Metabolic Proteins Expression Up-Regulated in Blood-Borne Extensively Drug-Resistant Typhi Isolates from Pakistan.

Medicina (Kaunas)

Department of Clinical Laboratories Sciences, College of Applied Medical Sciences, Taif University, P.O. Box 11099, Taif 21944, Saudi Arabia.

Published: August 2024

AI Article Synopsis

  • * A total of 1267 proteins were identified, with 37 showing differential regulation—28 proteins were up-regulated, primarily involved in metabolic processes, while 9 proteins were down-regulated, linked to carbon metabolism and amino acid biosynthesis.
  • * Most of the differentially expressed proteins were predicted to be antigenic and associated with resistance data, providing insights into the molecular mechanisms underlying the emergence of XDR Typhi.

Article Abstract

: In the undertaken study, proteomics alterations of blood-borne XDR Typhi isolated from Pakistan were investigated using mass spectrometry. : MDR and XDR Typhi total protein lysates were fractionated, digested, and processed for nanoflow LC-LTQ- analysis. : Among the 1267 identified proteins, 37 were differentially regulated, of which 28 were up-regulated, and 9 were down-regulated in XDR Typhi as compared to MDR Typhi. Based on the functional annotation, proteins found up-regulated are involved mainly in metabolic pathways (ManA, FadB, DacC, GpmA, AphA, PfkB, TalA, FbaB, OtsA, 16504242), the biosynthesis of secondary metabolites (ManA, FadB, GlpB, GpmA, PfkB, TalA, FbaB, OtsA), microbial metabolism in diverse environments (FadB, GpmA, PfkB, NfnB, TalA, FbaB), and ABC transporters (PstS, YbeJ, MglB, RbsB, ArtJ). Proteins found down-regulated are involved mainly in carbon metabolism (FadB, GpmA, PfkB, FalA, FbaB) and the biosynthesis of amino acids (GpmA, PfkB, TalA, FbaB). Most of the identified differential proteins were predicted to be antigenic, and matched with resistome data. : A total of 28 proteins were up-regulated, and 9 were down-regulated in XDR Typhi. Further characterization of the identified proteins will help in understanding the molecular signaling involved in the emergence of XDR . Typhi.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11433874PMC
http://dx.doi.org/10.3390/medicina60091404DOI Listing

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