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Cas4 核酸酶可实现 CRISPR 间隔区的特异性整合。

Cas4 Nucleases Can Effect Specific Integration of CRISPR Spacers.

机构信息

State Key Laboratory of Agricultural Microbiology, College of Life Science and Technology, Huazhong Agricultural University, Wuhan, Hubei, People's Republic of China.

State Key Laboratory of Agricultural Microbiology, College of Life Science and Technology, Huazhong Agricultural University, Wuhan, Hubei, People's Republic of China

出版信息

J Bacteriol. 2019 May 22;201(12). doi: 10.1128/JB.00747-18. Print 2019 Jun 15.

Abstract

Clustered regularly interspaced short palindromic repeat (CRISPR)-Cas systems incorporate short DNA fragments from invasive genetic elements into host CRISPR arrays in order to generate host immunity. Recently, we demonstrated that the Csa3a regulator protein triggers CCN protospacer-adjacent motif (PAM)-dependent CRISPR spacer acquisition in the subtype I-A CRISPR-Cas system of However, the mechanisms underlying specific protospacer selection and spacer insertion remained unclear. Here, we demonstrate that two Cas4 family proteins (Cas4 and Csa1) have essential roles (i) in recognizing the 5' PAM and 3' nucleotide motif of protospacers and (ii) in determining both the spacer length and its orientation. Furthermore, we identify amino acid residues of the Cas4 proteins that facilitate these functions. Overexpression of the Cas4 and Csa1 proteins, and also that of an archaeal virus-encoded Cas4 protein, resulted in strongly reduced adaptation efficiency, and the former proteins yielded a high incidence of PAM-dependent atypical spacer integration or of PAM-independent spacer integration. We further demonstrated that in plasmid challenge experiments, overexpressed Cas4-mediated defective spacer acquisition in turn potentially enabled targeted DNA to escape subtype I-A CRISPR-Cas interference. In summary, these results define the specific involvement of diverse Cas4 proteins in CRISPR spacer acquisition. Furthermore, we provide support for an anti-CRISPR role for virus-encoded Cas4 proteins that involves compromising CRISPR-Cas interference activity by hindering spacer acquisition. The Cas4 family endonuclease is an essential component of the adaptation module in many variants of CRISPR-Cas adaptive immunity systems. The REY15A carries two genes ( and ) linked to the CRISPR arrays. Here, we demonstrate that Cas4 and Csa1 are essential to CRISPR spacer acquisition in this organism. Both proteins specify the upstream and downstream conserved nucleotide motifs of the protospacers and define the spacer length and orientation in the acquisition process. Conserved amino acid residues, in addition to those recently reported, were identified to be important for these functions. More importantly, overexpression of the viral Cas4 abolished spacer acquisition, providing support for an anti-CRISPR role for virus-encoded Cas4 proteins that inhibit spacer acquisition.

摘要

成簇规律间隔短回文重复(CRISPR)-Cas 系统将来自入侵遗传元件的短 DNA 片段整合到宿主 CRISPR 阵列中,以产生宿主免疫。最近,我们证明了 Csa3a 调节蛋白触发了 I-A 型 CRISPR-Cas 系统中 CCN 原间隔邻近基序(PAM)依赖性 CRISPR 间隔体的获得。然而,特定原间隔体选择和间隔体插入的机制仍不清楚。在这里,我们证明了两种 Cas4 家族蛋白(Cas4 和 Csa1)在识别原间隔体的 5' PAM 和 3'核苷酸基序以及确定间隔体长度和方向方面具有重要作用。此外,我们确定了 Cas4 蛋白的氨基酸残基,这些残基有助于这些功能。Cas4 和 Csa1 蛋白的过表达,以及一种古细菌病毒编码的 Cas4 蛋白的过表达,导致适应性效率大大降低,而且前两种蛋白导致 PAM 依赖性非典型间隔体整合或 PAM 非依赖性间隔体整合的发生率很高。我们进一步证明,在质粒挑战实验中,过表达的 Cas4 介导的有缺陷的间隔体获取反过来可能使靶向 DNA 逃避 I-A 型 CRISPR-Cas 干扰。总之,这些结果定义了不同的 Cas4 蛋白在 CRISPR 间隔体获取中的特定参与。此外,我们还支持病毒编码的 Cas4 蛋白的反 CRISPR 作用,该作用涉及通过阻碍间隔体获取来削弱 CRISPR-Cas 干扰活性。Cas4 家族内切酶是许多 CRISPR-Cas 适应性免疫系统变体中适应模块的重要组成部分。REY15A 携带两个与 CRISPR 阵列相连的 基因(和)。在这里,我们证明 Cas4 和 Csa1 对该生物中 CRISPR 间隔体的获取是必不可少的。这两种蛋白指定原间隔体的上下游保守核苷酸基序,并在获取过程中定义间隔体的长度和方向。除了最近报道的那些,还确定了保守氨基酸残基对这些功能很重要。更重要的是,病毒 Cas4 的过表达消除了间隔体的获取,为病毒编码的 Cas4 蛋白抑制间隔体获取的反 CRISPR 作用提供了支持。

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