ArticleBMC genomics2021
Comparison of carbohydrate ABC importers from Mycobacterium tuberculosis.
Article in BMC genomics, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed, 11 citations in OpenAlex.
- Mutations in sugar metabolism-related genes driving global drug-resistant Mycobacterium tuberculosis transmission revealed by whole-genome sequencing.BMC infectious diseases · 2026Article
- A Key Metabolic Protein in Active Mycobacterium tuberculosis: Insights into Carbon, Nitrogen, and Sulfur Metabolism.Advances in experimental medicine and biology · 2026Review
- Structurally diverse C-terminal accessory domains in type I ABC importers reveal distinct regulatory mechanisms.Structure (London, England : 1993) · 2025Review
- ATP-binding cassette (ABC) transporters: structures and roles in bacterial pathogenesis.Journal of Zhejiang University. Science. B · 2024Review
- Prolonged survival of a patient with active MDR-TB HIV co-morbidity: insights from aFrontiers in medicine · 2023Article
- The Complete Genome of the "Flavescence Dorée" Phytoplasma Reveals Characteristics of Low Genome Plasticity.Biology · 2022Article
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Authors and funding
5 authors at 2 institutions in 3 countries.
Funding
Abstract
backgroundMycobacterium tuberculosis, the etiological agent of tuberculosis, has at least four ATP-Binding Cassette (ABC) transporters dedicated to carbohydrate uptake: LpqY/SugABC, UspABC, Rv2038c-41c, and UgpAEBC. LpqY/SugABC transporter is essential for M. tuberculosis survival in vivo and potentially involved in the recycling of cell wall components. The three-dimensional structures of substrate-binding proteins (SBPs) LpqY, UspC, and UgpB were described, however, questions about how these proteins interact with the cognate transporter are still being explored. Components of these transporters, such as SBPs, show high immunogenicity and could be used for the development of diagnostic and therapeutic tools. In this work, we used a phylogenetic and structural bioinformatics approach to compare the four systems, in an attempt to predict functionally important regions.
resultsThrough the analysis of the putative orthologs of the carbohydrate ABC importers in species of Mycobacterium genus it was shown that Rv2038c-41c and UgpAEBC systems are restricted to pathogenic species. We showed that the components of the four ABC importers are phylogenetically separated into four groups defined by structural differences in regions that modulate the functional activity or the interaction with domain partners. The regulatory region in nucleotide-binding domains, the periplasmic interface in transmembrane domains and the ligand-binding pocket of the substrate-binding proteins define their substrates and segregation in different branches. The interface between transmembrane domains and nucleotide-binding domains show conservation of residues and charge.
conclusionsThe presence of four ABC transporters in M. tuberculosis dedicated to uptake and transport of different carbohydrate sources, and the exclusivity of at least two of them being present only in pathogenic species of Mycobacterium genus, highlights their relevance in virulence and pathogenesis. The significant differences in the SBPs, not present in eukaryotes, and in the regulatory region of NBDs can be explored for the development of inhibitory drugs targeting the bacillus. The possible promiscuity of NBDs also contributes to a less specific and more comprehensive control approach.
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