Study Data


MS Study

Project uploaded by: Yashwant
Project ID: IMP_100052
Title: A genome-scale metabolic model for deciphering the host metabolic perturbations during Mycobacterium tuberculosis infection
Project Description: Conventional tuberculosis (TB) research predominantly relies on forward-designed experiments, such as studying host responses to Mycobacterium tuberculosis (Mtb) gene knockouts. While informative, these approaches offer only a partial view of host-pathogen interactions and often overlook the broader alterations in the host microenvironment during infection. To address this limitation, we adopted a backtracing strategy to retrospectively identify host metabolic modulators and link them to specific Mtb virulence factors. Using RNA-seq data from Mtb-infected mouse lung tissue, we integrated transcriptomic profiles into a genome-scale metabolic model to predict host metabolic genes essential for Mtb survival. This analysis identified 18 host proteins as putative modulators. We then constructed a host-pathogen protein interaction network, which connected these host factors to 9 Mtb proteins. Experimental validation using Mtb knockdown strains confirmed that three genes Rv1970, Rv0243, and Rv2234 play key roles in manipulating host responses rather than supporting intrinsic bacterial viability. Further, we employed targeted proteomics and untargeted metabolomics analyses on THP-1 macrophages infected with these KD strains to dissect the host-pathogen interaction mechanisms in greater detail. These findings in troduce a novel framework for decoding host-pathogen interactions and lay the groundwork for future host-directed therapy (HDT) strategies targeting Mtb-induced host vulnerabilities.
Research Area: Biological Sciences
Funding Source: Translational Research Program (TRP) (No. BT/PR30159/MED/15/188/2018) of Department of Biotechnology (DBT), Govt. of India.
Project Contributors: Yashwant Kumar

Study uploaded by: Yashwant
Study ID: IMS_100047
Title: A genome-scale metabolic model for deciphering the host metabolic perturbations during Mycobacterium tuberculosis infection
Summary: Conventional tuberculosis (TB) research predominantly relies on forward-designed experiments, such as studying host responses to Mycobacterium tuberculosis (Mtb) gene knockouts. While informative, these approaches offer only a partial view of host-pathogen interactions and often overlook the broader alterations in the host microenvironment during infection. To address this limitation, we adopted a backtracing strategy to retrospectively identify host metabolic modulators and link them to specific Mtb virulence factors. Using RNA-seq data from Mtb-infected mouse lung tissue, we integrated transcriptomic profiles into a genome-scale metabolic model to predict host metabolic genes essential for Mtb survival. This analysis identified 18 host proteins as putative modulators. We then constructed a host-pathogen protein interaction network, which connected these host factors to 9 Mtb proteins. Experimental validation using Mtb knockdown strains confirmed that three genes Rv1970, Rv0243, and Rv2234 play key roles in manipulating host responses rather than supporting intrinsic bacterial viability. Further, we employed targeted proteomics and untargeted metabolomics analyses on THP-1 macrophages infected with these KD strains to dissect the host-pathogen interaction mechanisms in greater detail. These findings in troduce a novel framework for decoding host-pathogen interactions and lay the groundwork for future host-directed therapy (HDT) strategies targeting Mtb-induced host vulnerabilities.
Publication:
Release Date: Dec. 25, 2025
Study Type: Mass Spectrometry (MS)
Data Type: Targeted
IEC/IBSC Approval Number :

Sr.No Sample ID Sample Name Organism Source Sample Preparation Protocol Sample Type Experimental Condition Time of treatment Variant/Variety Gender Age Replicates Storage Conditions Extraction Protocol Number of files per sample
61 IMSM_103729 Uninfected1 Homo sapiens | 9606 Human acute monocytic leukemia cell line THP-1 cells (2x10^6) were seeded in 6-well plates and treated with 50 ng/mL PMA for 36 hours to induce differentiation. After PMA treatment, the medium was replaced with fresh RPMI, and the cells were allowed to mature for an additional 24 hours. Mtb infection was performed at a MOI of 5 and un-infected cells were maintained in parallel culture as control. After 4 hours of infection, extracellular bacteria were removed by three washes with pre-warmed PBS. A complete RPMI medium supplemented with 400 ng/mL ATc was added to the wells to induce the knockdown effect. The infected cells were incubated for 48 hours before being washed again with pre-warmed PBS. Human THP-1 Macrophages Uninfected 48 hours NA NA NA Yes NA

To quench metabolism and extract metabolites, 1 mL of chilled methanol (HPLC grade; Sigma) was added to the cells. The cells were harvested on ice using a scraper, and the resulting extracts were transferred to pre-cooled microcentrifuge tubes (MCTs) maintained at 4°C. The extracts were vortexed for 15 minutes and centrifuged at 12000 rpm for 10 minutes at 4°C. After centrifugation, the supernatants were transferred to fresh pre-cooled MCTs (4°C), dried under vacuum, and reconstituted. The reconstituted samples were stored at -80°C until further analysis by liquid chromatography-mass spectrometry (LC-MS).

