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Unraveling the cryptic functions of mitogen-activated protein kinases Cpk2 and Mpk2 in Cryptococcus neoformans
Yu-Byeong Jang1, Jin-Young Kim2, Yong-Sun Bahn1
1Department of Biotechnology, College of Life Science and Biotechnology, Yonsei University, Seoul, South Korea.
Abstract:
Mitogen-activated protein kinase (MAPK) pathways are fundamental to the regulation of biological processes in eukaryotic organisms. The basidiomycete Cryptococcus neoformans, known for causing fungal meningitis worldwide, possesses five MAPKs. Among these, Cpk1, Hog1, and Mpk1 have established roles in sexual reproduction, stress responses, and cell wall integrity. However, the roles of Cpk2 and Mpk2 are less understood. Our study elucidates the functional interplay between the Cpk1/Cpk2 and Mpk1/Mpk2 MAPK pathways in C. neoformans. We discovered that CPK2 overexpression compensates for cpk1Δ mating deficiencies via the Mat2 transcription factor, revealing functional redundancy between Cpk1 and Cpk2. We also found that Mpk2 is phosphorylated in response to cell wall stress, a process regulated by the MAPK kinase (MAP2K) Mkk2 and MAP2K kinases (MAP3Ks) Ssk2 and Ste11. Overexpression of MPK2 partially restores cell wall integrity in mpk1Δ by influencing key cell wall components, such as chitin and the polysaccharide capsule. Contrarily, MPK2 overexpression cannot restore thermotolerance and cell membrane integrity in mpk1Δ. These results suggest that Mpk1 and Mpk2 have redundant and opposing roles in the cellular response to cell wall and membrane stresses. Most notably, the dual deletion of MPK1 and MPK2 restores wild-type mating efficiency in cpk1Δ mutants via upregulation of the mating-regulating transcription factors MAT2 and ZNF2, suggesting that the Mpk1 and Mpk2 cooperate to negatively regulate the pheromone-responsive Cpk1 MAPK pathway. Our research collectively underscores a sophisticated regulatory network of cryptococcal MAPK signaling pathways that intricately govern sexual reproduction and cell wall integrity, thereby controlling fungal development and pathogenicity.IMPORTANCEIn the realm of fungal biology, our study on Cryptococcus neoformans offers pivotal insights into the roles of specific proteins called mitogen-activated protein kinases (MAPKs). Here, we discovered the cryptic functions of Cpk2 and Mpk2, two MAPKs previously overshadowed by their dominant counterparts Cpk1 and Mpk1, respectively. Our findings reveal that these "underdog" proteins are not just backup players; they play crucial roles in vital processes like mating and cell wall maintenance in C. neoformans. Their ability to step in and compensate when their dominant counterparts are absent showcases the adaptability of C. neoformans. This newfound understanding not only enriches our knowledge of fungal MAPK mechanisms but also underscores the intricate balance and interplay of proteins in ensuring the organism's survival and adaptability.
Insights
Mitogen-activated protein kinase (MAPK) pathways in Cryptococcus neoformans show functional redundancy. Cpk2 compensates for Cpk1, and Mpk2 has opposing roles to Mpk1 in stress responses, revealing complex MAPK regulation.
Area of Science:
- Fungal biology
- Molecular biology
- Cellular signaling
Background:
- Mitogen-activated protein kinase (MAPK) pathways regulate essential biological processes in eukaryotes.
- Cryptococcus neoformans, a fungal pathogen, has five MAPKs, with Cpk1, Hog1, and Mpk1 roles established, but Cpk2 and Mpk2 functions are less understood.
Purpose of the Study:
- To elucidate the functional interplay between Cpk1/Cpk2 and Mpk1/Mpk2 MAPK pathways in Cryptococcus neoformans.
- To understand the roles of Cpk2 and Mpk2 in fungal sexual reproduction and stress responses.
Main Methods:
- Genetic manipulation including gene overexpression (CPK2, MPK2) and deletion (cpk1Δ, mpk1Δ, mpk1Δ mpk2Δ).
- Analysis of mating efficiency, cell wall integrity (chitin, capsule), thermotolerance, and cell membrane integrity.
- Investigated phosphorylation of Mpk2 and regulation by upstream MAP2Ks and MAP3Ks.
Main Results:
- CPK2 overexpression rescues cpk1Δ mating defects, indicating functional redundancy between Cpk1 and Cpk2.
- Mpk2 is phosphorylated upon cell wall stress, regulated by Mkk2, Ssk2, and Ste11.
- MPK2 overexpression partially restores cell wall integrity in mpk1Δ but not thermotolerance or membrane integrity, suggesting opposing roles for Mpk1 and Mpk2.
- Dual deletion of MPK1 and MPK2 restores mating efficiency in cpk1Δ mutants by upregulating MAT2 and ZNF2, indicating Mpk1/Mpk2 negatively regulate Cpk1 pathway.
Conclusions:
- Cpk1 and Cpk2 exhibit functional redundancy in mating, while Mpk1 and Mpk2 display both redundant and opposing roles in stress response.
- Mpk1 and Mpk2 cooperate to negatively regulate the Cpk1 MAPK pathway involved in mating.
- The study reveals a sophisticated MAPK signaling network in C. neoformans governing sexual reproduction and cell wall integrity, impacting fungal development and pathogenicity.
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