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An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist

cGMP signaling is one of the master regulators of diverse functions in eukaryotes; however, its architecture and functioning in protozoans remain poorly understood. Herein, we report an exclusive guanylate cyclase coupled with N-terminal P4-ATPase in a common parasitic protist, Toxoplasma gondii. Th...

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Autores principales: Günay-Esiyok, Özlem, Scheib, Ulrike, Noll, Matthias, Gupta, Nishith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6592433/
https://www.ncbi.nlm.nih.gov/pubmed/31235476
http://dx.doi.org/10.26508/lsa.201900402
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author Günay-Esiyok, Özlem
Scheib, Ulrike
Noll, Matthias
Gupta, Nishith
author_facet Günay-Esiyok, Özlem
Scheib, Ulrike
Noll, Matthias
Gupta, Nishith
author_sort Günay-Esiyok, Özlem
collection PubMed
description cGMP signaling is one of the master regulators of diverse functions in eukaryotes; however, its architecture and functioning in protozoans remain poorly understood. Herein, we report an exclusive guanylate cyclase coupled with N-terminal P4-ATPase in a common parasitic protist, Toxoplasma gondii. This bulky protein (477-kD), termed TgATPase(P)-GC to fairly reflect its envisaged multifunctionality, localizes in the plasma membrane at the apical pole of the parasite, whereas the corresponding cGMP-dependent protein kinase (TgPKG) is distributed in the cytomembranes. TgATPase(P)-GC is refractory to genetic deletion, and its CRISPR/Cas9–assisted disruption aborts the lytic cycle of T. gondii. Besides, Cre/loxP–mediated knockdown of TgATPase(P)-GC reduced the synthesis of cGMP and inhibited the parasite growth due to impairments in the motility-dependent egress and invasion events. Equally, repression of TgPKG by a similar strategy recapitulated phenotypes of the TgATPase(P)-GC–depleted mutant. Notably, despite a temporally restricted function, TgATPase(P)-GC is expressed constitutively throughout the lytic cycle, entailing a post-translational regulation of cGMP signaling. Not least, the occurrence of TgATPase(P)-GC orthologs in several other alveolates implies a divergent functional repurposing of cGMP signaling in protozoans, and offers an excellent drug target against the parasitic protists.
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spelling pubmed-65924332019-06-28 An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist Günay-Esiyok, Özlem Scheib, Ulrike Noll, Matthias Gupta, Nishith Life Sci Alliance Research Articles cGMP signaling is one of the master regulators of diverse functions in eukaryotes; however, its architecture and functioning in protozoans remain poorly understood. Herein, we report an exclusive guanylate cyclase coupled with N-terminal P4-ATPase in a common parasitic protist, Toxoplasma gondii. This bulky protein (477-kD), termed TgATPase(P)-GC to fairly reflect its envisaged multifunctionality, localizes in the plasma membrane at the apical pole of the parasite, whereas the corresponding cGMP-dependent protein kinase (TgPKG) is distributed in the cytomembranes. TgATPase(P)-GC is refractory to genetic deletion, and its CRISPR/Cas9–assisted disruption aborts the lytic cycle of T. gondii. Besides, Cre/loxP–mediated knockdown of TgATPase(P)-GC reduced the synthesis of cGMP and inhibited the parasite growth due to impairments in the motility-dependent egress and invasion events. Equally, repression of TgPKG by a similar strategy recapitulated phenotypes of the TgATPase(P)-GC–depleted mutant. Notably, despite a temporally restricted function, TgATPase(P)-GC is expressed constitutively throughout the lytic cycle, entailing a post-translational regulation of cGMP signaling. Not least, the occurrence of TgATPase(P)-GC orthologs in several other alveolates implies a divergent functional repurposing of cGMP signaling in protozoans, and offers an excellent drug target against the parasitic protists. Life Science Alliance LLC 2019-06-24 /pmc/articles/PMC6592433/ /pubmed/31235476 http://dx.doi.org/10.26508/lsa.201900402 Text en © 2019 Günay-Esiyok et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Günay-Esiyok, Özlem
Scheib, Ulrike
Noll, Matthias
Gupta, Nishith
An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist
title An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist
title_full An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist
title_fullStr An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist
title_full_unstemmed An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist
title_short An unusual and vital protein with guanylate cyclase and P4-ATPase domains in a pathogenic protist
title_sort unusual and vital protein with guanylate cyclase and p4-atpase domains in a pathogenic protist
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6592433/
https://www.ncbi.nlm.nih.gov/pubmed/31235476
http://dx.doi.org/10.26508/lsa.201900402
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