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Analysis of Noncanonical Calcium-Dependent Protein Kinases in Toxoplasma gondii by Targeted Gene Deletion Using CRISPR/Cas9

机译:使用CRISPR / Cas9靶向基因缺失分析弓形虫中非规范性钙依赖性蛋白激酶

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摘要

Calcium-dependent protein kinases (CDPKs) are expanded in apicomplexan parasites, especially in Toxoplasma gondii where 14 separate genes encoding these enzymes are found. Although previous studies have shown that several CDPKs play a role in controlling invasion, egress, and cell division in T. gondii, the roles of most of these genes are unexplored. Here we developed a more efficient method for gene disruption using CRISPR (clustered regularly interspaced short palindromic repeats)/Cas9 (CRISPR-associated protein 9) that was modified to completely delete large, multiexonic genes from the genome and to allow serial replacement by recycling of the selectable marker using Cre-loxP. Using this system, we generated a total of 24 mutants in type 1 and 2 genetic backgrounds to ascertain the functions of noncanonical CDPKs. Remarkably, although we were able to confirm the essentiality of CDPK1 and CDPK7, the majority of CDPKs had no discernible phenotype for growth in vitro or infection in the mouse model. The exception to this was CDPK6, loss of which leads to reduced plaquing, fitness defect in a competition assay, and reduced tissue cyst formation in chronically infected mice. Our findings highlight the utility of CRISPR/Cas9 for rapid serial gene deletion and also suggest that additional models are needed to reveal the functions of many genes in T. gondii.
机译:钙依赖性蛋白激酶(CDPKs)在apicomplexan寄生虫中扩展,尤其是在弓形虫中,那里发现了14种编码这些酶的独立基因。尽管以前的研究表明,几种CDPK在控制弓形虫的侵袭,外出和细胞分裂中起作用,但大多数这些基因的作用尚未探索。在这里,我们开发了一种更有效的基因破坏方法,即使用CRISPR(聚类的规则间隔的短回文重复序列)/ Cas9(CRISPR相关蛋白9)进行了修饰,可以从基因组中完全删除大型的多外显子基因,并可以通过回收利用来进行序列替换使用Cre-loxP选择标记。使用该系统,我们在1型和2型遗传背景下生成了总共24个突变体,以确定非规范CDPK的功能。值得注意的是,尽管我们能够确认CDPK1和CDPK7的必要性,但大多数CDPK在体外生长或在小鼠模型中没有明显的表型。 CDPK6除外,它的丢失导致斑块减少,竞争测定中的适应性缺陷以及慢性感染小鼠的组织囊肿形成减少。我们的发现突出了CRISPR / Cas9在快速序列基因缺失中的实用性,并且还建议需要其他模型来揭示弓形虫中许多基因的功能。

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