4
62 IMSM_103730 Uninfected2 Homo sapiens | 9606 Human acute monocytic leukemia cell line THP-1 cells (2x10^6) were seeded in 6-well plates and treated with 50 ng/mL PMA for 36 hours to induce differentiation. After PMA treatment, the medium was replaced with fresh RPMI, and the cells were allowed to mature for an additional 24 hours. Mtb infection was performed at a MOI of 5 and un-infected cells were maintained in parallel culture as control. After 4 hours of infection, extracellular bacteria were removed by three washes with pre-warmed PBS. A complete RPMI medium supplemented with 400 ng/mL ATc was added to the wells to induce the knockdown effect. The infected cells were incubated for 48 hours before being washed again with pre-warmed PBS. Human THP-1 Macrophages Uninfected 48 hours NA NA NA Yes NA

To quench metabolism and extract metabolites, 1 mL of chilled methanol (HPLC grade; Sigma) was added to the cells. The cells were harvested on ice using a scraper, and the resulting extracts were transferred to pre-cooled microcentrifuge tubes (MCTs) maintained at 4°C. The extracts were vortexed for 15 minutes and centrifuged at 12000 rpm for 10 minutes at 4°C. After centrifugation, the supernatants were transferred to fresh pre-cooled MCTs (4°C), dried under vacuum, and reconstituted. The reconstituted samples were stored at -80°C until further analysis by liquid chromatography-mass spectrometry (LC-MS).

4
63 IMSM_103731 Uninfected3 Homo sapiens | 9606 Human acute monocytic leukemia cell line THP-1 cells (2x10^6) were seeded in 6-well plates and treated with 50 ng/mL PMA for 36 hours to induce differentiation. After PMA treatment, the medium was replaced with fresh RPMI, and the cells were allowed to mature for an additional 24 hours. Mtb infection was performed at a MOI of 5 and un-infected cells were maintained in parallel culture as control. After 4 hours of infection, extracellular bacteria were removed by three washes with pre-warmed PBS. A complete RPMI medium supplemented with 400 ng/mL ATc was added to the wells to induce the knockdown effect. The infected cells were incubated for 48 hours before being washed again with pre-warmed PBS. Human THP-1 Macrophages Uninfected 48 hours NA NA NA Yes NA

To quench metabolism and extract metabolites, 1 mL of chilled methanol (HPLC grade; Sigma) was added to the cells. The cells were harvested on ice using a scraper, and the resulting extracts were transferred to pre-cooled microcentrifuge tubes (MCTs) maintained at 4°C. The extracts were vortexed for 15 minutes and centrifuged at 12000 rpm for 10 minutes at 4°C. After centrifugation, the supernatants were transferred to fresh pre-cooled MCTs (4°C), dried under vacuum, and reconstituted. The reconstituted samples were stored at -80°C until further analysis by liquid chromatography-mass spectrometry (LC-MS).

4
64 IMSM_103732 Uninfected4 Homo sapiens | 9606 Human acute monocytic leukemia cell line THP-1 cells (2x10^6) were seeded in 6-well plates and treated with 50 ng/mL PMA for 36 hours to induce differentiation. After PMA treatment, the medium was replaced with fresh RPMI, and the cells were allowed to mature for an additional 24 hours. Mtb infection was performed at a MOI of 5 and un-infected cells were maintained in parallel culture as control. After 4 hours of infection, extracellular bacteria were removed by three washes with pre-warmed PBS. A complete RPMI medium supplemented with 400 ng/mL ATc was added to the wells to induce the knockdown effect. The infected cells were incubated for 48 hours before being washed again with pre-warmed PBS. Human THP-1 Macrophages Uninfected 48 hours NA NA NA Yes NA

To quench metabolism and extract metabolites, 1 mL of chilled methanol (HPLC grade; Sigma) was added to the cells. The cells were harvested on ice using a scraper, and the resulting extracts were transferred to pre-cooled microcentrifuge tubes (MCTs) maintained at 4°C. The extracts were vortexed for 15 minutes and centrifuged at 12000 rpm for 10 minutes at 4°C. After centrifugation, the supernatants were transferred to fresh pre-cooled MCTs (4°C), dried under vacuum, and reconstituted. The reconstituted samples were stored at -80°C until further analysis by liquid chromatography-mass spectrometry (LC-MS).

