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The Protein Kinase Ire1 Impacts Pathogenicity of Candida Albicans by Regulating Homeostatic Adaptation to Endoplasmic Reticulum Stress

Overview
Journal Cell Microbiol
Publisher Wiley
Date 2021 Jan 6
PMID 33403715
Citations 19
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Abstract

The unfolded protein response (UPR), crucial for the maintenance of endoplasmic reticulum (ER) homeostasis, is tied to the regulation of multiple cellular processes in pathogenic fungi. Here, we show that Candida albicans relies on an ER-resident protein, inositol-requiring enzyme 1 (Ire1) for sensing ER stress and activating the UPR. Compromised Ire1 function impacts cellular processes that are dependent on functional secretory homeostasis, as inferred from transcriptional profiling. Concordantly, an Ire1-mutant strain exhibits pleiotropic roles in ER stress response, antifungal tolerance, cell wall regulation and virulence-related traits. Hac1 is the downstream target of C. albicans Ire1 as it initiates the unconventional splicing of the 19 bp intron from HAC1 mRNA during tunicamycin-induced ER stress. Ire1 also activates the UPR in response to perturbations in cell wall integrity and cell membrane homeostasis in a manner that does not necessitate the splicing of HAC1 mRNA. Furthermore, the Ire1-mutant strain is severely defective in hyphal morphogenesis and biofilm formation as well as in establishing a successful infection in vivo. Together, these findings demonstrate that C. albicans Ire1 functions to regulate traits that are essential for virulence and suggest its importance in responding to multiple stresses, thus integrating various stress signals to maintain ER homeostasis.

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References
1.
Cox J, Walter P . A novel mechanism for regulating activity of a transcription factor that controls the unfolded protein response. Cell. 1996; 87(3):391-404. DOI: 10.1016/s0092-8674(00)81360-4. View

2.
Chen C, Noble S . Post-transcriptional regulation of the Sef1 transcription factor controls the virulence of Candida albicans in its mammalian host. PLoS Pathog. 2012; 8(11):e1002956. PMC: 3486892. DOI: 10.1371/journal.ppat.1002956. View

3.
Sidrauski C, Walter P . The transmembrane kinase Ire1p is a site-specific endonuclease that initiates mRNA splicing in the unfolded protein response. Cell. 1997; 90(6):1031-9. DOI: 10.1016/s0092-8674(00)80369-4. View

4.
Wang S, Kaufman R . The impact of the unfolded protein response on human disease. J Cell Biol. 2012; 197(7):857-67. PMC: 3384412. DOI: 10.1083/jcb.201110131. View

5.
Gillum A, Tsay E, Kirsch D . Isolation of the Candida albicans gene for orotidine-5'-phosphate decarboxylase by complementation of S. cerevisiae ura3 and E. coli pyrF mutations. Mol Gen Genet. 1984; 198(2):179-82. DOI: 10.1007/BF00328721. View