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Peptide nucleic acids (PNAs) antisense effect to bacterial growth and their application potentiality in biotechnology

机译:肽核酸(PNA)对细菌生长的反义作用及其在生物技术中的应用潜力

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摘要

Peptide nucleic acids (PNAs) are nucleic acid analogs having attractive properties such as quiet stability against nucleases and proteases, and they form strong complexes with complementary strands of DNA or RNA. Because of this attractive nature, PNA is often used in antisense technology to inhibit gene expression and microbial cell growth with high specificity. Many bacterial antisense or antiribosomal studies using PNA oligomers have been reported so far, and parameters to design effective antisense PNAs and to improve PNA cell entry for efficient inhibition of bacterial growth have been presented. However, there are still several obstacles such as low cellular uptake of PNA while applying antisense PNAs to a complex microbial community. On overcoming these problems, the PNA antisense technique might become a very attractive tool not only for controlling the microbial growth but also for further elucidating microbial ecology in complex microbial consortia. Here, we summarize and present recent studies on the development of antimicrobial PNAs targeting mRNAs and rRNAs. In addition, the application potentiality of antisense techniques in nonclinical biotechnology fields is discussed.
机译:肽核酸(PNA)是具有类似属性的核酸类似物,例如对核酸酶和蛋白酶的安静稳定性,并且它们与DNA或RNA的互补链形成牢固的复合物。由于这种吸引人的性质,PNA通常用于反义技术中,以高特异性抑制基因表达和微生物细胞生长。迄今为止,已报道了许多使用PNA低聚物进行细菌反义或抗核糖体研究的研究,并提出了设计有效的反义PNA和改善PNA细胞进入以有效抑制细菌生长的参数。但是,仍然存在一些障碍,例如将反义PNA应用于复杂的微生物群落时,细胞对PNA的吸收较低。在克服这些问题后,PNA反义技术可能会成为非常有吸引力的工具,不仅可以控制微生物的生长,而且可以进一步阐明复杂微生物群落中的微生物生态。在这里,我们总结并提出了针对靶向mRNA和rRNA的抗菌PNA的最新研究。此外,还讨论了反义技术在非临床生物技术领域中的应用潜力。

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