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The heterotrimeric G-protein beta subunit Gpb1 controls hyphal growth under low oxygen conditions through the protein kinase A pathway and is essential for virulence in the fungus Mucor circinelloides.

Publication ,  Journal Article
Valle-Maldonado, MI; Patiño-Medina, JA; Pérez-Arques, C; Reyes-Mares, NY; Jácome-Galarza, IE; Ortíz-Alvarado, R; Vellanki, S; Ramírez-Díaz, MI ...
Published in: Cellular microbiology
October 2020

Mucor circinelloides, a dimorphic opportunistic pathogen, expresses three heterotrimeric G-protein beta subunits (Gpb1, Gpb2 and Gpb3). The Gpb1-encoding gene is up-regulated during mycelial growth compared with that in the spore or yeast stage. gpb1 deletion mutation analysis revealed its relevance for an adequate development during the dimorphic transition and for hyphal growth under low oxygen concentrations. Infection assays in mice indicated a phenotype with considerably reduced virulence and tissue invasiveness in the deletion mutants (Δgpb1) and decreased host inflammatory response. This finding could be attributed to the reduced filamentous growth in animal tissues compared with that of the wild-type strain. Mutation in a regulatory subunit of cAMP-dependent protein kinase A (PKA) subunit (PkaR1) resulted in similar phenotypes to Δgpb1. The defects exhibited by the Δgpb1 strain were genetically suppressed by pkaR1 overexpression, indicating that the PKA pathway is controlled by Gpb1 in M. circinelloides. Moreover, during growth under low oxygen levels, cAMP levels were much higher in the Δgpb1 than in the wild-type strain, but similar to those in the ΔpkaR1 strain. These findings reveal that M. circinelloides possesses a signal transduction pathway through which the Gpb1 heterotrimeric G subunit and PkaR1 control mycelial growth in response to low oxygen levels.

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Published In

Cellular microbiology

DOI

EISSN

1462-5822

ISSN

1462-5814

Publication Date

October 2020

Volume

22

Issue

10

Start / End Page

e13236

Related Subject Headings

  • Virulence
  • Signal Transduction
  • Oxygen
  • Mycelium
  • Mutation
  • Mucor
  • Microbiology
  • Hyphae
  • Genes, Fungal
  • GTP-Binding Protein beta Subunits
 

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Valle-Maldonado, M. I., Patiño-Medina, J. A., Pérez-Arques, C., Reyes-Mares, N. Y., Jácome-Galarza, I. E., Ortíz-Alvarado, R., … Meza-Carmen, V. (2020). The heterotrimeric G-protein beta subunit Gpb1 controls hyphal growth under low oxygen conditions through the protein kinase A pathway and is essential for virulence in the fungus Mucor circinelloides. Cellular Microbiology, 22(10), e13236. https://doi.org/10.1111/cmi.13236
Valle-Maldonado, Marco Iván, José Alberto Patiño-Medina, Carlos Pérez-Arques, Nancy Yadira Reyes-Mares, Irvin Eduardo Jácome-Galarza, Rafael Ortíz-Alvarado, Sandeep Vellanki, et al. “The heterotrimeric G-protein beta subunit Gpb1 controls hyphal growth under low oxygen conditions through the protein kinase A pathway and is essential for virulence in the fungus Mucor circinelloides.Cellular Microbiology 22, no. 10 (October 2020): e13236. https://doi.org/10.1111/cmi.13236.
Valle-Maldonado MI, Patiño-Medina JA, Pérez-Arques C, Reyes-Mares NY, Jácome-Galarza IE, Ortíz-Alvarado R, et al. The heterotrimeric G-protein beta subunit Gpb1 controls hyphal growth under low oxygen conditions through the protein kinase A pathway and is essential for virulence in the fungus Mucor circinelloides. Cellular microbiology. 2020 Oct;22(10):e13236.
Valle-Maldonado, Marco Iván, et al. “The heterotrimeric G-protein beta subunit Gpb1 controls hyphal growth under low oxygen conditions through the protein kinase A pathway and is essential for virulence in the fungus Mucor circinelloides.Cellular Microbiology, vol. 22, no. 10, Oct. 2020, p. e13236. Epmc, doi:10.1111/cmi.13236.
Valle-Maldonado MI, Patiño-Medina JA, Pérez-Arques C, Reyes-Mares NY, Jácome-Galarza IE, Ortíz-Alvarado R, Vellanki S, Ramírez-Díaz MI, Lee SC, Garre V, Meza-Carmen V. The heterotrimeric G-protein beta subunit Gpb1 controls hyphal growth under low oxygen conditions through the protein kinase A pathway and is essential for virulence in the fungus Mucor circinelloides. Cellular microbiology. 2020 Oct;22(10):e13236.
Journal cover image

Published In

Cellular microbiology

DOI

EISSN

1462-5822

ISSN

1462-5814

Publication Date

October 2020

Volume

22

Issue

10

Start / End Page

e13236

Related Subject Headings

  • Virulence
  • Signal Transduction
  • Oxygen
  • Mycelium
  • Mutation
  • Mucor
  • Microbiology
  • Hyphae
  • Genes, Fungal
  • GTP-Binding Protein beta Subunits