Genome-wide functional analysis of phosphatases in the pathogenic fungus Cryptococcus neoformans

  • Jin, Jae-Hyung; 
  • Lee, Kyung-Tae; 
  • Hong, Joohyeon; 
  • Lee, Dongpil; 
  • Jang, Eun-Ha; 
  • ... Kang, Hyun Ah; 
  • 외 26명
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초록

Phosphatases, together with kinases and transcription factors, are key components in cellular signalling networks. Here, we present a systematic functional analysis of the phosphatases in Cryptococcus neoformans, a fungal pathogen that causes life-threatening fungal meningoencephalitis. We analyse 230 signature-tagged mutant strains for 114 putative phosphatases under 30 distinct in vitro growth conditions, revealing at least one function for 60 of these proteins. Large-scale virulence and infectivity assays using insect and mouse models indicate roles in pathogenicity for 31 phosphatases involved in various processes such as thermotolerance, melanin and capsule production, stress responses, O-mannosylation, or retromer function. Notably, phosphatases Xpp1, Ssu72, Siw14, and Sit4 promote blood-brain barrier adhesion and crossing by C. neoformans. Together with our previous systematic studies of transcription factors and kinases, our results provide comprehensive insight into the pathobiological signalling circuitry of C. neoformans. © 2020, The Author(s).

키워드

genomic DNA; phosphatase; virulence factor; fungal protein; phosphotransferase; transcription factor; adhesion; blood; brain; fungus; genetic analysis; genome; infectivity; insect; melanin; pathogen; pathogenicity; virulence; animal cell; Article; blood brain barrier; CAC1 gene; cell adhesion; controlled study; cryptococcosis; Cryptococcus neoformans; FBP26 gene; Filobasidiella; FZC31 gene; Galleria mellonella; gene; gene deletion; gene expression; genome-wide association study; GUA1 gene; HAD1 gene; heat tolerance; high performance liquid chromatography; INP5201 gene; nonhuman; pathogenicity; phenotype; PPH3 gene; PTP2 gene; Sit4 gene; Siw14 gene; Ssu72 gene; stress; TPS2 gene; virulence; VPS29 gene; Xpp1 gene; animal; classification; cluster analysis; cryptococcosis; female; fungal genome; gene expression profiling; gene expression regulation; genetics; genome-wide association study; inbred mouse strain; metabolism; microbiology; procedures; signal transduction; Filobasidiella neoformans; Fungi; Hexapoda; Animals; Cluster Analysis; Cryptococcosis; Cryptococcus neoformans; Female; Fungal Proteins; Gene Expression Profiling; Gene Expression Regulation, Fungal; Genome, Fungal; Genome-Wide Association Study; Mice, Inbred Strains; Phosphoric Monoester Hydrolases; Phosphotransferases; Signal Transduction; Thermotolerance; Transcription Factors; Virulence
제목
Genome-wide functional analysis of phosphatases in the pathogenic fungus Cryptococcus neoformans
저자
Jin, Jae-Hyung; Lee, Kyung-Tae; Hong, Joohyeon; Lee, Dongpil; Jang, Eun-Ha; Kim, Jin-Young; Lee, Yeonseon; Lee, Seung-Heon; So, Yee-Seul ; Jung, Kwang-Woo; Lee, Dong-Gi; Jeong, Eunji; Lee, Minjae; Jang, Yu-Byeong; Choi, Yeseul; Lee, Myung Ha; Kim, Ji-Seok; Yu, Seong-Ryong; Choi, Jin-Tae; La, Jae-Won; Choi, Haneul; Kim, Sun-Woo; Seo, Kyung Jin; Lee, Yelin; Thak, Eun Jung ; Choi, Jaeyoung; Averette, Anna F.; Lee, Yong-Hwan; Heitman, Joseph; Kang, Hyun Ah; Cheong, Eunji; Bahn, Yong-Sun
DOI
10.1038/s41467-020-18028-0
발행일
2020-08
유형
Article
저널명
Nature Communications
권
11
호
1

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