CRISPR/Cas作为细菌和古细菌的智能免疫系统

Q3 Medicine Postepy biochemii Pub Date : 2022-07-21 Print Date: 2022-09-30 DOI:10.18388/pb.2021_453
Dalia Blicharska, Izabela Szućko-Kociuba, Ewa Filip, Lidia Skuza
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引用次数: 0

摘要

CRISPR的发明被认为是近年来生物学、生物技术、医学以及制药和农业工业历史上最具突破性的发现之一。使用CRISPR开发的方法创造了新的,以前无法实现的可能性,可以显着提高生活质量。从这种智能免疫系统的发明到现在,使用CRISPR/Cas系统进行了许多研究。这些研究的结果是现代遗传操作工具的发展,它允许在DNA中引入许多修饰,这可能有助于沉默特定基因的表达或通过突变或缺失等过度表达。本文描述了利用第二类系统CRISPR/Cas9进行基因操作的方法的应用,以及该方法的优点及其相对于以往使用的基因工程工具的优势,以及其局限性和缺点,这极大地限制了其应用的可能性。还介绍了该方法的潜在用途以及使用CRSPR/Cas9进行的研究。
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CRISPR/Cas as the intelligent immune system of bacteria and archea

The invention of CRISPR is considered to be one of the most breakthrough discoveries in recent years in the history of biology, biotechnology, medicine, as well as the pharmaceutical and agricultural industries. The methods developed using CRISPR create new, previously unattainable possibilities that can significantly improve the quality of life. From the invention of this intelligent immune system to the present day, much research has been done using the CRISPR/Cas systems. The result of these studies was the development of a modern tool for genetic manipulation, which allows for the introduction of many modifications within the DNA, which may contribute to the silencing of the expression of given genes or their overexpression through e.g. mutations or deletions. The paper describes the application of the method for genetic manipulation with the use of the second class system – CRISPR/Cas9 and the advantages of this method and its advantage over the previously used genetic engineering tools, as well as its limitations and disadvantages, which significantly limit the possibility of its application. The potential use of the method was also presented as well as the research carried out with the use of CRSPR/Cas9.

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来源期刊
Postepy biochemii
Postepy biochemii Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
36
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