Gene content, phage cycle regulation model and prophage inactivation disclosed by prophage genomics in the Helicobacter pylori Genome Project

Descripción del Articulo

Prophages can have major clinical implications through their ability to change pathogenic bacterial traits. There is limited understanding of the prophage role in ecological, evolutionary, adaptive processes and pathogenicity of Helicobacter pylori, a widespread bacterium causally associated with ga...

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Detalles Bibliográficos
Autores: Vale, FF, Roberts, RJ, Kobayashi, I, Camargo, MC, Rabkin, CS, Wang, D, Hicks, B, Zhu, B, Yeager, M, Hutchinson, A, Teshome, K, Jones, K, Luo, W, Goldstein, AM, Hu, N, Taylor, PR, Song, M, Gutiérrez-Escobar, AJ, Yu, K, Abnet, CC, Chanock, SJ, Romero-Gallo, J, Krishna, U, Peek, RM, Piazuelo, MB, Wilson, KT, Loh, JT, Cover, TL, Raaf, N, Aftab, H, Akada, J, Matsumoto, T, Yamaoka, Y, Haesebrouck, F, Bartelli, TF, Nunes, DN, Pelosof, A, Sztokfisz, CZ, Dias-Neto, E, Assumpção, PP, Tishkov, I, Goodman, KJ, Geary, J, Cromarty, TJ, Price, NL, Quilty, D, Corvalan, AH, Serrano, CA, Gonzalez, R, Riquelme, A, García-Cancino, A, Parra-Sepúlveda, C, Castillo, F, Bravo, MM, Pazos, A, Bravo, LE, Fox, JG, Ramírez-Mayorga, V, Molina-Castro, S, Durán-Bermúdez, S, Campos-Núñez, C, Chaves-Cervantes, M, Tshibangu-Kabamba, E, Tumba, GD, Tshimpi-Wola, A, de Jesus Ngoma-Kisoko, P, Ngoyi, DM, Cruz, M, Hosking, C, Abreu, JJ, Varon, C, Benejat, L, Jehanne, Q, Lehours, P, Megraud, F, Secka, O, Link, A, Malfertheiner, P, Adinortey, MB, Bockarie, AS, Adinortey, CA, Ofori, EG, Sgouras, DN, Martinez-Gonzalez, B, Michopoulos, S, Georgopoulos, S, Hernandez, E, Dominguez, RL, Morgan, DR, Harðardóttir, H, Gunnarsdóttir, AI, Guðjónsson, H, Jónasson, JG, Björnsson, ES, Ballal, M, Shetty, V, Miftahussurur, M, Sugihartono, T, Alfaray, RI, Waskito, LA, Fauzia, KA
Formato: artículo
Fecha de Publicación:2024
Institución:Instituto Nacional de Enfermedades Neoplásicas
Repositorio:INEN-Institucional
Lenguaje:inglés
OAI Identifier:oai:repositorio.inen.sld.pe:20.500.14703/345
Enlace del recurso:https://hdl.handle.net/20.500.14703/345
Nivel de acceso:acceso abierto
Materia:genome rearrangement
H. pylori
HpGP
mobile elements
phage cycle
prophage
https://purl.org/pe-repo/ocde/ford#3.02.21
Descripción
Sumario:Prophages can have major clinical implications through their ability to change pathogenic bacterial traits. There is limited understanding of the prophage role in ecological, evolutionary, adaptive processes and pathogenicity of Helicobacter pylori, a widespread bacterium causally associated with gastric cancer. Inferring the exact prophage genomic location and completeness requires complete genomes. The international Helicobacter pylori Genome Project (HpGP) dataset comprises 1011 H. pylori complete clinical genomes enriched with epigenetic data. We thoroughly evaluated the H. pylori prophage genomic content in the HpGP dataset. We investigated population evolutionary dynamics through phylogenetic and pangenome analyses. Additionally, we identified genome rearrangements and assessed the impact of prophage presence on bacterial gene disruption and methylome. We found that 29.5% (298) of the HpGP genomes contain prophages, of which only 32.2% (96) were complete, minimizing the burden of prophage carriage. The prevalence of H. pylori prophage sequences was variable by geography and ancestry, but not by disease status of the human host. Prophage insertion occasionally results in gene disruption that can change the global bacterial epigenome. Gene function prediction allowed the development of the first model for lysogenic-lytic cycle regulation in H. pylori. We have disclosed new prophage inactivation mechanisms that appear to occur by genome rearrangement, merger with other mobile elements, and pseudogene accumulation. Our analysis provides a comprehensive framework for H. pylori prophage biological and genomics, offering insights into lysogeny regulation and bacterial adaptation to prophages. © 2024 The Author(s). Published with license by Taylor & Francis Group, LLC.
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