Proyectos por año
Resumen
© 2018, The Author(s). S. cerevisiae Hal3 (ScHal3) is a moonlighting protein that, is in its monomeric state, regulates the Ser/Thr protein phosphatase Ppz1, but also joins ScCab3 (and in some instances the Hal3 paralog Vhs3) to form an unusual heterotrimeric phosphopantothenoylcysteine decarboxylase (PPCDC) enzyme. PPCDC is required for CoA biosynthesis and in most eukaryotes is a homotrimeric complex with three identical catalytic sites at the trimer interfaces. However, in S. cerevisiae the heterotrimeric arrangement results in a single functional catalytic center. Importantly, the specific structural determinants that direct Hal3’s oligomeric state and those required for Ppz1 inhibition remain largely unknown. We mutagenized residues in the predicted hydrophobic core of ScHal3 (L403–L405) and the plant Arabidopsis thaliana Hal3 (AtHal3, G115–L117) oligomers and characterized their properties as PPCDC components and, for ScHal3, also as Ppz1 inhibitor. We found that in AtHal3 these changes do not affect trimerization or PPCDC function. Similarly, mutation of ScHal3 L403 has no effect. In contrast, ScHal3 L405E fails to form homotrimers, but retains the capacity to bind Cab3—explaining its ability to rescue a hal3 vhs3 synthetically lethal mutation. Remarkably, the L405E mutation decreases Hal3’s ability to interact with and to inhibit Ppz1, confirming the importance of the oligomer/monomer equilibrium in Hal3’s Ppz1 regulating function.
Idioma original | Inglés |
---|---|
Número de artículo | 14701 |
Publicación | Scientific Reports |
Volumen | 8 |
DOI | |
Estado | Publicada - 1 dic 2018 |
Huella
Profundice en los temas de investigación de 'Mutations at the hydrophobic core affect Hal3 trimer stability, reducing its Ppz1 inhibitory capacity but not its PPCDC moonlighting function'. En conjunto forman una huella única.Proyectos
- 2 Terminado
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Elucidación de la función y la regulación del sistema de fosfatasas fúngicas atípicas ppz1/hal3
Casamayor Gracia, A. J. (Investigador/a Principal 2), Ariño Carmona, J. (Principal Investigator) & Molero Merinero, C. (Colaborador/a)
Ministerio de Economía y Competitividad (MINECO)
1/01/18 → 30/09/21
Proyecto: Proyectos y Ayudas de Investigación
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Exploración de los mecanismos de homeostasis de cationes monovalentes como nueva diana antifúngica
Ariño Carmona, J. (Principal Investigator), Barceló Vernet, A. (Colaborador/a), Calafi Pascual, C. A. (Colaborador/a), Lopez Malo, M. (Colaborador/a) & Casamayor Gracia, A. J. (Investigador/a)
Ministerio de Economía y Competitividad (MINECO)
1/01/15 → 30/06/18
Proyecto: Proyectos y Ayudas de Investigación