OMIX

Proteomic analyses of smear-positive/negative tuberculosis patients uncover differential antigen-presenting cell activation and lipid metabolism

OMIX004336

1Summary
Title Proteomic analyses of smear-positive/negative tuberculosis patients uncover differential antigen-presenting cell activation and lipid metabolism
Description Smear-Negative Pulmonary Tuberculosis (SNPT) and Smear-Positive Pulmonary Tuberculosis (SPPT) are two common types of pulmonary tuberculosis characterized by distinct bacterial loads. To date, the precise molecular mechanisms underlying the differences between SNPT and SPPT patients remain unclear and no studies have yet employed proteomic analysis to unravel the differential molecular mechanisms between SNPT and SPPT. Our findings comprehensively revealed differential immune and metabolic mechanisms/microenvironments between SPPT and SNPT plasma samples, and reveal the critical role of antigen-presenting cells in SNPT for clearing up the majority of Mtb in bodies.Our study provides valuable insights into the differential molecular mechanisms underlying SNPT and SPPT, reveals the critical role of antigen-presenting cell activation in SNPT for effectively clearing the majority of Mtb in bodies, and shows the possibility of APC activation as a novel TB treatment strategy.
Organism Homo sapiens
Data Type Proteomic Data by Mass Spectrometry (MS)
Data Accessibility Controlled-access
BioProject PRJCA017696
Release Date 2023-11-13
Submitter Fei Chen (chenfei@big.ac.cn)
Organization Beijing Institute of Genomics, Chinese Academy of Sciences
Submission Date 2023-06-14
2Files & Download

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File ID File Title Number/Samples File Type File Size File Suffix Download Times Download
OMIX004336-01 TMT-labeled quantitative proteomic data 14 Proteomic Data by Mass Spectrometry (MS) 2.9 GB tar 0 Controlled
OMIX004336-02 Targeted lipidomic data 62 Proteomic Data by Mass Spectrometry (MS) 15.27 MB tar 0 Controlled
OMIX004336-03 PRM targeted quantitative proteomic data 100 Proteomic Data by Mass Spectrometry (MS) 64.77 GB tar 0 Controlled

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