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Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites

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Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites. / Iribarren, Paula Ana; Di Marzio, Lucía Ayelén; Berazategui, María Agustina et al.
In: PLoS Pathogens, Vol. 20, No. 4, e1012166, 18.04.2024.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Iribarren, PA, Di Marzio, LA, Berazategui, MA, Saura, A, Coria, L, Cassataro, J, Rojas, F, Navarro, M, Alvarez, VE & Boshart, M (ed.) 2024, 'Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites', PLoS Pathogens, vol. 20, no. 4, e1012166. https://doi.org/10.1371/journal.ppat.1012166

APA

Iribarren, P. A., Di Marzio, L. A., Berazategui, M. A., Saura, A., Coria, L., Cassataro, J., Rojas, F., Navarro, M., Alvarez, V. E., & Boshart, M. (Ed.) (2024). Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites. PLoS Pathogens, 20(4), Article e1012166. https://doi.org/10.1371/journal.ppat.1012166

Vancouver

Iribarren PA, Di Marzio LA, Berazategui MA, Saura A, Coria L, Cassataro J et al. Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites. PLoS Pathogens. 2024 Apr 18;20(4):e1012166. doi: 10.1371/journal.ppat.1012166

Author

Iribarren, Paula Ana ; Di Marzio, Lucía Ayelén ; Berazategui, María Agustina et al. / Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites. In: PLoS Pathogens. 2024 ; Vol. 20, No. 4.

Bibtex

@article{94fb58ced76e4d4984fe621f48a49087,
title = "Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites",
abstract = "Trypanosoma brucei are protozoan parasites that cause sleeping sickness in humans and nagana in cattle. Inside the mammalian host, a quorum sensing-like mechanism coordinates its differentiation from a slender replicative form into a quiescent stumpy form, limiting growth and activating metabolic pathways that are beneficial to the parasite in the insect host. The post-translational modification of proteins with the Small Ubiquitin-like MOdifier (SUMO) enables dynamic regulation of cellular metabolism. SUMO can be conjugated to its targets as a monomer but can also form oligomeric chains. Here, we have investigated the role of SUMO chains in T. brucei by abolishing the ability of SUMO to polymerize. We have found that parasites able to conjugate only SUMO monomers are primed for differentiation. This was demonstrated for monomorphic lines that are normally unable to produce stumpy forms in response to quorum sensing signaling in mice, and also for pleomorphic cell lines in which stumpy cells were observed at unusually low parasitemia levels. SUMO chain mutants showed a stumpy compatible transcriptional profile and better competence to differentiate into procyclics. Our study indicates that SUMO depolymerization may represent a coordinated signal triggered during stumpy activation program.",
author = "Iribarren, {Paula Ana} and {Di Marzio}, {Luc{\'i}a Ayel{\'e}n} and Berazategui, {Mar{\'i}a Agustina} and Andreu Saura and Lorena Coria and Juliana Cassataro and Federico Rojas and Miguel Navarro and Alvarez, {Vanina Eder} and Michael Boshart",
year = "2024",
month = apr,
day = "18",
doi = "10.1371/journal.ppat.1012166",
language = "English",
volume = "20",
journal = "PLoS Pathogens",
issn = "1553-7366",
publisher = "Public Library of Science",
number = "4",

}

RIS

TY - JOUR

T1 - Depolymerization of SUMO chains induces slender to stumpy differentiation in T. brucei bloodstream parasites

AU - Iribarren, Paula Ana

AU - Di Marzio, Lucía Ayelén

AU - Berazategui, María Agustina

AU - Saura, Andreu

AU - Coria, Lorena

AU - Cassataro, Juliana

AU - Rojas, Federico

AU - Navarro, Miguel

AU - Alvarez, Vanina Eder

A2 - Boshart, Michael

PY - 2024/4/18

Y1 - 2024/4/18

N2 - Trypanosoma brucei are protozoan parasites that cause sleeping sickness in humans and nagana in cattle. Inside the mammalian host, a quorum sensing-like mechanism coordinates its differentiation from a slender replicative form into a quiescent stumpy form, limiting growth and activating metabolic pathways that are beneficial to the parasite in the insect host. The post-translational modification of proteins with the Small Ubiquitin-like MOdifier (SUMO) enables dynamic regulation of cellular metabolism. SUMO can be conjugated to its targets as a monomer but can also form oligomeric chains. Here, we have investigated the role of SUMO chains in T. brucei by abolishing the ability of SUMO to polymerize. We have found that parasites able to conjugate only SUMO monomers are primed for differentiation. This was demonstrated for monomorphic lines that are normally unable to produce stumpy forms in response to quorum sensing signaling in mice, and also for pleomorphic cell lines in which stumpy cells were observed at unusually low parasitemia levels. SUMO chain mutants showed a stumpy compatible transcriptional profile and better competence to differentiate into procyclics. Our study indicates that SUMO depolymerization may represent a coordinated signal triggered during stumpy activation program.

AB - Trypanosoma brucei are protozoan parasites that cause sleeping sickness in humans and nagana in cattle. Inside the mammalian host, a quorum sensing-like mechanism coordinates its differentiation from a slender replicative form into a quiescent stumpy form, limiting growth and activating metabolic pathways that are beneficial to the parasite in the insect host. The post-translational modification of proteins with the Small Ubiquitin-like MOdifier (SUMO) enables dynamic regulation of cellular metabolism. SUMO can be conjugated to its targets as a monomer but can also form oligomeric chains. Here, we have investigated the role of SUMO chains in T. brucei by abolishing the ability of SUMO to polymerize. We have found that parasites able to conjugate only SUMO monomers are primed for differentiation. This was demonstrated for monomorphic lines that are normally unable to produce stumpy forms in response to quorum sensing signaling in mice, and also for pleomorphic cell lines in which stumpy cells were observed at unusually low parasitemia levels. SUMO chain mutants showed a stumpy compatible transcriptional profile and better competence to differentiate into procyclics. Our study indicates that SUMO depolymerization may represent a coordinated signal triggered during stumpy activation program.

U2 - 10.1371/journal.ppat.1012166

DO - 10.1371/journal.ppat.1012166

M3 - Journal article

VL - 20

JO - PLoS Pathogens

JF - PLoS Pathogens

SN - 1553-7366

IS - 4

M1 - e1012166

ER -