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Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS

As part of the Virus-X Consortium that aims to identify and characterize novel proteins and enzymes from bacteriophages and archaeal viruses, the genes of the putative lytic proteins XepA from Bacillus subtilis prophage PBSX and YomS from prophage SPβ were cloned and the proteins were subsequently p...

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Autores principales: Freitag-Pohl, Stefanie, Jasilionis, Andrius, Håkansson, Maria, Svensson, L. Anders, Kovačič, Rebeka, Welin, Martin, Watzlawick, Hildegard, Wang, Lei, Altenbuchner, Josef, Płotka, Magdalena, Kaczorowska, Anna Karina, Kaczorowski, Tadeusz, Nordberg Karlsson, Eva, Al-Karadaghi, Salam, Walse, Björn, Aevarsson, Arnthór, Pohl, Ehmke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6834076/
https://www.ncbi.nlm.nih.gov/pubmed/31692476
http://dx.doi.org/10.1107/S2059798319013330
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author Freitag-Pohl, Stefanie
Jasilionis, Andrius
Håkansson, Maria
Svensson, L. Anders
Kovačič, Rebeka
Welin, Martin
Watzlawick, Hildegard
Wang, Lei
Altenbuchner, Josef
Płotka, Magdalena
Kaczorowska, Anna Karina
Kaczorowski, Tadeusz
Nordberg Karlsson, Eva
Al-Karadaghi, Salam
Walse, Björn
Aevarsson, Arnthór
Pohl, Ehmke
author_facet Freitag-Pohl, Stefanie
Jasilionis, Andrius
Håkansson, Maria
Svensson, L. Anders
Kovačič, Rebeka
Welin, Martin
Watzlawick, Hildegard
Wang, Lei
Altenbuchner, Josef
Płotka, Magdalena
Kaczorowska, Anna Karina
Kaczorowski, Tadeusz
Nordberg Karlsson, Eva
Al-Karadaghi, Salam
Walse, Björn
Aevarsson, Arnthór
Pohl, Ehmke
author_sort Freitag-Pohl, Stefanie
collection PubMed
description As part of the Virus-X Consortium that aims to identify and characterize novel proteins and enzymes from bacteriophages and archaeal viruses, the genes of the putative lytic proteins XepA from Bacillus subtilis prophage PBSX and YomS from prophage SPβ were cloned and the proteins were subsequently produced and functionally characterized. In order to elucidate the role and the molecular mechanism of XepA and YomS, the crystal structures of these proteins were solved at resolutions of 1.9 and 1.3 Å, respectively. XepA consists of two antiparallel β-sandwich domains connected by a 30-amino-acid linker region. A pentamer of this protein adopts a unique dumbbell-shaped architecture consisting of two discs and a central tunnel. YomS (12.9 kDa per monomer), which is less than half the size of XepA (30.3 kDa), shows homology to the C-terminal part of XepA and exhibits a similar pentameric disc arrangement. Each β-sandwich entity resembles the fold of typical cytoplasmic membrane-binding C2 domains. Only XepA exhibits distinct cytotoxic activity in vivo, suggesting that the N-terminal pentameric domain is essential for this biological activity. The biological and structural data presented here suggest that XepA disrupts the proton motive force of the cytoplasmatic membrane, thus supporting cell lysis.
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spelling pubmed-68340762019-11-15 Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS Freitag-Pohl, Stefanie Jasilionis, Andrius Håkansson, Maria Svensson, L. Anders Kovačič, Rebeka Welin, Martin Watzlawick, Hildegard Wang, Lei Altenbuchner, Josef Płotka, Magdalena Kaczorowska, Anna Karina Kaczorowski, Tadeusz Nordberg Karlsson, Eva Al-Karadaghi, Salam Walse, Björn Aevarsson, Arnthór Pohl, Ehmke Acta Crystallogr D Struct Biol Research Papers As part of the Virus-X Consortium that aims to identify and characterize novel proteins and enzymes from bacteriophages and archaeal viruses, the genes of the putative lytic proteins XepA from Bacillus subtilis prophage PBSX and YomS from prophage SPβ were cloned and the proteins were subsequently produced and functionally characterized. In order to elucidate the role and the molecular mechanism of XepA and YomS, the crystal structures of these proteins were solved at resolutions of 1.9 and 1.3 Å, respectively. XepA consists of two antiparallel β-sandwich domains connected by a 30-amino-acid linker region. A pentamer of this protein adopts a unique dumbbell-shaped architecture consisting of two discs and a central tunnel. YomS (12.9 kDa per monomer), which is less than half the size of XepA (30.3 kDa), shows homology to the C-terminal part of XepA and exhibits a similar pentameric disc arrangement. Each β-sandwich entity resembles the fold of typical cytoplasmic membrane-binding C2 domains. Only XepA exhibits distinct cytotoxic activity in vivo, suggesting that the N-terminal pentameric domain is essential for this biological activity. The biological and structural data presented here suggest that XepA disrupts the proton motive force of the cytoplasmatic membrane, thus supporting cell lysis. International Union of Crystallography 2019-11-01 /pmc/articles/PMC6834076/ /pubmed/31692476 http://dx.doi.org/10.1107/S2059798319013330 Text en © Freitag-Pohl et al. 2019 http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/4.0/
spellingShingle Research Papers
Freitag-Pohl, Stefanie
Jasilionis, Andrius
Håkansson, Maria
Svensson, L. Anders
Kovačič, Rebeka
Welin, Martin
Watzlawick, Hildegard
Wang, Lei
Altenbuchner, Josef
Płotka, Magdalena
Kaczorowska, Anna Karina
Kaczorowski, Tadeusz
Nordberg Karlsson, Eva
Al-Karadaghi, Salam
Walse, Björn
Aevarsson, Arnthór
Pohl, Ehmke
Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS
title Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS
title_full Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS
title_fullStr Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS
title_full_unstemmed Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS
title_short Crystal structures of the Bacillus subtilis prophage lytic cassette proteins XepA and YomS
title_sort crystal structures of the bacillus subtilis prophage lytic cassette proteins xepa and yoms
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6834076/
https://www.ncbi.nlm.nih.gov/pubmed/31692476
http://dx.doi.org/10.1107/S2059798319013330
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