丁酸盐
物候学
TFAM公司
生物
线粒体DNA
线粒体
细胞生物学
基因剔除小鼠
丁酸钠
粒线体疾病
转基因小鼠
线粒体融合
表观遗传学
组蛋白
肠道菌群
自噬
转基因
失调
转录因子
内分泌学
遗传学
线粒体生物发生
内科学
线粒体基质
DNAJA3公司
硫辛酸
作者
E. Gabandé-Rodríguez,Manuel M. Gómez de las Heras,Pablo Ramírez-Ruiz de Erenchun,Carolina Simó,Virginia García-Cañas,Naohiro Inohara,Inés Berenguer-López,Violeta Enriquez-Zarralanga,Álvaro Fernández-Almeida,Jorge Oller,G. Soto-Heredero,Elisa Carrasco,Cristina Vázquez-Muñoz,Sandra Delgado-Pulido,José Ignacio Escrig-Larena,Isaac Francos-Quijorna,Raquel Justo-Méndez,Juan Aranda,Joanna Poulton,Ana Victoria Lechuga‐Vieco
标识
DOI:10.1038/s41467-026-70547-4
摘要
(iTfamKO) mice. Systemic TFAM deficiency triggers mitochondrial decline in a myriad of tissues in adult mice. Consequently, iTfamKO mice manifest multiorgan dysfunction including lipodystrophy, sarcopenia, metabolic alterations, kidney failure, neurodegeneration, and locomotor dysregulation, which result in the premature death of these mice. Interestingly, iTfamKO mice display intestinal barrier disruption and gut dysbiosis, with diminished levels of microbiota-derived short-chain fatty acids (SCFAs), such as butyrate. Mice with a deficient proof-reading version of the mtDNA polymerase gamma (mtDNA-mutator mice) phenocopy the dysfunction of the intestinal barrier and bacterial dysbiosis with reduced levels of butyrate, suggesting that different mouse models of mitochondrial dysfunction share insufficient generation of butyrate. Transfer of microbiota from healthy control mice or administration of tributyrin, a butyrate precursor, delay multiple signs of multimorbidity, extending lifespan in iTfamKO mice. Mechanistically, butyrate supplementation recovers epigenetic histone acylation marks that are lost in the intestine of Tfam deficient mice. Overall, our findings highlight the relevance of preserving host-microbiota symbiosis in disorders related to mitochondrial dysfunction.
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