Understanding a Core Pilin of the Type IVa Pili of Acidithiobacillus thiooxidans , PilV

Pilins are protein subunits of pili. The pilins of type IV pili (T4P) in pathogenic bacteria are well characterized, but anything is known about the T4P proteins in acidophilic chemolithoautotrophic microorganisms such as the genus . The interest in T4P of is because of their possible role in cell r...

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Veröffentlicht in:Journal of microbiology and biotechnology 2024-03, Vol.34 (3), p.527-537
Hauptverfasser: Hernández-Sánchez, Araceli, Páez-Pérez, Edgar D, Alfaro-Saldaña, Elvia, Olivares-Illana, Vanesa, García-Meza, J Viridiana
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Sprache:eng
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Zusammenfassung:Pilins are protein subunits of pili. The pilins of type IV pili (T4P) in pathogenic bacteria are well characterized, but anything is known about the T4P proteins in acidophilic chemolithoautotrophic microorganisms such as the genus . The interest in T4P of is because of their possible role in cell recruitment and bacterial aggregation on the surface of minerals during biooxidation of sulfide minerals. In this study we present a successful methodology for the heterologous expression and purification of extracellular proteins such as the minor pilin PilV of the T4P of , a pilin exposed to extreme conditions of acidity and high oxidation-reduction potentials, and that interact with metal sulfides in an environment rich in dissolved minerals. Once obtained, the model structure of PilV revealed the core basic architecture of T4P pilins. Because of the acidophilic condition, we carried out characterization of the protonation status of acidic and basic residues of PilV in order to calculate the ionization state at specific pH values and evaluated their pH stability. Further biophysical characterization was done using UV-visible and fluorescence spectroscopy and the results showed that PilV remains soluble and stable even after exposure to significant changes of pH. PilV has a unique amino acid composition that exhibits acid stability, with significant biotechnology implications such as biooxidation of sulfide minerals. The biophysics profiles of PilV open new paradigms about resilient proteins and stimulate the study of other pilins from extremophiles.
ISSN:1017-7825
1738-8872
DOI:10.4014/jmb.2310.10033