Genome-Wide Pathway Exploration of the Epidermidibacterium keratini EPI-7T

Author:

Oh Yunseok12ORCID,Mun Seyoung23ORCID,Choi Young-Bong4,Jo HyungWoo25,Lee Dong-Geol25,Han Kyudong1236ORCID

Affiliation:

1. Department of Bioconvergence Engineering, Dankook University, Jukjeon, Yongin 16890, Republic of Korea

2. Department of Microbiology, College of Science & Technology, Dankook University, Cheonan 31116, Republic of Korea

3. Center for Bio Medical Engineering Core Facility, Dankook University, Cheonan 31116, Republic of Korea

4. Department of Chemistry, College of Science & Technology, Dankook University, Cheonan 31116, Republic of Korea

5. R&I Center, COSMAX BTI, Pangyo-ro 255, Bundang-gu, Seongnam 13486, Republic of Korea

6. R&D Center, HuNBiome Co., Ltd., Gasan Digital 1-ro, Geumcheon-gu, Seoul 08507, Republic of Korea

Abstract

Functional cosmetics industries using skin microbiome screening and beneficial materials isolated from key microorganisms are receiving increasing attention. Since Epidermidibacterium keratini EPI-7T was first discovered in human skin, previous studies have confirmed that it can produce a new pyrimidine compound, 1,1′-biuracil, having anti-aging effects on human skin. Therefore, we conducted genomic analyses to judge the use value of E. keratini EPI-7T and provide up-to-date information. Whole-genome sequencing analysis of E. keratini EPI-7T was performed to generate new complete genome and annotation information. E. keratini EPI-7T genome was subjected to comparative genomic analysis with a group of closely-related strains and skin flora strains through bioinformatic analysis. Furthermore, based on annotation information, we explored metabolic pathways for valuable substances that can be used in functional cosmetics. In this study, the whole-genome sequencing (WGS) and annotation results of E. keratini EPI-7T were improved, and through comparative analysis, it was confirmed that the E. keratini EPI-7T has more metabolite-related genes than comparison strains. In addition, we annotated the vital genes for biosynthesis of 20 amino acids, orotic acid, riboflavin (B2) and chorismate. In particular, we were able to prospect that orotic acid could accumulate inside E. keratini EPI-7T under uracil-enriched conditions. Therefore, through a genomics approach, this study aims to provide genetic information for the hidden potential of E. keratini EPI-7T and the strain development and biotechnology utilization to be conducted in further studies.

Funder

Korea Health Technology R&D Project through the Korea Health Industry Development Institute

Ministry of Health & Welfare, Republic of Korea

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference81 articles.

1. Epidermidibacterium keratini gen. nov., sp. nov., a member of the family Sporichthyaceae, isolated from keratin epidermis;Lee;Int. J. Syst. Evol. Microbiol.,2018

2. A 1,1′-biuracil from Epidermidibacterium keratini EPI-7 shows anti-aging effects on human dermal fibroblasts;Lee;Appl. Biol. Chem.,2019

3. Kang, M. (2021). Exploring Anti-Aging Compounds Produced by Epidermidibacterium Keratini EPI-7 Strain Derived from Skin Microbiome, Gyeongsang National University Graduate School.

4. Next generation sequencing technology: Advances and applications;Buermans;Biochim. Biophys. Acta BBA-Mol. Basis Dis.,2014

5. Ten years of next-generation sequencing technology;Auger;Trends Genet.,2014

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