The spliceosome impacts morphogenesis in the human fungal pathogen Candida albicans

被引:1
作者
Lash, Emma [1 ]
Maufrais, Corinne [2 ,3 ]
Janbon, Guilhem [2 ]
Robbins, Nicole [1 ]
Herzel, Lydia [4 ]
Cowen, Leah E. [1 ]
机构
[1] Univ Toronto, Dept Mol Genet, Toronto, ON, Canada
[2] Univ Paris Cite, Inst Pasteur, Unite Biol, ARN Pathogenes Fong, Paris, France
[3] Univ Paris Cite, Inst Pasteur, HUB Bioinformat & Biostat, Paris, France
[4] Free Univ Berlin, Inst Chem & Biochem, Berlin, Germany
来源
MBIO | 2024年 / 15卷 / 08期
基金
加拿大健康研究院;
关键词
Candida albicans; fungal pathogen; morphogenesis; temperature; spliceosome; intron; filamentation; RNA-BINDING PROTEIN; FILAMENTOUS GROWTH; GENE-EXPRESSION; GENOME DATABASE; IDENTIFICATION; VISUALIZATION; VIRULENCE;
D O I
10.1128/mbio.01535-24
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
At human body temperature, the fungal pathogen Candida albicans can transition from yeast to filamentous morphologies in response to host-relevant cues. Additionally, elevated temperatures encountered during febrile episodes can independently induce C. albicans filamentation. However, the underlying genetic pathways governing this developmental transition in response to elevated temperatures remain largely unexplored. Here, we conducted a functional genomic screen to unravel the genetic mechanisms orchestrating C. albicans filamentation specifically in response to elevated temperature, implicating 45% of genes associated with the spliceosome or pre-mRNA splicing in this process. Employing RNA-Seq to elucidate the relationship between mRNA splicing and filamentation, we identified greater levels of intron retention in filaments compared to yeast, which correlated with reduced expression of the affected genes. Intriguingly, homozygous deletion of a gene encoding a spliceosome component important for filamentation (PRP19) caused even greater levels of intron retention compared with wild type and displayed globally dysregulated gene expression. This suggests that intron retention is a mechanism for fine-tuning gene expression during filamentation, with perturbations of the spliceosome exacerbating this process and blocking filamentation. Overall, this study unveils a novel biological process governing C. albicans filamentation, providing new insights into the complex regulation of this key virulence trait. IMPORTANCE Fungal pathogens such as Candida albicans can cause serious infections with high mortality rates in immunocompromised individuals. When C. albicans is grown at temperatures encountered during human febrile episodes, yeast cells undergo a transition to filamentous cells, and this process is key to its virulence. Here, we expanded our understanding of how C. albicans undergoes filamentation in response to elevated temperature and identified many genes involved in mRNA splicing that positively regulate filamentation. Through transcriptome analyses, we found that intron retention is a mechanism for fine-tuning gene expression in filaments, and perturbation of the spliceosome exacerbates intron retention and alters gene expression substantially, causing a block in filamentation. This work adds to the growing body of knowledge on the role of introns in fungi and provides new insights into the cellular processes that regulate a key virulence trait in C. albicans.
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页数:30
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共 70 条
[41]   Competition between Pre-mRNAs for the Splicing Machinery Drives Global Regulation of Splicing [J].
Munding, Elizabeth M. ;
Shiue, Lily ;
Katzman, Sol ;
Donohue, John Paul ;
Ares, Manuel, Jr. .
MOLECULAR CELL, 2013, 51 (03) :338-348
[42]   Global translational landscape of the Candida albicans morphological transition [J].
Mundodi, Vasanthakrishna ;
Choudhary, Saket ;
Smith, Andrew D. ;
Kadosh, David .
G3-GENES GENOMES GENETICS, 2021, 11 (02)
[43]   Identification of Genomewide Alternative Splicing Events in Sequential, Isogenic Clinical Isolates of Candida albicans Reveals a Novel Mechanism of Drug Resistance and Tolerance to Cellular Stresses [J].
Muzafar, Suraya ;
Sharma, Ravi Datta ;
Shah, Abdul Haseeb ;
Gaur, Naseem A. ;
Dasgupta, Ujjaini ;
Chauhan, Neeraj ;
Prasad, Rajendra .
MSPHERE, 2020, 5 (04)
[44]   Candida albicans cell-type switching and functional plasticity in the mammalian host [J].
Noble, Suzanne M. ;
Gianetti, Brittany A. ;
Witchley, Jessica N. .
NATURE REVIEWS MICROBIOLOGY, 2017, 15 (02) :96-108
[45]   Systematic screens of a Candida albicans homozygous deletion library decouple morphogenetic switching and pathogenicity [J].
Noble, Suzanne M. ;
French, Sarah ;
Kohn, Lisa A. ;
Chen, Victoria ;
Johnson, Alexander D. .
NATURE GENETICS, 2010, 42 (07) :590-U166
[46]   The Hsp90 Chaperone Network Modulates Candida Virulence Traits [J].
O'Meara, Teresa R. ;
Robbins, Nicole ;
Cowen, Leah E. .
TRENDS IN MICROBIOLOGY, 2017, 25 (10) :809-819
[47]   Global analysis of fungal morphology exposes mechanisms of host cell escape [J].
O'Meara, Teresa R. ;
Veri, Amanda O. ;
Ketela, Troy ;
Jiang, Bo ;
Roemer, Terry ;
Cowen, Leah E. .
NATURE COMMUNICATIONS, 2015, 6
[48]   Introns are mediators of cell response to starvation [J].
Parenteau, Julie ;
Maignon, Laurine ;
Berthoumieux, Melodie ;
Catala, Mathieu ;
Gagnon, Vanessa ;
Abou Elela, Sherif .
NATURE, 2019, 565 (7741) :612-+
[49]   Identification of alternative splicing regulators by RNA interference in Drosphila [J].
Park, JW ;
Parisky, K ;
Celotto, AM ;
Reenan, RA ;
Graveley, BR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (45) :15974-15979
[50]   A gene associated with filamentous growth in Ophiostoma novo-ulmi has RNA-binding motifs and is similar to a yeast gene involved in mRNA splicing [J].
Pereira, V ;
Royer, JC ;
Hintz, WE ;
Field, D ;
Bowden, C ;
Kokurewicz, K ;
Hubbes, M ;
Horgen, PA .
CURRENT GENETICS, 2000, 37 (02) :94-103