Dual synthesis pathways of scaRNA28 via intronic processing of transformation/transcription domain-associated protein transcripts and a novel independent transcription unit.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
RNA Biology Pub Date : 2025-12-01 Epub Date: 2025-06-09 DOI:10.1080/15476286.2025.2513133
Keiichi Izumikawa, Tatsuya Shida, Hideaki Ishikawa, Sotaro Miyao, Takayuki Ohga, Masato Taoka, Yuko Nobe, Hiroshi Nakayama, Masami Nagahama
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引用次数: 0

Abstract

Small Cajal body-specific RNAs (scaRNAs) are noncoding RNAs involved in the maturation of U-rich small nuclear RNAs. Except for a few that have their own transcription units, most scaRNA genes are embedded in introns and are predicted to be transcribed with host genes. Herein, we report that scaRNA28 is the first scaRNA with a dual synthesis pathway, and that this RNA is transcribed in an independent transcription unit (ITU) by RNA polymerase II while located in intron 2 of the transformation/transcription domain-associated protein (TRRAP) gene. We evaluated the scaRNA28 synthesis pathway using minigenes containing exon 2, intron 2, and exon 3 of TRRAP. A minigene with a mutation preventing 5' splicing recognition of the exon 2/intron 2 junction generated scaRNA28, suggesting a pathway processing unspliced transcripts into scaRNA28. Even promoterless minigenes and DNA fragments with regions from exons 2 to 3 of TRRAP showed RNA polymerase II-dependent synthesis of scaRNA28, indicating a novel synthesis pathway involving an ITU. Linker-scanning mutational analysis revealed that the promoter region required for scaRNA28 expression in the ITU is located within 60 bases including exon 2/intron 2 junction of TRRAP, and especially the first two bases of intron 2 region, a putative part of the MYC-binding (E-box) motif, are essential for scaRNA28 expression in the ITU. MYC promotes scaRNA28 expression by binding to the promoter region in the ITU. Our findings demonstrated a novel transcriptional pathway for the synthesis of scaRNA28, the first scaRNA with a dual synthesis pathway.

通过内含子加工转化/转录结构域相关蛋白转录物和一种新的独立转录单元的scaRNA28的双重合成途径。
小Cajal体特异性rna (Small Cajal body-specific rna, scaRNAs)是参与富铀小核rna成熟的非编码rna。除了少数有自己的转录单位外,大多数scaRNA基因都嵌入内含子中,预计会与宿主基因一起转录。本文中,我们报道了scaRNA28是第一个具有双合成途径的scaRNA,并且该RNA位于转化/转录结构域相关蛋白(TRRAP)基因的内含子2中,由RNA聚合酶II以独立转录单元(ITU)转录。我们使用含有TRRAP外显子2、内含子2和外显子3的minigenes来评估scaRNA28合成途径。一个阻止5'剪接识别外显子2/内含子2连接的突变的小基因产生了scaRNA28,这表明一个途径将未剪接的转录本加工成scaRNA28。即使是TRRAP的无启动子短基因和具有2 - 3外显子区域的DNA片段也显示出RNA聚合酶ii依赖性的scaRNA28合成,这表明一种涉及ITU的新的合成途径。linker扫描突变分析显示,在ITU中表达scaRNA28所需的启动子区域位于TRRAP的外显子2/内含子2连接处等60个碱基内,特别是内含子2区域的前两个碱基,假定是myc结合(E-box)基序的一部分,是在ITU中表达scaRNA28所必需的。MYC通过结合ITU中的启动子区促进scaRNA28的表达。我们的研究结果证明了一种新的转录途径来合成scaRNA28,这是第一个具有双合成途径的scaRNA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
RNA Biology
RNA Biology 生物-生化与分子生物学
CiteScore
8.60
自引率
0.00%
发文量
82
审稿时长
1 months
期刊介绍: RNA has played a central role in all cellular processes since the beginning of life: decoding the genome, regulating gene expression, mediating molecular interactions, catalyzing chemical reactions. RNA Biology, as a leading journal in the field, provides a platform for presenting and discussing cutting-edge RNA research. RNA Biology brings together a multidisciplinary community of scientists working in the areas of: Transcription and splicing Post-transcriptional regulation of gene expression Non-coding RNAs RNA localization Translation and catalysis by RNA Structural biology Bioinformatics RNA in disease and therapy
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