The RNA ligation method using modified splint DNAs significantly improves the efficiency of circular RNA synthesis.

IF 2.5 2区 生物学 Q3 CELL BIOLOGY Animal Cells and Systems Pub Date : 2023-10-04 eCollection Date: 2023-01-01 DOI:10.1080/19768354.2023.2265165
Yoon-Seob Kim, Do-Hyung Kim, Daegi An, Younghyun Lim, Young-Jin Seo, Hak Kyun Kim, Ho-Young Kang
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Abstract

Circular RNA (circRNA) is a non-coding RNA with a covalently closed loop structure and usually more stable than messenger RNA (mRNA). However, coding sequences (CDSs) following an internal ribosome entry site (IRES) in circRNAs can be translated, and this property has been recently utilized to produce proteins as novel therapeutic tools. However, it is difficult to produce large proteins from circRNAs because of the low circularization efficiency of lengthy RNAs. In this study, we report that we successfully synthesized circRNAs with the splint DNA ligation method using RNA ligase 1 and the splint DNAs, which contain complementary sequences to both ends of precursor linear RNAs. This method results in more efficient circularization than the conventional enzymatic method that does not use the splint DNAs, easily generating circRNAs that express relatively large proteins, including IgG heavy and light chains. Longer splint DNA (42 nucleotide) is more effective in circularization. Also, the use of splint DNAs with an adenine analog, 2,6-diaminopurine (DAP), increase the circularization efficiency presumably by strengthening the interaction between the splint DNAs and the precursor RNAs. The splint DNA ligation method requires 5 times more splint DNA than the precursor RNA to efficiently produce circRNAs, but our modified splint DNA ligation method can produce circRNAs using the amount of splint DNA which is equal to that of the precursor RNA. Our modified splint DNA ligation method will help develop novel therapeutic tools using circRNAs, to treat various diseases and to develop human and veterinary vaccines.

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使用修饰的夹板DNA的RNA连接方法显著提高了环状RNA合成的效率。
环状RNA(circRNA)是一种非编码RNA,具有共价闭环结构,通常比信使RNA(mRNA)更稳定。然而,circRNAs中内部核糖体进入位点(IRES)后面的编码序列(CDSs)可以被翻译,并且这种特性最近被用于生产蛋白质作为新的治疗工具。然而,由于长RNA的环化效率低,很难从circRNA中产生大蛋白。在本研究中,我们报道了我们使用RNA连接酶1和夹板DNA通过夹板DNA连接方法成功合成了circRNA,它们包含前体线性RNA两端的互补序列。这种方法比不使用夹板DNA的传统酶法更有效地环化,容易产生表达相对大蛋白质的circRNA,包括IgG重链和轻链。较长的夹板DNA(42个核苷酸)在环化中更有效。此外,将夹板DNA与腺嘌呤类似物2,6-二氨基尿(DAP)一起使用,可能通过加强夹板DNA与前体RNA之间的相互作用来提高环化效率。夹板DNA连接方法需要比前体RNA多5倍的夹板DNA才能有效地产生circRNA,但我们改进的夹板DNA连接法可以使用与前体RNA相等的夹板DNA量来产生circRNAs。我们改良的夹板DNA连接方法将有助于开发使用circRNA的新型治疗工具,治疗各种疾病,并开发人类和兽医疫苗。
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来源期刊
Animal Cells and Systems
Animal Cells and Systems 生物-动物学
CiteScore
4.50
自引率
24.10%
发文量
33
审稿时长
6 months
期刊介绍: Animal Cells and Systems is the official journal of the Korean Society for Integrative Biology. This international, peer-reviewed journal publishes original papers that cover diverse aspects of biological sciences including Bioinformatics and Systems Biology, Developmental Biology, Evolution and Systematic Biology, Population Biology, & Animal Behaviour, Molecular and Cellular Biology, Neurobiology and Immunology, and Translational Medicine.
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