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Gene drive inhibition by the anti-CRISPR proteins AcrIIA2 and AcrIIA4 in Saccharomyces cerevisiae

机译:基因驱动抗克里普尔蛋白acria2和acria4在<斜体>酿酒酵母中的抑制作用

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Given the widespread use and application of the clustered regularly interspaced short palindromic repeats (CRISPR)/Cas gene editing system across many fields, a major focus has been the development, engineering and discovery of molecular means to precisely control and regulate the enzymatic function of the Cas9 nuclease. To date, a variety of Cas9 variants and fusion assemblies have been proposed to provide temporally inducible and spatially controlled editing functions. The discovery of a new class of ‘anti-CRISPR’ proteins, evolved from bacteriophage in response to the prokaryotic nuclease-based immune system, provides a new platform for control over genomic editing. One Cas9-based application of interest to the field of population control is that of the ‘gene drive’. Here, we demonstrate use of the AcrIIA2 and AcrIIA4 proteins to inhibit active gene drive systems in budding yeast. Furthermore, an unbiased mutational scan reveals that titration of Cas9 inhibition may be possible by modification of the anti-CRISPR primary sequence.
机译:鉴于在许多领域的广泛使用和施加聚类定期间隙的短语重复(CRISPR)/ CAS基因编辑系统,主要重点是分子手段的开发,工程和发现,精确控制和调节酶促功能Cas9核酸酶。迄今为止,已经提出了各种CAS9变型和融合组件以提供时间上诱导和空间控制的编辑功能。发现新类别的“抗克切者”蛋白质响应原基核酸酶的免疫系统而从噬菌体演变,为对基因组编辑的控制提供了新的平台。基于CAS9的人口控制的应用程序是“基因驱动”的应用。在这里,我们证明了acria2和acria4蛋白的用途抑制萌芽酵母中的活性基因驱动系统。此外,无偏突变扫描显示CAS9抑制的滴定可以通过修饰抗克隆伯序列来实现。

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