Literature DB >> 25772565

Differential proteomic analysis of mouse macrophages exposed to adsorbate-loaded heavy fuel oil derived combustion particles using an automated sample-preparation workflow.

Tamara Kanashova1, Oliver Popp, Jürgen Orasche, Erwin Karg, Horst Harndorf, Benjamin Stengel, Martin Sklorz, Thorsten Streibel, Ralf Zimmermann, Gunnar Dittmar.   

Abstract

Ship diesel combustion particles are known to cause broad cytotoxic effects and thereby strongly impact human health. Particles from heavy fuel oil (HFO) operated ships are considered as particularly dangerous. However, little is known about the relevant components of the ship emission particles. In particular, it is interesting to know if the particle cores, consisting of soot and metal oxides, or the adsorbate layers, consisting of semi- and low-volatile organic compounds and salts, are more relevant. We therefore sought to relate the adsorbates and the core composition of HFO combustion particles to the early cellular responses, allowing for the development of measures that counteract their detrimental effects. Hence, the semi-volatile coating of HFO-operated ship diesel engine particles was removed by stepwise thermal stripping using different temperatures. RAW 264.7 macrophages were exposed to native and thermally stripped particles in submersed culture. Proteomic changes were monitored by two different quantitative mass spectrometry approaches, stable isotope labeling by amino acids in cell culture (SILAC) and dimethyl labeling. Our data revealed that cells reacted differently to native or stripped HFO combustion particles. Cells exposed to thermally stripped particles showed a very differential reaction with respect to the composition of the individual chemical load of the particle. The cellular reactions of the HFO particles included reaction to oxidative stress, reorganization of the cytoskeleton and changes in endocytosis. Cells exposed to the 280 °C treated particles showed an induction of RNA-related processes, a number of mitochondria-associated processes as well as DNA damage response, while the exposure to 580 °C treated HFO particles mainly induced the regulation of intracellular transport. In summary, our analysis based on a highly reproducible automated proteomic sample-preparation procedure shows a diverse cellular response, depending on the soot particle composition. In particular, it was shown that both the molecules of the adsorbate layer as well as particle cores induced strong but different effects in the exposed cells.

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Year:  2015        PMID: 25772565     DOI: 10.1007/s00216-015-8595-4

Source DB:  PubMed          Journal:  Anal Bioanal Chem        ISSN: 1618-2642            Impact factor:   4.142


  13 in total

1.  A protein quality control pathway regulated by linear ubiquitination.

Authors:  Eva M van Well; Verian Bader; Maria Patra; Ana Sánchez-Vicente; Jens Meschede; Nikolas Furthmann; Cathrin Schnack; Alina Blusch; Joseph Longworth; Elisabeth Petrasch-Parwez; Kohji Mori; Thomas Arzberger; Dietrich Trümbach; Lena Angersbach; Cathrin Showkat; Dominik A Sehr; Lena A Berlemann; Petra Goldmann; Albrecht M Clement; Christian Behl; Andreas C Woerner; Carsten Saft; Wolfgang Wurst; Christian Haass; Gisa Ellrichmann; Ralf Gold; Gunnar Dittmar; Mark S Hipp; F Ulrich Hartl; Jörg Tatzelt; Konstanze F Winklhofer
Journal:  EMBO J       Date:  2019-03-18       Impact factor: 11.598

2.  Translation of CircRNAs.

Authors:  Nagarjuna Reddy Pamudurti; Osnat Bartok; Marvin Jens; Reut Ashwal-Fluss; Christin Stottmeister; Larissa Ruhe; Mor Hanan; Emanuel Wyler; Daniel Perez-Hernandez; Evelyn Ramberger; Shlomo Shenzis; Moshe Samson; Gunnar Dittmar; Markus Landthaler; Marina Chekulaeva; Nikolaus Rajewsky; Sebastian Kadener
Journal:  Mol Cell       Date:  2017-03-23       Impact factor: 17.970

