Functional and structural characterization of PII‐like protein CutA does not support involvement in heavy metal tolerance and hints at a small‐molecule carrying/signaling role

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Título: Functional and structural characterization of PII‐like protein CutA does not support involvement in heavy metal tolerance and hints at a small‐molecule carrying/signaling role
Autor/es: Selim, Khaled A. | Tremiño, Lorena | Marco‐Marín, Clara | Alva, Vikram | Espinosa, Javier | Contreras, Asunción | Hartmann, Marcus D. | Forchhammer, Karl | Rubio, Vicente
Grupo/s de investigación o GITE: Transducción de Señales en Bacterias
Centro, Departamento o Servicio: Universidad de Alicante. Departamento de Fisiología, Genética y Microbiología
Palabras clave: Cyanobacteria | Heavy metal tolerance | Nostoc sp. PCC 7120 | PII superfamily | PII-like protein CutA | Signal transduction | Synechococcus elongatus PCC 7942
Área/s de conocimiento: Genética
Fecha de publicación: feb-2021
Editor: John Wiley & Sons
Cita bibliográfica: The FEBS Journal. 2021, 288(4): 1142-1162. https://doi.org/10.1111/febs.15464
Resumen: The PII‐like protein CutA is annotated as being involved in Cu2+ tolerance, based on analysis of Escherichia coli mutants. However, the precise cellular function of CutA remains unclear. Our bioinformatic analysis reveals that CutA proteins are universally distributed across all domains of life. Based on sequence‐based clustering, we chose representative cyanobacterial CutA proteins for physiological, biochemical, and structural characterization and examined their involvement in heavy metal tolerance, by generating CutA mutants in filamentous Nostoc sp. and in unicellular Synechococcus elongatus. However, we were unable to find any involvement of cyanobacterial CutA in metal tolerance under various conditions. This prompted us to re‐examine experimentally the role of CutA in protecting E. coli from Cu2+. Since we found no effect on copper tolerance, we conclude that CutA plays a different role that is not involved in metal protection. We resolved high‐resolution CutA structures from Nostoc and S. elongatus. Similarly to their counterpart from E. coli and to canonical PII proteins, cyanobacterial CutA proteins are trimeric in solution and in crystal structure; however, no binding affinity for small signaling molecules or for Cu2+ could be detected. The clefts between the CutA subunits, corresponding to the binding pockets of PII proteins, are formed by conserved aromatic and charged residues, suggesting a conserved binding/signaling function for CutA. In fact, we find binding of organic Bis‐Tris/MES molecules in CutA crystal structures, revealing a strong tendency of these pockets to accommodate cargo. This highlights the need to search for the potential physiological ligands and for their signaling functions upon binding to CutA.
Patrocinador/es: This work was supported by grants from DFG to K.F. (Fo195/9-2, RTG 1708-2), from DAAD to K.A.S, from the Spanish Government to V.R. and C.M-M. (BFU2014-58229-P, BFU2017-84264-P) and to A.C. (BFU2015-66360-P), and from BioStruct-X (EU) to V.R. for synchrotron access (grant agreement N°283570, proposal 7687), and by Open Access Publishing of Tübingen University.
URI: http://hdl.handle.net/10045/113040
ISSN: 1742-464X (Print) | 1742-4658 (Online)
DOI: 10.1111/febs.15464
Idioma: eng
Tipo: info:eu-repo/semantics/article
Derechos: © 2020 The Authors. The FEBS Journal published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies. This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
Revisión científica: si
Versión del editor: https://doi.org/10.1111/febs.15464
Aparece en las colecciones:INV - TSB - Artículos de Revistas

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