首页|细菌新生RNA捕获及转录延伸速率检测方法的开发与应用

细菌新生RNA捕获及转录延伸速率检测方法的开发与应用

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目的 检测和定量细胞中RNA的合成是一种广泛应用于监测细胞活力、健康和代谢率的技术。在环境刺激下,内参基因和靶基因都会发生一定程度的降解。因此,在受到环境刺激后,必须考虑对新生RNA的精确捕获和RNA转录水平的检测。本研究的目的是创建一种点击化学方法,利用其特性从环境刺激的总RNA中捕获新生RNA。方法 使用5-乙基尿苷(5-EU)对新生RNA进行标记,利用"点击化学"和磁珠筛选相结合的方法,将叠氮化物-生物素介质配体与磁球连接,随后捕获新生RNA并利用荧光分子信标(M。B。)和定量反转录PCR(quantitative reverse transcriptase-mediated PCR,qRT-PCR)方法检测16S rRNA转录速率。结果 经过"点击化学"筛选捕获得到的细菌新生RNA可以被用作反转录模板进行反转录形成cDNA,结合荧光分子信标M。B。1准确反映37℃条件下rRNA的合成速率是15℃条件下的1。2倍,通过荧光定量PCR对16S rRNA基因和cspI基因进行检测,得到在25℃和16℃条件下用新生RNA而不是总RNA进行分析时,测量的相对基因表达的变化显著增强,实现RNA转录速率的精确检测。结论 本研究采用的技术方案较其他方法更适合细菌,操作步骤简单,易于实现,是适于研究人员使用的有效的RNA捕获方法。
Development and Application of Detection Methods for Capture and Transcription Elongation Rate of Bacterial Nascent RNA
Objective Detection and quantification of RNA synthesis in cells is a widely used technique for monitoring cell viability,health,and metabolic rate.After exposure to environmental stimuli,both the internal reference gene and target gene would be degraded.As a result,it is imperative to consider the accurate capture of nascent RNA and the detection of transcriptional levels of RNA following environmental stimulation.This study aims to create a Click Chemistry method that utilizes its property to capture nascent RNA from total RNA that was stimulated by the environment.Methods The new RNA was labeled with 5-ethyluridine(5-EU)instead of uracil,and the azido-biotin medium ligand was connected to the magnetic sphere using a combination of"Click Chemistry"and magnetic bead screening.Then the new RNA was captured and the transcription rate of 16S rRNA was detected by fluorescence molecular beacon(M.B.)and quantitative reverse transcription PCR(qRT-PCR).Results The bacterial nascent RNA captured by"Click Chemistry"screening can be used as a reverse transcription template to form cDNA.Combined with the fluorescent molecular beacon M.B.1,the synthesis rate of rRNA at 37℃ is 1.2 times higher than that at 15℃.The 16S rRNA gene and cspI gene can be detected by fluorescent quantitative PCR,it was found that the measured relative gene expression changes were significantly enhanced at 25℃ and 16℃ when analyzed with nascent RNA rather than total RNA,enabling accurate detection of RNA transcription rates.Conclusion Compared to other article reported experimental methods that utilize screening magnetic columns,the technical scheme employed in this study is more suitable for bacteria,and the operation steps are simple and easy to implement,making it an effective RNA capture method for researchers.

nascent RNA selectionClick Chemistryfluorescence molecular beacon

李媛媛、王雨婷、武子淳、李昊轩、费明月、孙东昌、GUALERZI O.Claudio、FABBRETTI Attilio、GIULIODORI Anna Maria、马红霞、贺承光

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吉林农业大学生命科学技术学院,教育部生物反应器与药物开发工程研究中心,长春 130118

浙江工业大学生物技术与生物工程学院,杭州 310014

School of Biosciences and Veterinary Medicine,University of Camerino,Camerino(MC)62032,Italy

新生RNA筛选 点击化学 荧光分子信标

吉林省科技厅国际科技合作项目吉林农业大学国家级大学生创新创业训练计划项目资助

20230402037GH

2024

生物化学与生物物理进展
中国科学院生物物理研究所,中国生物物理学会

生物化学与生物物理进展

CSTPCD北大核心
影响因子:0.476
ISSN:1000-3282
年,卷(期):2024.51(9)