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Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis

Previously, we showed Leishmania donovani Ufm1 has a Gly residue conserved at the C-terminal region with a unique 17 amino acid residue extension that must be processed prior to conjugation to target proteins. In this report, we describe for the first time the isolation and characterization of the L...

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Autores principales: Gannavaram, Sreenivas, Davey, Sonya, Lakhal-Naouar, Ines, Duncan, Robert, Nakhasi, Hira L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3930514/
https://www.ncbi.nlm.nih.gov/pubmed/24587462
http://dx.doi.org/10.1371/journal.pntd.0002707
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author Gannavaram, Sreenivas
Davey, Sonya
Lakhal-Naouar, Ines
Duncan, Robert
Nakhasi, Hira L.
author_facet Gannavaram, Sreenivas
Davey, Sonya
Lakhal-Naouar, Ines
Duncan, Robert
Nakhasi, Hira L.
author_sort Gannavaram, Sreenivas
collection PubMed
description Previously, we showed Leishmania donovani Ufm1 has a Gly residue conserved at the C-terminal region with a unique 17 amino acid residue extension that must be processed prior to conjugation to target proteins. In this report, we describe for the first time the isolation and characterization of the Leishmania Ufm1-specific protease Ufsp. Biochemical analysis of L. donovani Ufsp showed that this protein possesses the Ufm1 processing activity using sensitive FRET based activity probes. The Ufm1 cleavage activity was absent in a mutant Ufsp in which the active site cysteine is altered to a serine. To examine the effects of abolition of Ufm1 processing activity, we generated a L. donovani null mutant of Ufsp (LdUfsp(−/−)). Ufm1 processing activity was abolished in LdUfsp(−/−) mutant, and the processing defect was reversed by re-expression of wild type but not the cys>ser mutant in the LdUfsp(−/−) parasites. Further LdUfsp(−/−) mutants showed reduced survival as amastigotes in infected human macrophages but not as promastigotes. This growth defect in the amastigotes was reversed by re-expression of wild type but not the cys>ser mutant in the Ufsp(−/−) indicating the essential nature of this protease for Leishmania pathogenesis. Further, mouse infection experiments showed deletion of Ufsp results in reduced virulence of the parasites. Additionally, Ufsp activity was inhibited by an anti-leishmanial drug Amphotericin B. These studies provide an opportunity to test LdUfsp(−/−) parasites as drug and vaccine targets.
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spelling pubmed-39305142014-02-25 Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis Gannavaram, Sreenivas Davey, Sonya Lakhal-Naouar, Ines Duncan, Robert Nakhasi, Hira L. PLoS Negl Trop Dis Research Article Previously, we showed Leishmania donovani Ufm1 has a Gly residue conserved at the C-terminal region with a unique 17 amino acid residue extension that must be processed prior to conjugation to target proteins. In this report, we describe for the first time the isolation and characterization of the Leishmania Ufm1-specific protease Ufsp. Biochemical analysis of L. donovani Ufsp showed that this protein possesses the Ufm1 processing activity using sensitive FRET based activity probes. The Ufm1 cleavage activity was absent in a mutant Ufsp in which the active site cysteine is altered to a serine. To examine the effects of abolition of Ufm1 processing activity, we generated a L. donovani null mutant of Ufsp (LdUfsp(−/−)). Ufm1 processing activity was abolished in LdUfsp(−/−) mutant, and the processing defect was reversed by re-expression of wild type but not the cys>ser mutant in the LdUfsp(−/−) parasites. Further LdUfsp(−/−) mutants showed reduced survival as amastigotes in infected human macrophages but not as promastigotes. This growth defect in the amastigotes was reversed by re-expression of wild type but not the cys>ser mutant in the Ufsp(−/−) indicating the essential nature of this protease for Leishmania pathogenesis. Further, mouse infection experiments showed deletion of Ufsp results in reduced virulence of the parasites. Additionally, Ufsp activity was inhibited by an anti-leishmanial drug Amphotericin B. These studies provide an opportunity to test LdUfsp(−/−) parasites as drug and vaccine targets. Public Library of Science 2014-02-20 /pmc/articles/PMC3930514/ /pubmed/24587462 http://dx.doi.org/10.1371/journal.pntd.0002707 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Gannavaram, Sreenivas
Davey, Sonya
Lakhal-Naouar, Ines
Duncan, Robert
Nakhasi, Hira L.
Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis
title Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis
title_full Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis
title_fullStr Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis
title_full_unstemmed Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis
title_short Deletion of Ubiquitin Fold Modifier Protein Ufm1 Processing Peptidase Ufsp in L. donovani Abolishes Ufm1 Processing and Alters Pathogenesis
title_sort deletion of ubiquitin fold modifier protein ufm1 processing peptidase ufsp in l. donovani abolishes ufm1 processing and alters pathogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3930514/
https://www.ncbi.nlm.nih.gov/pubmed/24587462
http://dx.doi.org/10.1371/journal.pntd.0002707
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