4
65 IMSM_103733 Uninfected5 Homo sapiens | 9606 Human acute monocytic leukemia cell line THP-1 cells (2x10^6) were seeded in 6-well plates and treated with 50 ng/mL PMA for 36 hours to induce differentiation. After PMA treatment, the medium was replaced with fresh RPMI, and the cells were allowed to mature for an additional 24 hours. Mtb infection was performed at a MOI of 5 and un-infected cells were maintained in parallel culture as control. After 4 hours of infection, extracellular bacteria were removed by three washes with pre-warmed PBS. A complete RPMI medium supplemented with 400 ng/mL ATc was added to the wells to induce the knockdown effect. The infected cells were incubated for 48 hours before being washed again with pre-warmed PBS. Human THP-1 Macrophages Uninfected 48 hours NA NA NA Yes NA

To quench metabolism and extract metabolites, 1 mL of chilled methanol (HPLC grade; Sigma) was added to the cells. The cells were harvested on ice using a scraper, and the resulting extracts were transferred to pre-cooled microcentrifuge tubes (MCTs) maintained at 4°C. The extracts were vortexed for 15 minutes and centrifuged at 12000 rpm for 10 minutes at 4°C. After centrifugation, the supernatants were transferred to fresh pre-cooled MCTs (4°C), dried under vacuum, and reconstituted. The reconstituted samples were stored at -80°C until further analysis by liquid chromatography-mass spectrometry (LC-MS).

4
66 IMSM_103734 Uninfected6 Homo sapiens | 9606 Human acute monocytic leukemia cell line THP-1 cells (2x10^6) were seeded in 6-well plates and treated with 50 ng/mL PMA for 36 hours to induce differentiation. After PMA treatment, the medium was replaced with fresh RPMI, and the cells were allowed to mature for an additional 24 hours. Mtb infection was performed at a MOI of 5 and un-infected cells were maintained in parallel culture as control. After 4 hours of infection, extracellular bacteria were removed by three washes with pre-warmed PBS. A complete RPMI medium supplemented with 400 ng/mL ATc was added to the wells to induce the knockdown effect. The infected cells were incubated for 48 hours before being washed again with pre-warmed PBS. Human THP-1 Macrophages Uninfected 48 hours NA NA NA Yes NA

To quench metabolism and extract metabolites, 1 mL of chilled methanol (HPLC grade; Sigma) was added to the cells. The cells were harvested on ice using a scraper, and the resulting extracts were transferred to pre-cooled microcentrifuge tubes (MCTs) maintained at 4°C. The extracts were vortexed for 15 minutes and centrifuged at 12000 rpm for 10 minutes at 4°C. After centrifugation, the supernatants were transferred to fresh pre-cooled MCTs (4°C), dried under vacuum, and reconstituted. The reconstituted samples were stored at -80°C until further analysis by liquid chromatography-mass spectrometry (LC-MS).

4

Sr.No MS Exp ID Sample Name/ID Mass Spectrometer Type MS Instrument Name MS Instrument type MS Ionization Method Ion Mode/Scan Polarity Data Transformation (Software/s Used)
11 IME_101718 Rv0243+Atc6 / IMSM_103679 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
12 IME_101719 Rv0243-Atc6 / IMSM_103680 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
13 IME_101720 Rv0410+Atc1 / IMSM_103681 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
14 IME_101721 Rv0410-Atc1 / IMSM_103682 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
15 IME_101722 Rv0410+Atc2 / IMSM_103683 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
16 IME_101723 Rv0410-Atc2 / IMSM_103684 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
17 IME_101724 Rv0410+Atc3 / IMSM_103685 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
18 IME_101725 Rv0410-Atc3 / IMSM_103686 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
19 IME_101726 Rv0410+Atc4 / IMSM_103687 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA
20 IME_101727 Rv0410-Atc4 / IMSM_103688 LCMS (Liquid Chromatography- Mass Spectrometry) Thermo Fusion Tribrid Orbitrap Orbitrap Electrospray Ionization - ESI NEGATIVE NA

Sr.No First name Last name Email Organization Designation
1 Yashwant Kumar y.kumar@thsti.res.in Translational Health Science And Technology Institute (THSTI) principal_investigator

Sr.No ftprun ID MS Exp ID MS Data Files
21 IMR_102332 IME_101728 HILIC_NEG_Rv0410+Atc5.mzXML
22 IMR_102333 IME_101729 HILIC_NEG_Rv0410-Atc5.mzXML
23 IMR_102334 IME_101730 HILIC_NEG_Rv0410+Atc6.mzXML
24 IMR_102335 IME_101731 HILIC_NEG_Rv0410-Atc6.mzXML
25 IMR_102336 IME_101732 HILIC_NEG_Rv1970+Atc1.mzXML
26 IMR_102337 IME_101733 HILIC_NEG_Rv1970-Atc1.mzXML
27 IMR_102338 IME_101734 HILIC_NEG_Rv1970+Atc2.mzXML
28 IMR_102339 IME_101735 HILIC_NEG_Rv1970-Atc2.mzXML
29 IMR_102340 IME_101736 HILIC_NEG_Rv1970+Atc3.mzXML
30 IMR_102341 IME_101737 HILIC_NEG_Rv1970-Atc3.mzXML