The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii

Krueger, Amanda - Horjales, Sofía - Yang, Chunlin - Blakely, William J. - Francia, María E. - Arrizabalaga, Gustavo

Resumen:

Intracellular replication is crucial for the success of apicomplexan parasites, including Toxoplasma gondii. Therefore, essential players in parasite replication represent potential targets for drug development. We have characterized TgGSK, a glycogen synthase kinase homolog that plays an important role in Toxoplasma endodyogeny. We have shown that TgGSK has a dynamic localization that is concurrent with the cell cycle. In non-dividing parasites, this kinase is highly concentrated in the nucleus. However, during division, TgGSK displays a cytosolic localization, with concentration foci at the centrosomes, a key organelle involved in parasite division, and the basal end. Conditional knockdown of TgGSK determined that it is essential for the completion of the lytic cycle and proper parasite division. Parasites lacking endogenous protein levels of TgGSK exhibited defects in division synchronicity and the segregation of the nucleus and apicoplast into forming daughter cells. These phenotypes are associated with defects in centrosome duplication and fission. Global phosphoproteomic analysis determined TgGSK-dependent phosphorylation of RNA-processing, basal end, and centrosome proteins. Consistent with the putative regulation of RNA-processing proteins, global transcriptomic analysis suggests that TgGSK is needed for proper splicing. Finally, we show that TgGSK interacts with GCN5b, a well-characterized acetyltransferase with roles in transcriptional control. Conversely, GCN5b chemical inhibition results in specific degradation of TgGSK. Thus, these studies reveal the involvement of TgGSK in various crucial processes, including endodyogeny and splicing, and identify acetylation as a possible mechanism by which this essential kinase is regulated. Importance: While infection with the parasite Toxplasma gondii is largely asymptomatic in healthy adults, severe disease and death can result in immunocompromised individuals and in those infected congenitally. With minimal treatments for toxoplasmosis available, it is crucial to study parasite-specific processes to identify new drug targets. This study investigated the protein TgGSK, uncovering its essentiality for parasite proper division and survival. We performed an in-depth study of the functional role of this kinase. Importantly, TgGSK was shown to bear higher homology to plant proteins than its mammalian counterparts, which may allow for specific targeting of this protein.

Detalles Bibliográficos
2025
National Institutes of Health grants R01AI149766, R01DK124067, and R21AI164619 to G.A.
Pasteur Network, G4 grant
FOCEM (MERCOSUR 645 Structural Convergence Fund), COF 03/11. M.E.F.
Toxoplasma
quinasas
división celular
Ciencias Naturales y Exactas
Ciencias Biológicas
Biología Celular, Microbiología
Inglés
Institut Pasteur de Montevideo
IPMON en REDI
https://hdl.handle.net/20.500.12381/4013
Acceso abierto
Reconocimiento 4.0 Internacional. (CC BY)
_version_ 1878287791280881664
author Krueger, Amanda
author2 Horjales, Sofía
Yang, Chunlin
Blakely, William J.
Francia, María E.
Arrizabalaga, Gustavo
author2_role author
author
author
author
author
author_facet Krueger, Amanda
Horjales, Sofía
Yang, Chunlin
Blakely, William J.
Francia, María E.
Arrizabalaga, Gustavo
author_role author
bitstream.checksum.fl_str_mv 710ccfef5cb01d54b75d1d847d6b6b7b
51509fbc71ae3015a8cb78d99c75ba79
bitstream.checksumAlgorithm.fl_str_mv MD5
MD5
bitstream.url.fl_str_mv https://redi.anii.org.uy/jspui/bitstream/20.500.12381/4013/2/license.txt
https://redi.anii.org.uy/jspui/bitstream/20.500.12381/4013/1/msphere.00111-25.pdf
collection IPMON en REDI
dc.creator.none.fl_str_mv Krueger, Amanda
Horjales, Sofía
Yang, Chunlin
Blakely, William J.
Francia, María E.
