Systematic functional analysis of kinases in the fungal pathogen Cryptococcus neoformans.
Kyung-Tae LeeYee-Seul SoDong-Hoon YangKwang-Woo JungJaeyoung ChoiDong-Gi LeeHyojeong KwonJuyeong JangLi Li WangSoohyun ChaGena Lee MeyersEunji JeongJae-Hyung JinYeonseon LeeJoohyeon HongSoohyun BangJe-Hyun JiGoun ParkHyo-Jeong ByunSung Woo ParkYoung-Min ParkGloria AdedoyinTaeyup KimAnna F AveretteJong-Soon ChoiJoseph HeitmanEunji CheongYong-Hwan LeeYong-Sun BahnPublished in: Nature communications (2016)
Cryptococcus neoformans is the leading cause of death by fungal meningoencephalitis; however, treatment options remain limited. Here we report the construction of 264 signature-tagged gene-deletion strains for 129 putative kinases, and examine their phenotypic traits under 30 distinct in vitro growth conditions and in two different hosts (insect larvae and mice). Clustering analysis of in vitro phenotypic traits indicates that several of these kinases have roles in known signalling pathways, and identifies hitherto uncharacterized signalling cascades. Virulence assays in the insect and mouse models provide evidence of pathogenicity-related roles for 63 kinases involved in the following biological categories: growth and cell cycle, nutrient metabolism, stress response and adaptation, cell signalling, cell polarity and morphology, vacuole trafficking, transfer RNA (tRNA) modification and other functions. Our study provides insights into the pathobiological signalling circuitry of C. neoformans and identifies potential anticryptococcal or antifungal drug targets.
Keyphrases
- genome wide
- cell cycle
- single cell
- escherichia coli
- cell therapy
- candida albicans
- cell proliferation
- aedes aegypti
- mouse model
- biofilm formation
- rna seq
- staphylococcus aureus
- pseudomonas aeruginosa
- high throughput
- stem cells
- copy number
- type diabetes
- risk assessment
- drug induced
- metabolic syndrome
- insulin resistance
- mesenchymal stem cells
- transcription factor
- skeletal muscle
- cystic fibrosis
- drosophila melanogaster