3.  The VGF-derived Peptide TLQP21 Impairs Purinergic Control of Chemotaxis and Phagocytosis in Mouse Microglia.

Authors:  Nirmeen Elmadany; Felipe de Almeida Sassi; Stefan Wendt; Francesca Logiacco; Josien Visser; Verena Haage; Daniel Perez Hernandez; Philipp Mertins; Dolores Hambardzumyan; Susanne Wolf; Helmut Kettenmann; Marcus Semtner
Journal:  J Neurosci       Date:  2020-02-14       Impact factor: 6.167

4.  MicroRNA-34a promotes genomic instability by a broad suppression of genome maintenance mechanisms downstream of the oncogene KSHV-vGPCR.

Authors:  Claudia J Krause; Oliver Popp; Nanthakumar Thirunarayanan; Gunnar Dittmar; Martin Lipp; Gerd Müller
Journal:  Oncotarget       Date:  2016-03-01

5.  Proteomic Analysis of the Ubiquitin Landscape in the Drosophila Embryonic Nervous System and the Adult Photoreceptor Cells.

Authors:  Juanma Ramirez; Aitor Martinez; Benoit Lectez; So Young Lee; Maribel Franco; Rosa Barrio; Gunnar Dittmar; Ugo Mayor
Journal:  PLoS One       Date:  2015-10-13       Impact factor: 3.240

6.  Inhibition of the MID1 protein complex: a novel approach targeting APP protein synthesis.

Authors:  Frank Matthes; Moritz M Hettich; Judith Schilling; Diana Flores-Dominguez; Nelli Blank; Thomas Wiglenda; Alexander Buntru; Hanna Wolf; Stephanie Weber; Ina Vorberg; Alina Dagane; Gunnar Dittmar; Erich Wanker; Dan Ehninger; Sybille Krauss
Journal:  Cell Death Discov       Date:  2018-01-29

7.  Quantitative proteomic analysis of Parkin substrates in Drosophila neurons.

Authors:  Aitor Martinez; Benoit Lectez; Juanma Ramirez; Oliver Popp; James D Sutherland; Sylvie Urbé; Gunnar Dittmar; Michael J Clague; Ugo Mayor
Journal:  Mol Neurodegener       Date:  2017-04-11       Impact factor: 14.195

8.  A map of human circular RNAs in clinically relevant tissues.

Authors:  Philipp G Maass; Petar Glažar; Sebastian Memczak; Gunnar Dittmar; Irene Hollfinger; Luisa Schreyer; Aisha V Sauer; Okan Toka; Alessandro Aiuti; Friedrich C Luft; Nikolaus Rajewsky
Journal:  J Mol Med (Berl)       Date:  2017-08-25       Impact factor: 4.599

9.  S-palmitoylation Is Required for the Control of Growth Cone Morphology of DRG Neurons by CNP-Induced cGMP Signaling.

Authors:  Alexandre Dumoulin; Alina Dagane; Gunnar Dittmar; Fritz G Rathjen
Journal:  Front Mol Neurosci       Date:  2018-09-24       Impact factor: 5.639

10.  Metabolic Profiling as Well as Stable Isotope Assisted Metabolic and Proteomic Analysis of RAW 264.7 Macrophages Exposed to Ship Engine Aerosol Emissions: Different Effects of Heavy Fuel Oil and Refined Diesel Fuel.

Authors:  Sean C Sapcariu; Tamara Kanashova; Marco Dilger; Silvia Diabaté; Sebastian Oeder; Johannes Passig; Christian Radischat; Jeroen Buters; Olli Sippula; Thorsten Streibel; Hanns-Rudolf Paur; Christoph Schlager; Sonja Mülhopt; Benjamin Stengel; Rom Rabe; Horst Harndorf; Tobias Krebs; Erwin Karg; Thomas Gröger; Carsten Weiss; Gunnar Dittmar; Karsten Hiller; Ralf Zimmermann
Journal:  PLoS One       Date:  2016-06-27       Impact factor: 3.240

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