Arrizabalaga, Gustavo
dc.date.accessioned.none.fl_str_mv 2025-05-21T19:11:07Z
dc.date.available.none.fl_str_mv 2025-05-21T19:11:07Z
dc.date.issued.none.fl_str_mv 2025-04-29
dc.description.abstract.none.fl_txt_mv Intracellular replication is crucial for the success of apicomplexan parasites, including Toxoplasma gondii. Therefore, essential players in parasite replication represent potential targets for drug development. We have characterized TgGSK, a glycogen synthase kinase homolog that plays an important role in Toxoplasma endodyogeny. We have shown that TgGSK has a dynamic localization that is concurrent with the cell cycle. In non-dividing parasites, this kinase is highly concentrated in the nucleus. However, during division, TgGSK displays a cytosolic localization, with concentration foci at the centrosomes, a key organelle involved in parasite division, and the basal end. Conditional knockdown of TgGSK determined that it is essential for the completion of the lytic cycle and proper parasite division. Parasites lacking endogenous protein levels of TgGSK exhibited defects in division synchronicity and the segregation of the nucleus and apicoplast into forming daughter cells. These phenotypes are associated with defects in centrosome duplication and fission. Global phosphoproteomic analysis determined TgGSK-dependent phosphorylation of RNA-processing, basal end, and centrosome proteins. Consistent with the putative regulation of RNA-processing proteins, global transcriptomic analysis suggests that TgGSK is needed for proper splicing. Finally, we show that TgGSK interacts with GCN5b, a well-characterized acetyltransferase with roles in transcriptional control. Conversely, GCN5b chemical inhibition results in specific degradation of TgGSK. Thus, these studies reveal the involvement of TgGSK in various crucial processes, including endodyogeny and splicing, and identify acetylation as a possible mechanism by which this essential kinase is regulated. Importance: While infection with the parasite Toxplasma gondii is largely asymptomatic in healthy adults, severe disease and death can result in immunocompromised individuals and in those infected congenitally. With minimal treatments for toxoplasmosis available, it is crucial to study parasite-specific processes to identify new drug targets. This study investigated the protein TgGSK, uncovering its essentiality for parasite proper division and survival. We performed an in-depth study of the functional role of this kinase. Importantly, TgGSK was shown to bear higher homology to plant proteins than its mammalian counterparts, which may allow for specific targeting of this protein.
dc.description.sponsorship.none.fl_txt_mv National Institutes of Health grants R01AI149766, R01DK124067, and R21AI164619 to G.A.
Pasteur Network, G4 grant
FOCEM (MERCOSUR 645 Structural Convergence Fund), COF 03/11. M.E.F.
dc.identifier.doi.none.fl_str_mv 10.1128/msphere.00111-25
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12381/4013
dc.language.iso.none.fl_str_mv eng
dc.publisher.es.fl_str_mv American Society for Microbiology (ASM)
dc.rights.*.fl_str_mv Acceso abierto
dc.rights.license.none.fl_str_mv Reconocimiento 4.0 Internacional. (CC BY)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.es.fl_str_mv mSphere
dc.source.none.fl_str_mv reponame:IPMON en REDI
instname:Institut Pasteur de Montevideo
instacron:Institut Pasteur de Montevideo
dc.subject.anii.none.fl_str_mv Ciencias Naturales y Exactas
Ciencias Biológicas
Biología Celular, Microbiología
dc.subject.es.fl_str_mv Toxoplasma
quinasas
división celular
dc.title.none.fl_str_mv The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
dc.type.es.fl_str_mv Artículo
dc.type.none.fl_str_mv info:eu-repo/semantics/article
dc.type.version.es.fl_str_mv Aceptado
dc.type.version.none.fl_str_mv info:eu-repo/semantics/acceptedVersion
description Intracellular replication is crucial for the success of apicomplexan parasites, including Toxoplasma gondii. Therefore, essential players in parasite replication represent potential targets for drug development. We have characterized TgGSK, a glycogen synthase kinase homolog that plays an important role in Toxoplasma endodyogeny. We have shown that TgGSK has a dynamic localization that is concurrent with the cell cycle. In non-dividing parasites, this kinase is highly concentrated in the nucleus. However, during division, TgGSK displays a cytosolic localization, with concentration foci at the centrosomes, a key organelle involved in parasite division, and the basal end. Conditional knockdown of TgGSK determined that it is essential for the completion of the lytic cycle and proper parasite division. Parasites lacking endogenous protein levels of TgGSK exhibited defects in division synchronicity and the segregation of the nucleus and apicoplast into forming daughter cells. These phenotypes are associated with defects in centrosome duplication and fission. Global phosphoproteomic analysis determined TgGSK-dependent phosphorylation of RNA-processing, basal end, and centrosome proteins. Consistent with the putative regulation of RNA-processing proteins, global transcriptomic analysis suggests that TgGSK is needed for proper splicing. Finally, we show that TgGSK interacts with GCN5b, a well-characterized acetyltransferase with roles in transcriptional control. Conversely, GCN5b chemical inhibition results in specific degradation of TgGSK. Thus, these studies reveal the involvement of TgGSK in various crucial processes, including endodyogeny and splicing, and identify acetylation as a possible mechanism by which this essential kinase is regulated. Importance: While infection with the parasite Toxplasma gondii is largely asymptomatic in healthy adults, severe disease and death can result in immunocompromised individuals and in those infected congenitally. With minimal treatments for toxoplasmosis available, it is crucial to study parasite-specific processes to identify new drug targets. This study investigated the protein TgGSK, uncovering its essentiality for parasite proper division and survival. We performed an in-depth study of the functional role of this kinase. Importantly, TgGSK was shown to bear higher homology to plant proteins than its mammalian counterparts, which may allow for specific targeting of this protein.
