵母和人类等模型系统,已经建立了它们的清单。对于植物,许多归属是基于预测的。在这里,富集细胞核后的RNA深度测序与通过Northern印迹进行的单分子物种检测以及基于体内荧光原位杂交(FISH)的定位研究相结合。此外,还确定了不同组织中选定snoRNA的存在和丰度。这些方法证实了细胞培养物中大多数数据库中存储的snoRNA的存在,但其中一些位于细胞质而非细胞核中。此外,对于所研究的snoRNA实例,观察到它们在不同组织中的丰度存在差异,这表明一些snoRNA具有组织特异性功能。因此,基于预测和实验证实,可以提出许多植物snoRNA,同时不能排除一些所提出的snoRNA执行的功能不同于参与rRNA修饰的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb27/7464842/6feb9020cfcb/plants-09-01016-g001.jpg

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