4.7 Article

Anthracene drives sub-cellular proteome-wide alterations in the degradative system of Penicillium oxalicum

期刊

ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY
卷 159, 期 -, 页码 127-135

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ecoenv.2018.04.051

关键词

Biodegradation; Subproteome; Penicillium oxalicum; Polycyclic aromatic hydrocarbons; 2D-gel proteomics; Shotgun proteomics

资金

  1. Ministry of Economy and Competitiveness
  2. FEDER [RYC-2013-12481, PT17/0019/0009]
  3. Junta de Andalucia [P11-RNM-7844]
  4. CONACyT Mexico [250252]
  5. PE I + D + I - ISCIII [PT17/0019/0009]

向作者/读者索取更多资源

Polycyclic aromatic hydrocarbons (PAHs) are widely distributed in polluted environments and are included in the priority list of toxic compounds. Previous studies have shown that the fungus Penicillium oxalicum, isolated from a hydrocarbon-polluted pond, has a great capability to transform different PAHs in short periods under submerged fermentation conditions. Although cytochrome p450s (CYPs) seems to be the main responsible enzyme in this process, changes in proteome profile remains poorly understood. The aim of this work was to characterise molecular disturbances in the cytosolic and microsomal sub-proteomes of P. oxalicum by applying two-dimensional (2D) gel electrophoresis and label-free quantitative proteomics during anthracene biodegradation. Our results showed that by using 2D-gels, 10 and 8 differential proteins were over-expressed in the cytosolic and microsomal fractions, respectively. Most of them were related to stress response. Shotgun proteomics allowed the identification of 158 and 174 unique protein species that differentially accumulated during anthracene biotransformation, such as CYPs, epoxide hydrolases and transferases enzymes, belonging to Phase I and Phase II of the metabolism of xenobiotics, contributing to the anthracene biodegradation pathway. These results confirm the biological significance of ascomycetes fungi the rol of CYPs on biodegradation and the need of a deeper knowledge on fungal proteomics for the application of the appropriate microorganisms in biodegradation processes.

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