Porphyromonas gingivalis Induces Increases in Branched-Chain Amino Acid Levels and Exacerbates Liver Injury Through livh/livk.
Porphyromonas gingivalisはlivh/livkを介して分岐鎖アミノ酸レベルを上昇させ、肝障害を悪化させる (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- 動物
- 出版年
- 2022
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
歯周病原菌Porphyromonas gingivalisは非アルコール性脂肪性肝疾患(NAFLD)のリスク因子であるが、その機序は不明である。本研究では、デュアルRNAシーケンスにより細胞内P. gingivalisと感染宿主細胞のトランスクリプトームを解析し、分岐鎖アミノ酸(BCAA)輸送に関わるlivkおよびlivh遺伝子の発現上昇を確認した。次に、livh/livk欠損株を構築し、高脂肪食(HFD)負荷マウスに感染させた。その結果、野生株感染は血清BCAAレベルを上昇させ肝障害を悪化させたが、欠損株ではその効果が消失した。また、livh欠損は細菌の増殖、EPS産生、侵入能、定着能に影響しなかったが、livk欠損は侵入能と定着能をわずかに低下させた。以上より、P. gingivalisはBCAA輸送系を介して血清BCAAを増加させ、NAFLD進行を悪化させる可能性が示唆された。
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抄録
Porphyromonas gingivalis, a keystone periodontal pathogen, has emerged as a risk factor for systemic chronic diseases, including non-alcoholic fatty liver disease (NAFLD). To clarify the mechanism by which this pathogen induces such diseases, we simultaneously analyzed the transcriptome of intracellular P. gingivalis and infected host cells via dual RNA sequencing. Pathway analysis was also performed to determine the differentially expressed genes in the infected cells. Further, the infection-induced notable expression of P. gingivalis livk and livh genes, which participate in branched-chain amino acid (BCAA) transfer, was also analyzed. Furthermore, given that the results of recent studies have associated NAFLD progression with elevated serum BCAA levels, which reportedly, are upregulated by P. gingivalis, we hypothesized that this pathogen may induce increases in serum BCAA levels and exacerbate liver injury via livh/livk. To verify this hypothesis, we constructed P. gingivalis livh/livk-deficient strains (Δlivk, Δlivh) and established a high-fat diet (HFD)-fed murine model infected with P. gingivalis. Thereafter, the kinetic growth and exopolysaccharide (EPS) production rates as well as the invasion efficiency and in vivo colonization of the mutant strains were compared with those of the parental strain. The serum BCAA and fasting glucose levels of the mice infected with either the wild-type or mutant strains, as well as their liver function were also further investigated. It was observed that P. gingivalis infection enhanced serum BCAA levels and aggravated liver injury in the HFD-fed mice. Additionally, livh deletion had no effect on bacterial growth, EPS production, invasion efficiency, and in vivo colonization, whereas the Δlivk strain showed a slight decrease in invasion efficiency and in vivo colonization. More importantly, however, both the Δlivk and Δlivh strains showed impaired ability to upregulate serum BCAA levels or exacerbate liver injury in HFD-fed mice. Overall, these results suggested that P. gingivalis possibly aggravates NAFLD progression in HFD-fed mice by increasing serum BCAA levels, and this effect showed dependency on the bacterial BCAA transport system.
MeSH
DOI 10.3389/fcimb.2022.776996
PMID 35360107
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