The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformans

Microtubules are involved in mechanical support, cytoplasmic organization, and several cellular processes by interacting with diverse microtubule-associated proteins such as plus-end tracking proteins, motor proteins, and tubulin-folding cofactors. A number of the cytoskeleton-associated proteins (C...

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Main Authors: Li Li Wang, Kyung-Tae Lee, Kwang-Woo Jung, Dong-Gi Lee, Yong-Sun Bahn
Format: Article
Language:English
Published: Taylor & Francis Group 2018-12-01
Series:Virulence
Subjects:
Online Access:http://dx.doi.org/10.1080/21505594.2017.1423189
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spelling doaj-b8d0bf0a3e7142d2ae0792c412efefd02020-11-25T00:50:22ZengTaylor & Francis GroupVirulence2150-55942150-56082018-12-019156658410.1080/21505594.2017.14231891423189The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformansLi Li Wang0Kyung-Tae Lee1Kwang-Woo Jung2Dong-Gi Lee3Yong-Sun Bahn4College of Life Science and Biotechnology, Yonsei UniversityCollege of Life Science and Biotechnology, Yonsei UniversityResearch Division for Biotechnology, Korea Atomic Energy Research InstituteCollege of Life Science and Biotechnology, Yonsei UniversityCollege of Life Science and Biotechnology, Yonsei UniversityMicrotubules are involved in mechanical support, cytoplasmic organization, and several cellular processes by interacting with diverse microtubule-associated proteins such as plus-end tracking proteins, motor proteins, and tubulin-folding cofactors. A number of the cytoskeleton-associated proteins (CAPs) contain the CAP-glycine-rich (CAP-Gly) domain, which is evolutionarily conserved and generally considered to bind to α-tubulin to regulate the function of microtubules. However, there has been a dearth of research on CAP-Gly proteins in fungal pathogens, including Cryptococcus neoformans, which is a global cause of fatal meningoencephalitis in immunocompromised patients. In this study, we identified five CAP-Gly protein-encoding genes in C. neoformans. Among these, Cgp1 encoded by CNAG_06352 has a unique domain structure containing CAP-Gly, SPEC, and Spc7 domains that is not orthologous to CAPs in other eukaryotes. Supporting the role of Cgp1 in microtubule-related function, we demonstrate that deletion or overexpression of CGP1 alters cellular susceptibility to thiabendazole, a microtubule destabilizer and that Cgp1 is co-localized with cytoplasmic microtubules. Related to the cellular function of microtubules, Cgp1 governs the maintenance of membrane stability and genotoxic stress responses. Deletion of CGP1 also reduces production of melanin pigment and attenuates the virulence of C. neoformans. Furthermore, we demonstrate that Cgp1 uniquely regulates the sexual differentiation of C. neoformans with distinct roles in the early and late stage of mating. Domain analysis revealed that the CAP-Gly domain plays a major role in all Cgp1 functions examined. In conclusion, this novel CAP-Gly protein, Cgp1, has pleotropic roles in regulating growth, stress responses, differentiation, and virulence in C. neoformans.http://dx.doi.org/10.1080/21505594.2017.1423189Bik1CAP-glycinehuman fungal pathogenmeningoencephalitisSPECSpc7tubulin
collection DOAJ
language English
format Article
sources DOAJ
author Li Li Wang
Kyung-Tae Lee
Kwang-Woo Jung
Dong-Gi Lee
Yong-Sun Bahn
spellingShingle Li Li Wang
Kyung-Tae Lee
Kwang-Woo Jung
Dong-Gi Lee
Yong-Sun Bahn
The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformans
Virulence
Bik1
CAP-glycine
human fungal pathogen
meningoencephalitis
SPEC
Spc7
tubulin
author_facet Li Li Wang
Kyung-Tae Lee
Kwang-Woo Jung
Dong-Gi Lee
Yong-Sun Bahn
author_sort Li Li Wang
title The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformans
title_short The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformans
title_full The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformans
title_fullStr The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformans
title_full_unstemmed The novel microtubule-associated CAP-glycine protein Cgp1 governs growth, differentiation, and virulence of Cryptococcus neoformans
title_sort novel microtubule-associated cap-glycine protein cgp1 governs growth, differentiation, and virulence of cryptococcus neoformans
publisher Taylor & Francis Group
series Virulence
issn 2150-5594
2150-5608
publishDate 2018-12-01
description Microtubules are involved in mechanical support, cytoplasmic organization, and several cellular processes by interacting with diverse microtubule-associated proteins such as plus-end tracking proteins, motor proteins, and tubulin-folding cofactors. A number of the cytoskeleton-associated proteins (CAPs) contain the CAP-glycine-rich (CAP-Gly) domain, which is evolutionarily conserved and generally considered to bind to α-tubulin to regulate the function of microtubules. However, there has been a dearth of research on CAP-Gly proteins in fungal pathogens, including Cryptococcus neoformans, which is a global cause of fatal meningoencephalitis in immunocompromised patients. In this study, we identified five CAP-Gly protein-encoding genes in C. neoformans. Among these, Cgp1 encoded by CNAG_06352 has a unique domain structure containing CAP-Gly, SPEC, and Spc7 domains that is not orthologous to CAPs in other eukaryotes. Supporting the role of Cgp1 in microtubule-related function, we demonstrate that deletion or overexpression of CGP1 alters cellular susceptibility to thiabendazole, a microtubule destabilizer and that Cgp1 is co-localized with cytoplasmic microtubules. Related to the cellular function of microtubules, Cgp1 governs the maintenance of membrane stability and genotoxic stress responses. Deletion of CGP1 also reduces production of melanin pigment and attenuates the virulence of C. neoformans. Furthermore, we demonstrate that Cgp1 uniquely regulates the sexual differentiation of C. neoformans with distinct roles in the early and late stage of mating. Domain analysis revealed that the CAP-Gly domain plays a major role in all Cgp1 functions examined. In conclusion, this novel CAP-Gly protein, Cgp1, has pleotropic roles in regulating growth, stress responses, differentiation, and virulence in C. neoformans.
topic Bik1
CAP-glycine
human fungal pathogen
meningoencephalitis
SPEC
Spc7
tubulin
url http://dx.doi.org/10.1080/21505594.2017.1423189
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