tRNA pseudouridine synthase D (TruD) from Thermus thermophilus modifies U13 in tRNA Asp, tRNA Glu, and tRNA Gln and U35 in tRNA Tyr.

IF 4.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
RNA Pub Date : 2025-03-26 DOI:10.1261/rna.080405.125
Ryota Yamagami, Kojiro Takahashi, Shogo Shingu, Miyu Namba, Kohsuke Kamizaki, Hiroyuki Hori
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引用次数: 0

Abstract

Pseudouridine is a modified nucleoside found in various RNA species including tRNA, rRNA, mRNA, and other non-coding RNAs. Pseudouridine is synthesized from uridine by pseudouridine synthases. While the landscape of pseudouridines in RNA has been extensively studied, much less is known about substrate RNA recognition mechanisms of pseudouridine synthases. Herein, we investigate the tRNA pseudouridine synthase D (TruD) which catalyzes the formation of pseudouridine at position 13 in tRNAAsp in Thermus thermophilus, a thermophilic eubacterium. To identify the tRNA substrates of TruD, we compared results of next-generation sequencing experiments combined with bisulfite probing of pseudouridine in tRNAs from both wild type and a truD gene disruption mutant. Our data reveal that TruD recognizes tRNAAsp, tRNAGlu, and tRNAGln as substrate tRNAs. In addition, we discover that TruD modifies U35 in tRNATyr, which has previously been reported as a substrate of RluF in Escherichia coli These findings were validated through in vitro assays with recombinant TruD, which further demonstrated that TruD can act on other RNAs, including a CDC8 mRNA fragment, a known substrate of Pus7, the eukaryotic counterpart of TruD. Systematic mutational analysis of CDC8 transcripts reveal that TruD preferentially pseudouridylates the UNUAR sequence in tRNA substrates (N = any nucleotide, R = purine; U = target site). Finally, we identify over 600 mRNA fragments containing this recognition sequence in T. thermophilus ORFs and demonstrate the ability of TruD to act on these potential mRNA substrates. Our findings suggest the possibility that many other RNAs are modified by TruD in vivo.

来自嗜热热菌的tRNA假尿嘧啶合成酶D (TruD)修饰tRNA Asp中的U13, tRNA Glu中的U13, tRNA Tyr中的tRNA Gln和U35。
假尿苷是一种存在于多种RNA物种中的修饰核苷,包括tRNA、rRNA、mRNA和其他非编码RNA。假尿嘧啶是由尿嘧啶合成酶合成的。虽然假尿嘧啶在RNA中的分布已被广泛研究,但对假尿嘧啶合酶的底物RNA识别机制知之甚少。在此,我们研究了在嗜热热菌(Thermus thermophilus)中催化tRNAAsp第13位形成伪尿嘧啶合成酶D (tRNA pseuduridine synthase D, TruD)。为了鉴定TruD的tRNA底物,我们比较了新一代测序实验的结果,并结合亚硫酸盐探针检测了来自野生型和TruD基因破坏突变体的tRNA中的假尿嘧啶。我们的数据显示,TruD识别tRNAAsp、tRNAGlu和tRNAGln作为底物tRNAs。此外,我们发现TruD修饰tRNATyr中的U35, tRNATyr之前被报道为大肠杆菌中ruf的底物。这些发现通过重组TruD的体外实验得到了验证,这进一步证明了TruD可以作用于其他rna,包括CDC8 mRNA片段,这是TruD的真核对应物Pus7的已知底物。CDC8转录本的系统突变分析显示,tRNA底物中的UNUAR序列(N =任意核苷酸,R =嘌呤;U =目标站点)。最后,我们在嗜热T.嗜热菌orf中鉴定了600多个含有该识别序列的mRNA片段,并证明了TruD作用于这些潜在mRNA底物的能力。我们的研究结果表明,许多其他rna可能在体内被TruD修饰。
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来源期刊
RNA
RNA 生物-生化与分子生物学
CiteScore
8.30
自引率
2.20%
发文量
101
审稿时长
2.6 months
期刊介绍: RNA is a monthly journal which provides rapid publication of significant original research in all areas of RNA structure and function in eukaryotic, prokaryotic, and viral systems. It covers a broad range of subjects in RNA research, including: structural analysis by biochemical or biophysical means; mRNA structure, function and biogenesis; alternative processing: cis-acting elements and trans-acting factors; ribosome structure and function; translational control; RNA catalysis; tRNA structure, function, biogenesis and identity; RNA editing; rRNA structure, function and biogenesis; RNA transport and localization; regulatory RNAs; large and small RNP structure, function and biogenesis; viral RNA metabolism; RNA stability and turnover; in vitro evolution; and RNA chemistry.
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