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A 63-kDa Periplasmic Protein of the Endonuclear Symbiotic Bacterium Holospora obtusa Secreted to the Outside of the Bacterium during the Early Infection Process Binds Weakly to the Macronuclear DNA of the Host Paramecium caudatum

Microorganisms Volume 11 Issue 1
published_at 2023-01-07
Microorganisms 2023, 11, 155..pdf
[fulltext] 1.44 MB
Supplemental Data : https://public.oa.kenkyu.yamaguchi-u.ac.jp/5f1e2d2d-8d75-4262-b350-1d8cadc0668f
Title
A 63-kDa Periplasmic Protein of the Endonuclear Symbiotic Bacterium Holospora obtusa Secreted to the Outside of the Bacterium during the Early Infection Process Binds Weakly to the Macronuclear DNA of the Host Paramecium caudatum
Creators Fujishima Masahiro
Affiliate Master Yamaguchi University
[kakenhi]15501 grid.268397.1
Creators Kawano Hideaki
Creators Miyakawa Isamu
Affiliate Master Yamaguchi University
[kakenhi]15501 grid.268397.1
Source Identifiers [EISSN] 2076-2607
Creator Keywords
Holospora Paramecium endosymbiont-host interactions infection protein secretion DNA-binding protein PRP1 DNA affinity chromatography environmental adaptation
Languages eng
Resource Type journal article
Publishers MDPI
Date Issued 2023-01-07
Rights
© 2023 by the authors.()
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/license s/by/4.0/).()
Creative Commons Attribution 4.0 International(https://creativecommons.org/licenses/by/4.0/)
File Version Version of Record
Access Rights open access
Relations
[isIdenticalTo] 10.3390/microorganisms11010155
[isSupplementedBy] [URI]https://public.oa.kenkyu.yamaguchi-u.ac.jp/5f1e2d2d-8d75-4262-b350-1d8cadc0668f
Funding Refs
Japan Society for the Promotion of Science [crossref_funder]https://doi.org/10.13039/501100001691
Award Elucidation of establishment of endosymbiosis between Chlorella and Paramecium bursaria 22370082
Funding Refs
Japan Society for the Promotion of Science [crossref_funder]https://doi.org/10.13039/501100001691
Award Analysis of a new defense mechanism against microbial infections found in Paramecium 23657157