eu_rights_str_mv openAccess
format article
id IPMON_cee3cf61b26e4444b42e2d50a9a0b9d7
identifier_str_mv 10.1128/msphere.00111-25
instacron_str Institut Pasteur de Montevideo
institution Institut Pasteur de Montevideo
instname_str Institut Pasteur de Montevideo
language eng
network_acronym_str IPMON
network_name_str IPMON en REDI
oai_identifier_str oai:redi.anii.org.uy:20.500.12381/4013
publishDate 2025
reponame_str IPMON en REDI
repository.mail.fl_str_mv msarroca@pasteur.edu.uy
repository.name.fl_str_mv IPMON en REDI - Institut Pasteur de Montevideo
repository_id_str 9421_2
rights_invalid_str_mv Reconocimiento 4.0 Internacional. (CC BY)
Acceso abierto
spelling Reconocimiento 4.0 Internacional. (CC BY)Acceso abiertoinfo:eu-repo/semantics/openAccess2025-05-21T19:11:07Z2025-05-21T19:11:07Z2025-04-29https://hdl.handle.net/20.500.12381/401310.1128/msphere.00111-25Intracellular replication is crucial for the success of apicomplexan parasites, including Toxoplasma gondii. Therefore, essential players in parasite replication represent potential targets for drug development. We have characterized TgGSK, a glycogen synthase kinase homolog that plays an important role in Toxoplasma endodyogeny. We have shown that TgGSK has a dynamic localization that is concurrent with the cell cycle. In non-dividing parasites, this kinase is highly concentrated in the nucleus. However, during division, TgGSK displays a cytosolic localization, with concentration foci at the centrosomes, a key organelle involved in parasite division, and the basal end. Conditional knockdown of TgGSK determined that it is essential for the completion of the lytic cycle and proper parasite division. Parasites lacking endogenous protein levels of TgGSK exhibited defects in division synchronicity and the segregation of the nucleus and apicoplast into forming daughter cells. These phenotypes are associated with defects in centrosome duplication and fission. Global phosphoproteomic analysis determined TgGSK-dependent phosphorylation of RNA-processing, basal end, and centrosome proteins. Consistent with the putative regulation of RNA-processing proteins, global transcriptomic analysis suggests that TgGSK is needed for proper splicing. Finally, we show that TgGSK interacts with GCN5b, a well-characterized acetyltransferase with roles in transcriptional control. Conversely, GCN5b chemical inhibition results in specific degradation of TgGSK. Thus, these studies reveal the involvement of TgGSK in various crucial processes, including endodyogeny and splicing, and identify acetylation as a possible mechanism by which this essential kinase is regulated. Importance: While infection with the parasite Toxplasma gondii is largely asymptomatic in healthy adults, severe disease and death can result in immunocompromised individuals and in those infected congenitally. With minimal treatments for toxoplasmosis available, it is crucial to study parasite-specific processes to identify new drug targets. This study investigated the protein TgGSK, uncovering its essentiality for parasite proper division and survival. We performed an in-depth study of the functional role of this kinase. Importantly, TgGSK was shown to bear higher homology to plant proteins than its mammalian counterparts, which may allow for specific targeting of this protein.National Institutes of Health grants R01AI149766, R01DK124067, and R21AI164619 to G.A.Pasteur Network, G4 grantFOCEM (MERCOSUR 645 Structural Convergence Fund), COF 03/11. M.E.F.engAmerican Society for Microbiology (ASM)mSpherereponame:IPMON en REDIinstname:Institut Pasteur de Montevideoinstacron:Institut Pasteur de MontevideoToxoplasmaquinasasdivisión celularCiencias Naturales y ExactasCiencias BiológicasBiología Celular, MicrobiologíaThe essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondiiArtículoAceptadoinfo:eu-repo/semantics/acceptedVersioninfo:eu-repo/semantics/articleInstitut Pasteur MontevideoDepartment of Pharmacology and Toxicology, Indiana University School of Medicine, Indianapolis, Indiana, USA.Department of Microbiology and Immunology, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo, Buffalo, New York, USA.//Ciencias Naturales y Exactas/Ciencias Biológicas/Biología Celular, MicrobiologíaKrueger, AmandaHorjales, SofíaYang, ChunlinBlakely, William J.Francia, María E.Arrizabalaga, GustavoLICENSElicense.txtlicense.txttext/plain; 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científico-tecnológicohttps://pasteur.uy/https://redi.anii.org.uy/oai/requestmsarroca@pasteur.edu.uyUruguayopendoar:9421_22025-05-21T19:11:09IPMON en REDI - Institut Pasteur de Montevideofalse
spellingShingle The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
Krueger, Amanda
Toxoplasma
quinasas
división celular
Ciencias Naturales y Exactas
Ciencias Biológicas
Biología Celular, Microbiología
status_str acceptedVersion
title The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
title_full The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
title_fullStr The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
title_full_unstemmed The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
title_short The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
title_sort The essential kinase TgGSK regulates centrosome segregation and endodyogeny in Toxoplasma gondii
topic Toxoplasma
quinasas
división celular
Ciencias Naturales y Exactas
Ciencias Biológicas
Biología Celular, Microbiología
url https://hdl.handle.net/20.500.12381/4013