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真菌中 TPP 核糖开关的分布和调控模式的系统发生基因组学和比较分析。

Phylogenomic and comparative analysis of the distribution and regulatory patterns of TPP riboswitches in fungi.

机构信息

Department of Physical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, 741246, India.

Department of Computer Science, Ben-Gurion University, Beer-Sheva, 84105, Israel.

出版信息

Sci Rep. 2018 Apr 3;8(1):5563. doi: 10.1038/s41598-018-23900-7.

Abstract

Riboswitches are metabolite or ion sensing cis-regulatory elements that regulate the expression of the associated genes involved in biosynthesis or transport of the corresponding metabolite. Among the nearly 40 different classes of riboswitches discovered in bacteria so far, only the TPP riboswitch has also been found in algae, plants, and in fungi where their presence has been experimentally validated in a few instances. We analyzed all the available complete fungal and related genomes and identified TPP riboswitch-based regulation systems in 138 fungi and 15 oomycetes. We find that TPP riboswitches are most abundant in Ascomycota and Basidiomycota where they regulate TPP biosynthesis and/or transporter genes. Many of these transporter genes were found to contain conserved domains consistent with nucleoside, urea and amino acid transporter gene families. The genomic location of TPP riboswitches when correlated with the intron structure of the regulated genes enabled prediction of the precise regulation mechanism employed by each riboswitch. Our comprehensive analysis of TPP riboswitches in fungi provides insights about the phylogenomic distribution, regulatory patterns and functioning mechanisms of TPP riboswitches across diverse fungal species and provides a useful resource that will enhance the understanding of RNA-based gene regulation in eukaryotes.

摘要

Riboswitches 是代谢物或离子感应顺式调控元件,可调节相关基因的表达,这些基因参与相应代谢物的生物合成或运输。迄今为止,在细菌中已经发现了近 40 种不同类型的 riboswitches,只有 TPP riboswitch 也在藻类、植物和真菌中被发现,在这些生物中,它们的存在已经在少数情况下得到了实验验证。我们分析了所有可用的完整真菌和相关基因组,并在 138 种真菌和 15 种卵菌中鉴定出基于 TPP riboswitch 的调控系统。我们发现 TPP riboswitches 在子囊菌门和担子菌门中最为丰富,它们在这些门中调节 TPP 的生物合成和/或转运基因。许多这些转运基因含有与核苷、尿素和氨基酸转运基因家族一致的保守结构域。当将 TPP riboswitches 的基因组位置与受调控基因的内含子结构相关联时,可以预测每个 riboswitch 所采用的精确调控机制。我们对真菌中 TPP riboswitches 的综合分析提供了关于 TPP riboswitches 在不同真菌物种中的系统发生分布、调控模式和作用机制的深入了解,并提供了一个有用的资源,将增强对真核生物中基于 RNA 的基因调控的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d927/5882874/ae41a0cd5243/41598_2018_23900_Fig1_HTML.jpg

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