TY - JOUR
T1 - Proteomic profiling of Mycobacterium tuberculosis identifies nutrient-starvation-responsive toxin-antitoxin systems
AU - Albrethsen, Jakob
AU - Agner, Jeppe
AU - Piersma, Sander R
AU - Højrup, Peter
AU - Pham, Thang V
AU - Weldingh, Karin
AU - Jimenez, Connie R
AU - Andersen, Peter
AU - Rosenkrands, Ida
PY - 2013/5
Y1 - 2013/5
N2 - In order to successfully enter the latent stage, Mycobacterium tuberculosis must adapt to conditions such as nutrient limitation and hypoxia. In vitro models that mimic latent infection are valuable tools for describing the changes in metabolism that occur when the bacterium exists in a non-growing form. We used two complementary proteomic approaches, label-free LC-MS/MS analysis and two-dimensional difference gel electrophoresis, to determine the proteome profile of extracellular proteins from M. tuberculosis cultured under nutrient starvation. Through the label-free LC-MS/MS analysis of fractionated samples, 1176 proteins were identified from culture filtrates of log phase and nutrient-starved cultures, and the protein levels of 230 proteins were increased in nutrient-starved culture filtrates, whereas those of 208 proteins were decreased. By means of Gene Ontology clustering analysis, significant differences in the overall metabolism during nutrient starvation were detected. Notably, members of the toxin-antitoxin systems were present in larger quantities in nutrient-starved cultures, supporting a role for these global modules as M. tuberculosis switches its metabolism into dormancy. Decreased abundance of proteins involved in amino acid and protein synthesis was apparent, as well as changes in the lipid metabolism. Further analysis of the dataset identified increased abundance of lipoproteins and decreased abundance of ESAT-6 family proteins. Results from the two-dimensional difference gel electrophoresis proteomics demonstrated overall agreement with the LC-MS/MS data and added complementary insights about protein degradation and modification.
AB - In order to successfully enter the latent stage, Mycobacterium tuberculosis must adapt to conditions such as nutrient limitation and hypoxia. In vitro models that mimic latent infection are valuable tools for describing the changes in metabolism that occur when the bacterium exists in a non-growing form. We used two complementary proteomic approaches, label-free LC-MS/MS analysis and two-dimensional difference gel electrophoresis, to determine the proteome profile of extracellular proteins from M. tuberculosis cultured under nutrient starvation. Through the label-free LC-MS/MS analysis of fractionated samples, 1176 proteins were identified from culture filtrates of log phase and nutrient-starved cultures, and the protein levels of 230 proteins were increased in nutrient-starved culture filtrates, whereas those of 208 proteins were decreased. By means of Gene Ontology clustering analysis, significant differences in the overall metabolism during nutrient starvation were detected. Notably, members of the toxin-antitoxin systems were present in larger quantities in nutrient-starved cultures, supporting a role for these global modules as M. tuberculosis switches its metabolism into dormancy. Decreased abundance of proteins involved in amino acid and protein synthesis was apparent, as well as changes in the lipid metabolism. Further analysis of the dataset identified increased abundance of lipoproteins and decreased abundance of ESAT-6 family proteins. Results from the two-dimensional difference gel electrophoresis proteomics demonstrated overall agreement with the LC-MS/MS data and added complementary insights about protein degradation and modification.
KW - Adaptation, Physiological
KW - Antigens, Bacterial
KW - Bacterial Outer Membrane Proteins
KW - Bacterial Proteins
KW - Bacterial Proton-Translocating ATPases
KW - Biosynthetic Pathways
KW - Cluster Analysis
KW - Lipoproteins
KW - Membrane Transport Proteins
KW - Mycobacterium tuberculosis
KW - Protein-Serine-Threonine Kinases
KW - Proteome
KW - Proteomics
KW - Stress, Physiological
KW - Tandem Mass Spectrometry
KW - Two-Dimensional Difference Gel Electrophoresis
KW - Journal Article
KW - Research Support, Non-U.S. Gov't
U2 - 10.1074/mcp.M112.018846
DO - 10.1074/mcp.M112.018846
M3 - Journal article
C2 - 23345537
SN - 1535-9484
VL - 12
SP - 1180
EP - 1191
JO - Molecular & Cellular Proteomics
JF - Molecular & Cellular Proteomics
IS - 5
ER -