Cell lineage-specific mitochondrial resilience during mammalian organogenesis

生物 线粒体DNA 线粒体 线粒体融合 细胞生物学 DNAJA3公司 转录因子 基因 遗传学 细胞器 转录调控 器官发生 谱系(遗传)
作者
Stephen P. Burr,Florian Klimm,Angelos Glynos,Malwina Prater,Pamella Sendon,P. Nash,Christopher A. Powell,Marie‐Lune Simard,Nina A. Bonekamp,Julia Charl,Héctor Díaz-Maldonado,Lyuba V. Bozhilova,Yu Nie,Haixin Zhang,Michele Frison,Maria Falkenberg,Nick S. Jones,Michal Minczuk,James B. Stewart,Patrick F. Chinnery
出处
期刊:Cell [Elsevier]
卷期号:186 (6): 1212-1229.e21 被引量:18
标识
DOI:10.1016/j.cell.2023.01.034
摘要

Mitochondrial activity differs markedly between organs, but it is not known how and when this arises. Here we show that cell lineage-specific expression profiles involving essential mitochondrial genes emerge at an early stage in mouse development, including tissue-specific isoforms present before organ formation. However, the nuclear transcriptional signatures were not independent of organelle function. Genetically disrupting intra-mitochondrial protein synthesis with two different mtDNA mutations induced cell lineage-specific compensatory responses, including molecular pathways not previously implicated in organellar maintenance. We saw downregulation of genes whose expression is known to exacerbate the effects of exogenous mitochondrial toxins, indicating a transcriptional adaptation to mitochondrial dysfunction during embryonic development. The compensatory pathways were both tissue and mutation specific and under the control of transcription factors which promote organelle resilience. These are likely to contribute to the tissue specificity which characterizes human mitochondrial diseases and are potential targets for organ-directed treatments.
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