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Istituto di scienza dell'alimentazione

Torna all'elenco Contributi in rivista anno 2010

Contributo in rivista

Tipo: Articolo in rivista

Titolo: Proteomics for the elucidation of cold adaptation mechanisms in Listeria monocytogenes.

Anno di pubblicazione: 2010

Formato: Elettronico Cartaceo

Autori: Cacace G; Mazzeo MF; Sorrentino A; Spada V; Malorni A; Siciliano RA.

Affiliazioni autori: Proteomic and Biomolecular Mass Spectrometry Center, Institute of Food Science, CNR, Avellino, Italy

Autori CNR:


Lingua: inglese

Abstract: Listeria monocytogenes, one of the major food-related pathogens, is the aetiological agent of listeriosis, a potentially life-threatening illness. It is able to survive in hostile environments and stress conditions such as those encountered in food-processing technologies (high salt concentration, wide range of pH and temperature, low water availability) and it also thrives at temperatures ranging from -0.4 to 45 C. In this study, expression proteomics was applied to gain insight into key cellular events that allow L. monocytogenes to survive and multiply even at refrigeration temperatures. Interestingly, we observed that the adaptation processes mainly affect biochemical pathways related to protein synthesis and folding, nutrient uptake and oxidative stress. Furthermore, proteins implicated in metabolic pathways for energy production, such as glycolysis and Pta-AckA pathway, were present to a higher level in the cells grown at 4 C. This suggests that, on the whole, cells exhibit an enhanced demand for energy to sustain cold growth. Proteomics may represent a key tool in deciphering specific mechanisms underlying cold adaptation response and, more widely, cell machinery.

Lingua abstract: inglese

Pagine da: 2021

Pagine a: 2030

Pagine totali: 10


Journal of proteomics Elsevier
Paese di pubblicazione: Paesi Bassi
Lingua: inglese
ISSN: 1876-7737

Numero volume: 73

DOI: 10.1016/j.jprot.2010.06.011

Referee: S: Internazionale

Indicizzato da:

  • ISI Web of Science (WOS) [000282547700017]
  • PubMed [20620249]
  • Scopus [2-s2.0-77956410864]

Parole chiave:

  • Cold adaptation
  • L. monocytogenes
  • Mass spectrometry
  • Proteomics.

Strutture CNR:


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