Literature DB >> 27048922

Apoptosis of Candida albicans during the Interaction with Murine Macrophages: Proteomics and Cell-Death Marker Monitoring.

Virginia Cabezón1, Vital Vialás1,2, Ana Gil-Bona1,2, Jose A Reales-Calderón1,2, Montserrat Martínez-Gomariz3, Dolores Gutiérrez-Blázquez3, Lucía Monteoliva1,2, Gloria Molero1,2, Mark Ramsdale4, Concha Gil1,2.   

Abstract

Macrophages may induce fungal apoptosis to fight against C. albicans, as previously hypothesized by our group. To confirm this hypothesis, we analyzed proteins from C. albicans cells after 3 h of interaction with macrophages using two quantitative proteomic approaches. A total of 51 and 97 proteins were identified as differentially expressed by DIGE and iTRAQ, respectively. The proteins identified and quantified were different, with only seven in common, but classified in the same functional categories. The analyses of their functions indicated that an increase in the metabolism of amino acids and purine nucleotides were taking place, while the glycolysis and translation levels dropped after 3 h of interaction. Also, the response to oxidative stress and protein translation were reduced. In addition, seven substrates of metacaspase (Mca1) were identified (Cdc48, Fba1, Gpm1, Pmm1, Rct1, Ssb1, and Tal1) as decreased in abundance, plus 12 proteins previously described as related to apoptosis. Besides, the monitoring of apoptotic markers along 24 h of interaction (caspase-like activity, TUNEL assay, and the measurement of ROS and cell examination by transmission electron microscopy) revealed that apoptotic processes took place for 30% of the fungal cells, thus supporting the proteomic results and the hypothesis of macrophages killing C. albicans by apoptosis.

Entities:  

Keywords:  2D-DIGE; Candida albicans; DNA fragmentation; apoptosis; iTRAQ; macrophages; metabolism; metacaspase

Mesh:

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Year:  2016        PMID: 27048922     DOI: 10.1021/acs.jproteome.5b00913

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  6 in total

Review 1.  Systems biology of host-Candida interactions: understanding how we shape each other.

Authors:  Andrea Hodgins-Davis; Teresa R O'Meara
Journal:  Curr Opin Microbiol       Date:  2020-05-30       Impact factor: 7.934

2.  Epitope-Based Peptide Vaccine Design against Fructose Bisphosphate Aldolase of Candida glabrata: An Immunoinformatics Approach.

Authors:  Lina Mohamed Elamin Elhasan; Mohamed B Hassan; Reham M Elhassan; Fatima A Abdelrhman; Essam A Salih; Asma Ibrahim H; Amna A Mohamed; Hozaifa S Osman; Marwa Saad M Khalil; Athar A Alsafi; Abeer Babiker Idris; Mohamed A Hassan
Journal:  J Immunol Res       Date:  2021-05-04       Impact factor: 4.818

Review 3.  Guidelines and recommendations on yeast cell death nomenclature.

Authors:  Didac Carmona-Gutierrez; Maria Anna Bauer; Andreas Zimmermann; Andrés Aguilera; Nicanor Austriaco; Kathryn Ayscough; Rena Balzan; Shoshana Bar-Nun; Antonio Barrientos; Peter Belenky; Marc Blondel; Ralf J Braun; Michael Breitenbach; William C Burhans; Sabrina Büttner; Duccio Cavalieri; Michael Chang; Katrina F Cooper; Manuela Côrte-Real; Vítor Costa; Christophe Cullin; Ian Dawes; Jörn Dengjel; Martin B Dickman; Tobias Eisenberg; Birthe Fahrenkrog; Nicolas Fasel; Kai-Uwe Fröhlich; Ali Gargouri; Sergio Giannattasio; Paola Goffrini; Campbell W Gourlay; Chris M Grant; Michael T Greenwood; Nicoletta Guaragnella; Thomas Heger; Jürgen Heinisch; Eva Herker; Johannes M Herrmann; Sebastian Hofer; Antonio Jiménez-Ruiz; Helmut Jungwirth; Katharina Kainz; Dimitrios P Kontoyiannis; Paula Ludovico; Stéphen Manon; Enzo Martegani; Cristina Mazzoni; Lynn A Megeney; Chris Meisinger; Jens Nielsen; Thomas Nyström; Heinz D Osiewacz; Tiago F Outeiro; Hay-Oak Park; Tobias Pendl; Dina Petranovic; Stephane Picot; Peter Polčic; Ted Powers; Mark Ramsdale; Mark Rinnerthaler; Patrick Rockenfeller; Christoph Ruckenstuhl; Raffael Schaffrath; Maria Segovia; Fedor F Severin; Amir Sharon; Stephan J Sigrist; Cornelia Sommer-Ruck; Maria João Sousa; Johan M Thevelein; Karin Thevissen; Vladimir Titorenko; Michel B Toledano; Mick Tuite; F-Nora Vögtle; Benedikt Westermann; Joris Winderickx; Silke Wissing; Stefan Wölfl; Zhaojie J Zhang; Richard Y Zhao; Bing Zhou; Lorenzo Galluzzi; Guido Kroemer; Frank Madeo
Journal:  Microb Cell       Date:  2018-01-01

Review 4.  Regulated Cell Death as a Therapeutic Target for Novel Antifungal Peptides and Biologics.

Authors:  Michael R Yeaman; Sabrina Büttner; Karin Thevissen
Journal:  Oxid Med Cell Longev       Date:  2018-04-26       Impact factor: 6.543

5.  Antagonistic Interaction of Staphylococcus aureus Toward Candida glabrata During in vitro Biofilm Formation Is Caused by an Apoptotic Mechanism.

Authors:  Omar Camarillo-Márquez; Itzel M Córdova-Alcántara; Cesar H Hernández-Rodríguez; Blanca E García-Pérez; María A Martínez-Rivera; Aida V Rodríguez-Tovar
Journal:  Front Microbiol       Date:  2018-08-30       Impact factor: 5.640

6.  Non-Toxic and Ultra-Small Biosilver Nanoclusters Trigger Apoptotic Cell Death in Fluconazole-Resistant Candida albicans via Ras Signaling.

Authors:  Braj Raj Singh; Vijai Kumar Gupta; Farah Deeba; Rajesh Bajpai; Vivek Pandey; Alim H Naqvi; Dalip Kumar Upreti; Nicholas Gathergood; Yueming Jiang; Hesham A El Enshasy; Essam Nageh Sholkamy; Ashraf A Mostafa; Abd El-Latif Hesham; Brahma N Singh
Journal:  Biomolecules       Date:  2019-01-29
  6 in total

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