Department of Molecular and Cell Biology, School of Natural Sciences, University of California, Merced, California, USA.
Quantitative and Systems Biology Graduate Program, University of California, Mercedgrid.266096.d, California, USA.
Microbiol Spectr. 2021 Dec 22;9(3):e0182021. doi: 10.1128/Spectrum.01820-21. Epub 2021 Nov 3.
Candida auris is a multidrug-resistant human fungal pathogen that has recently emerged worldwide. It can cause life-threatening disseminated infections in humans, with mortality rates upwards of 50%. The molecular mechanisms underlying its multidrug resistance and pathogenic properties are largely unknown. Few methods exist for genome editing in C. auris, all of which rely on selectable markers that limit the number of modifications that can be made. Here, we present a markerless CRISPR/Cas9-mediated genome editing system in C. auris. Using this system, we successfully deleted genes of interest and subsequently reconstituted them at their native loci in isolates across all five C. auris clades. This system also enabled us to introduce precision genome edits to create translational fusions and single point mutations. Using Cas5 as a test case for this system, we discovered a conserved role for Cas5 in the caspofungin response between Candida albicans and C. auris. Overall, the development of a system for precise and facile genome editing in C. auris that can allow edits to be made in a high-throughput manner is a major step forward in improving our understanding of this important human fungal pathogen. Candida auris is a recently emerged multidrug-resistant fungal pathogen capable of causing life-threatening systemic infections in humans. Few tools are available for genome editing in C. auris. Here, we present a markerless genome editing system for C. auris that relies on CRISPR/Cas9 technology and works to modify the genomes of all known C. auris clades. Using this system, we discovered a conserved role for Cas5 in the caspofungin response between C. albicans and C. auris. Overall, the development of a system for facile genome editing in C. auris is a major step forward in improving our understanding of this important human fungal pathogen.
耳念珠菌是一种新近出现的抗多种药物的人类真菌病原体,已在全球范围内出现。它可导致人类致命性播散性感染,死亡率超过 50%。其多重耐药性和致病性的分子机制在很大程度上尚不清楚。目前在耳念珠菌中进行基因组编辑的方法很少,所有方法都依赖于选择性标记,这限制了可以进行的修饰数量。在这里,我们提出了一种在耳念珠菌中无标记的 CRISPR/Cas9 介导的基因组编辑系统。使用该系统,我们成功删除了感兴趣的基因,并随后在所有五个耳念珠菌谱系的分离株中在其天然基因座上重建了它们。该系统还使我们能够进行精确的基因组编辑,以创建翻译融合和单点突变。我们使用 Cas5 作为该系统的测试案例,发现 Cas5 在两性霉素 B 和棘白菌素类药物(如卡泊芬净)的反应中具有保守作用。总的来说,开发一种在耳念珠菌中进行精确和简便的基因组编辑的系统,能够以高通量的方式进行编辑,是在提高我们对这种重要的人类真菌病原体的理解方面迈出的重要一步。