Structural and Functional Characterization of Phosphatidylinositol-Phosphate Biosynthesis in Mycobacteria
JOURNAL OF MOLECULAR BIOLOGY
Authors: Dufrisne, Meagan Belcher; Jorge, Carla D.; Timoteo, Cristina G.; Petrou, Vasileios, I; Ashraf, Khuram U.; Banerjee, Surajit; Clarke, Oliver B.; Santos, Helena; Mancia, Filippo
Abstract
In mycobacteria, phosphatidylinositol (PI) acts as a common lipid anchor for key components of the cell wall, including the glycolipids phosphatidylinositol mannoside, lipomannan, and lipoarabinomannan. Glycolipids in Mycobacterium tuberculosis, the causative agent of tuberculosis, are important virulence factors that modulate the host immune response. The identity-defining step in PI biosynthesis in prokaryotes, unique to mycobacteria and few other bacterial species, is the reaction between cytidine diphosphate-diacylglycerol and inositol-phosphate to yield phosphatidylinositol-phosphate, the immediate precursor to Pl. This reaction is catalyzed by the cytidine diphosphate-alcohol phosphotransferase phosphatidylinositol-phosphate synthase (PIPS), an essential enzyme for mycobacterial viability. Here we present structures of PIPS from Mycobacterium kansasii with and without evidence of donor and acceptor substrate binding obtained using a crystal engineering approach. PIPS from Mycobacterium kansasii is 86% identical to the ortholog from M. tuberculosis and catalytically active. Functional experiments guided by our structural results allowed us to further characterize the molecular determinants of substrate specificity and catalysis in a new mycobacterial species. This work provides a framework to strengthen our understanding of phosphatidylinositol-phosphate biosynthesis in the context of mycobacterial pathogens. (C) 2020 Elsevier Ltd. All rights reserved.
Prevalence of nontuberculous mycobacteria in a tertiary hospital in Beijing, China, January 2013 to December 2018
BMC MICROBIOLOGY
Authors: Huang, Jing-jing; Li, Ying-xing; Zhao, Ying; Yang, Wen-hang; Xiao, Meng; Kudinha, Timothy; Xu, Ying-chun
Abstract
Background To investigate the species distribution of non-tuberculous mycobacteria (NTM) among tuberculosis (TB) specimens collected from January 2013 to December 2018 at Peking Union Medical Hospital (Beijing), China. NTM species identification was carried out by DNA microarray chip. Results Mycobacterial species were detected in 1514 specimens from 1508 patients, among which NTM accounted for 37.3% (565/1514), increasing from a proportion of 15.6% in 2013 to 46.1% in 2018 (P < 0.001). Among the 565 NTM positive specimens, the majority (55.2%) were from female patients. Furthermore, patients aged 45-65 years accounted for 49.6% of the total patients tested. Among 223 NTM positive specimens characterized further, the majority (86.2%) were from respiratory tract, whilst 3.6 and 3.1% were from lymph nodes and pus, respectively.Mycobacterium intracellulare(31.8%) andMycobacterium chelonae/Mycobacterium abscessus(21.5%) were the most frequently detected species, followed byM. avium(13.5%),M. gordonae(11.7%),M. kansasii(7.6%), and others. Conclusion The proportion of NTM among mycobacterial species detected in a tertiary hospital in Beijing, China, increased rapidly from year 2013 to 2018. Middle-aged patients are more likely to be infected with NTM, especially females.Mycobacterium intracellulareandMycobacterium chelonae/Mycobacterium abscessuswere the most frequently detected NTM pathogens. Accurate and timely identification of NTM is important for diagnosis and treatment.