增强的C/EBPα功能延长了非洲绿松石鳉的健康寿命。

IF 7.1 1区 医学 Q1 Biochemistry, Genetics and Molecular Biology
Aging Cell Pub Date : 2025-09-19 DOI:10.1111/acel.70211
Christine Müller, Joscha S. Muck, Kirill Ustyantsev, Gertrud Kortman, Josephine Hartung, Eugene Berezikov, Cornelis F. Calkhoven
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引用次数: 0

摘要

转录因子CCAAT/增强子结合蛋白α (C/EBPα)调节多种组织中的细胞分化、增殖和功能,包括肝脏、脂肪组织、皮肤、肺和造血系统。对大鼠、小鼠、人类和鸡的研究表明,CEBPA mRNA经历了不同的翻译起始,产生三种C/EBPα亚型。其中两种同工异构体作为全长转录因子,具有n端反激活域和c端二聚化和dna结合域。第三种异构体是一个n端截断的变体,由下游的AUG密码子翻译而来。它与全长同种异构体竞争DNA结合,从而拮抗其活性。截断的C/EBPα亚型的表达依赖于CEBPA mRNA上游短开放阅读框(uORF)的初始翻译和随后在下游AUG密码子的重新启动,这一过程由mTORC1信号刺激。我们研究了在进化距离较远、寿命较短的非洲绿松石鳉(Nothobranchius furzeri)中,CEBPA基因的同源性是否受到类似机制的调控。我们的研究结果表明,uorf介导的对C/EBPα亚型表达的调节在鳉鱼中是保守的。uORF的破坏选择性地消除了截断的异构体,导致全长C/EBPα异构体的无限制活性。这一基因修饰显著延长了雄性褐僵菌的中位寿命和最长寿命,改善了其健康寿命。此外,比较转录组分析揭示了在其他物种中与健康寿命和寿命调节相关的基因和途径的上调。这些结果强调了CEBPA基因跨物种调控的保守机制及其在调节寿命和衰老表型中的潜在作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced C/EBPα Function Extends Healthspan and Lifespan in the African Turquoise Killifish

Enhanced C/EBPα Function Extends Healthspan and Lifespan in the African Turquoise Killifish

The transcription factor CCAAT/enhancer binding protein alpha (C/EBPα) regulates cell differentiation, proliferation, and function in various tissues, including the liver, adipose tissue, skin, lung, and hematopoietic system. Studies in rats, mice, humans, and chickens have shown that CEBPA mRNA undergoes alternative translation initiation, producing three C/EBPα isoforms. Two of these isoforms act as full-length transcription factors with N-terminal transactivation domains and a C-terminal dimerization and DNA-binding domain. The third isoform is an N-terminally truncated variant, translated from a downstream AUG codon. It competes with full-length isoforms for DNA binding, thereby antagonizing their activity. Expression of the truncated C/EBPα isoform depends on the initial translation of a short upstream open reading frame (uORF) in the CEBPA mRNA and subsequent re-initiation at a downstream AUG codon, a process stimulated by mTORC1 signaling. We investigated whether the ortholog of the CEBPA gene in the evolutionarily distant, short-lived African turquoise killifish (Nothobranchius furzeri) is regulated by similar mechanisms. Our findings reveal that the uORF-mediated regulation of C/EBPα isoform expression is conserved in killifish. Disruption of the uORF selectively eliminates the truncated isoform, leading to unrestrained activity of the full-length C/EBPα isoforms. This genetic modification significantly extended both the median and maximum lifespan and improved the healthspan of male N. furzeri. Furthermore, comparative transcriptome analysis revealed an upregulation of genes and pathways that are associated with healthspan and lifespan regulation in other species. These results highlight a conserved mechanism of CEBPA gene regulation across species and its potential role in modulating the lifespan and aging phenotypes.

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来源期刊
Aging Cell
Aging Cell 生物-老年医学
CiteScore
14.40
自引率
2.60%
发文量
212
审稿时长
8 weeks
期刊介绍: Aging Cell, an Open Access journal, delves into fundamental aspects of aging biology. It comprehensively explores geroscience, emphasizing research on the mechanisms underlying the aging process and the connections between aging and age-related diseases.
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