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Staphylococcus aureus Genomes Harbor Only MpsAB-Like Bicarbonate Transporter but Not Carbonic Anhydrase as Dissolved Inorganic Carbon Supply System

Sook-Ha Fan, Elisa Liberini, Friedrich Götz

2021Microbiology Spectrum12 citationsDOIOpen Access PDF

Abstract

The discrepancies in the current literature and even in NCBI database, which listed some protein sequences annotated as Staphylococcus aureus carbonic anhydrase (CA), are misleading. One of the existing problems in publicly available sequence databases is the presence of incorrectly annotated genes, especially if they originated from unfinished genomes. Here, we demonstrate that some of these unfinished genomes are of poor quality and should be interpreted with caution. In the present study, we aimed to address these discrepancies and correct the current literature about S. aureus CA, considering the medical relevance of S. aureus. If left unchecked, these misleading studies and wrongly annotated genes might lead to a continual propagation of wrong annotation and, consequently, wrong interpretations and wasted time. In addition, we also show that bicarbonate transporter MpsAB-harboring bacteria are resistant to CA inhibitor, suggesting that pathogens possessing both MpsAB and CA are not treatable with CA inhibitors.

Topics & Concepts

Staphylococcus aureusBicarbonateCarbonic anhydraseTransporterBiochemistryMicrobiologyBacteriaGenomeChemistryAutotrophBiologyWhole genome sequencingStaphylococcusEnzymeMicrococcaceaeBacterial geneticsStaphylococcal infectionsGeneMutantMembrane transport proteinGeneticsEnzyme function and inhibitionEnzyme Structure and FunctionMetalloenzymes and iron-sulfur proteins
Staphylococcus aureus Genomes Harbor Only MpsAB-Like Bicarbonate Transporter but Not Carbonic Anhydrase as Dissolved Inorganic Carbon Supply System | Litcius