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首页> 外文期刊>Current Microbiology: An International Journal >Functional Characterization of Novel U6 RNA Polymerase III Promoters: Their Implication for CRISPR-Cas9-Mediated Gene Editing in Aspergillus oryzae
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Functional Characterization of Novel U6 RNA Polymerase III Promoters: Their Implication for CRISPR-Cas9-Mediated Gene Editing in Aspergillus oryzae

机译:新型U6 RNA聚合酶III启动子的功能表征:它们对Caspr-Cas9介导的基因编辑在Aspergillus oryzae中的含义

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摘要

U6 RNA polymerase III promoter (PU6), which is a key element in controlling the generation of single-guide RNA (sgRNA) for gene editing through CRISPR-Cas9 system, was investigated in this work. Using bioinformatics approach, two novel U6 ribonucleic acid (U6 RNA) sequences of Aspergillus niger were identified, showing that they had conserved motifs similar to other U6 RNAs. The putative PU6 located at the upstream sequence of A. niger U6 RNA exhibited the consensus motif, CCA ATYA, and the TATA box which shared highly conserved characteristics across Aspergilli, whereas the A- and B-boxes were found at the intragenic and downstream of the structural genes, respectively. Using Aspergillus oryzae as a workhorse system, the function of A. niger PU6s for controlling the transcripts of sgRNA was verified, in which the orotidine-5'-phosphate decarboxylase (pyrG) sequence was used as a target for gene disruption through CRISPR-Cas9 system. Quantitative reverse transcription-polymerase chain reaction (RT-qPCR) analysis of the selected pyrG auxotrophic strains showed the expression of sgRNA, indicating that the non-native promoters could efficiently drive sgRNA expression in A. oryzae. These identified promoters are useful genetic tools for precise engineering of metabolic pathways in the industrially important fungus through the empowered CRISPR-Cas9-associated gene-editing system.
机译:U6 RNA聚合酶III启动子(PU6)是在这项工作中研究了通过CRISPR-CAS9系统来控制用于基因编辑的单引导RNA(SGRNA)的关键要素。使用生物信息学方法,鉴定了两种新型U6核糖核酸(U6 RNA)曲霉葡萄葡萄毒素序列,表明它们具有与其他U6 RNA类似的基序。位于A. niger U6 RNA的上游序列的推定PU6表现出共有型图案,CCA Atya和Tata盒,其在灰毛利上共同储蓄特征,而A-and B盒在核心和下游发现分别是结构基因。使用Aspergillus Oryzae作为主管系统,验证了用于控制SGRNA的转录物的A.Niger PU6的功能,其中使用甲硝基-5'-磷酸脱羧酶(Pyrg)序列作为通过CRISPR-CAS9的基因破坏的靶标系统。定量逆转录聚合酶链反应(RT-QPCR)分析的选定的Pyrg营养抑菌菌株显示出SGRNA的表达,表明非天然促进剂可以有效地驱动A oryzae中的SGRNA表达。这些鉴定的启动子是通过赋权CRAP-CAS9相关基因编辑系统的工业上重要的真菌在工业上的代谢途径精确工程的有用遗传工具。

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