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NPJ Aging and Mechanisms of Disease最新文献

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A parthenogenetic quasi-program causes teratoma-like tumors during aging in wild-type C. elegans. 在野生型秀丽隐杆线虫衰老过程中,孤雌生殖准程序引起畸胎瘤样肿瘤。
IF 5 Q1 GERIATRICS & GERONTOLOGY Pub Date : 2018-06-13 eCollection Date: 2018-01-01 DOI: 10.1038/s41514-018-0025-3
Hongyuan Wang, Yuan Zhao, Marina Ezcurra, Alexandre Benedetto, Ann F Gilliat, Josephine Hellberg, Ziyu Ren, Evgeniy R Galimov, Trin Athigapanich, Johannes Girstmair, Maximilian J Telford, Colin T Dolphin, Zhizhou Zhang, David Gems

A long-standing belief is that aging (senescence) is the result of stochastic damage accumulation. Alternatively, senescent pathology may also result from late-life, wild-type gene action (i.e., antagonistic pleiotropy, as argued by Williams) leading to non-adaptive run-on of developmental programs (or quasi-programs) (as suggested more recently by Blagosklonny). In this study, we use existing and new data to show how uterine tumors, a prominent form of senescent pathology in the nematode Caenorhabditis elegans, likely result from quasi-programs. Such tumors develop from unfertilized oocytes which enter the uterus and become hypertrophic and replete with endoreduplicated chromatin masses. Tumor formation begins with ovulation of unfertilized oocytes immediately after exhaustion of sperm stocks. We show that the timing of this transition between program and quasi-program (i.e., the onset of senescence), and the onset of tumor formation, depends upon the timing of sperm depletion. We identify homology between uterine tumors and mammalian ovarian teratomas, which both develop from oocytes that fail to mature after meiosis I. In teratomas, futile activation of developmental programs leads to the formation of differentiated structures within the tumor. We report that older uterine tumors express markers of later embryogenesis, consistent with teratoma-like activation of developmental programs. We also present evidence of coupling of distal gonad atrophy to oocyte hypertrophy. This study shows how the Williams Blagosklonny model can provide a mechanistic explanation of this component of C. elegans aging. It also suggests etiological similarity between teratoma and some forms of senescent pathology, insofar as both are caused by quasi-programs.

长期以来,人们一直认为衰老是随机损伤积累的结果。另外,衰老病理也可能是由于晚年野生型基因作用(如Williams所说的拮抗多效性)导致发育程序(或准程序)的非适应性运行(如Blagosklonny最近提出的)。在这项研究中,我们利用现有的和新的数据来显示子宫肿瘤是秀丽隐杆线虫衰老病理的一种突出形式,可能是由准程序引起的。这种肿瘤由未受精的卵母细胞发展而来,卵母细胞进入子宫后变得肥大并充满了内复制染色质团块。肿瘤的形成始于精子耗尽后未受精的卵母细胞的排卵。我们表明,程序和准程序之间的过渡时间(即衰老的开始)和肿瘤形成的开始,取决于精子消耗的时间。我们发现子宫肿瘤和哺乳动物卵巢畸胎瘤的同源性,它们都是由卵母细胞在减数分裂后未能成熟而发展而来的。在畸胎瘤中,无用的发育程序激活导致肿瘤内分化结构的形成。我们报道,年龄较大的子宫肿瘤表达晚期胚胎发生的标志物,与畸胎瘤样的发育程序激活一致。我们还提出了远端性腺萎缩与卵母细胞肥大耦合的证据。这项研究表明,Williams Blagosklonny模型可以为秀丽隐杆线虫衰老的这一组成部分提供机制解释。它还表明,畸胎瘤和某些形式的衰老病理之间的病因相似,因为两者都是由准程序引起的。
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引用次数: 10
Tissue-specific transcriptome profiling of Drosophila reveals roles for GATA transcription factors in longevity by dietary restriction. 果蝇的组织特异性转录组分析揭示了GATA转录因子在饮食限制长寿中的作用。
IF 5 Q1 GERIATRICS & GERONTOLOGY Pub Date : 2018-01-01 DOI: 10.1038/s41514-018-0024-4
Adam J Dobson, Xiaoli He, Eric Blanc, Ekin Bolukbasi, Yodit Feseha, Mingyao Yang, Matthew D W Piper

Dietary restriction (DR) extends animal lifespan, but imposes fitness costs. This phenomenon depends on dietary essential amino acids (EAAs) and TOR signalling, which exert systemic effects. However, the roles of specific tissues and cell-autonomous transcriptional regulators in diverse aspects of the DR phenotype are unknown. Manipulating relevant transcription factors (TFs) specifically in lifespan-limiting tissues may separate the lifespan benefits of DR from the early-life fitness costs. Here, we systematically analyse transcription across organs of Drosophila subjected to DR or low TOR and predict regulatory TFs. We predict and validate roles for the evolutionarily conserved GATA family of TFs, and identify conservation of this signal in mice. Importantly, restricting knockdown of the GATA TF srp to specific fly tissues recapitulated the benefits but not the costs of DR. Together, our data indicate that the GATA TFs mediate effects of dietary amino acids on lifespan, and that by manipulating them in specific tissues it is possible to reap the fitness benefits of EAAs, decoupled from a cost to longevity.

饮食限制(DR)延长了动物的寿命,但增加了健康成本。这种现象取决于膳食必需氨基酸(EAAs)和TOR信号,它们发挥全身作用。然而,特定组织和细胞自主转录调节因子在DR表型的各个方面的作用尚不清楚。在寿命限制组织中操纵相关转录因子(TFs)可能会将DR的寿命益处与早期健康成本分开。在这里,我们系统地分析了受DR或低TOR影响的果蝇各器官的转录,并预测了调节性tf。我们预测并验证了进化保守的TFs GATA家族的作用,并确定了该信号在小鼠中的保守性。重要的是,将GATA TF srp的敲低限制在特定的果蝇组织中,再现了dr的好处,而不是代价。总之,我们的数据表明,GATA TF介导膳食氨基酸对寿命的影响,通过在特定组织中操纵它们,有可能获得eaa的健康益处,与寿命成本分离。
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引用次数: 29
How does hormesis impact biology, toxicology, and medicine? 激效是如何影响生物学、毒理学和医学的?
IF 5 Q1 GERIATRICS & GERONTOLOGY Pub Date : 2017-01-01 DOI: 10.1038/s41514-017-0013-z
Edward J Calabrese, Mark P Mattson

Hormesis refers to adaptive responses of biological systems to moderate environmental or self-imposed challenges through which the system improves its functionality and/or tolerance to more severe challenges. The past two decades have witnessed an expanding recognition of the concept of hormesis, elucidation of its evolutionary foundations, and underlying cellular and molecular mechanisms, and practical applications to improve quality of life. To better inform future basic and applied research, we organized and re-evaluated recent hormesis-related findings with the intent of incorporating new knowledge of biological mechanisms, and providing fundamental insights into the biological, biomedical and risk assessment implications of hormesis. As the literature on hormesis is expanding rapidly into new areas of basic and applied research, it is important to provide refined conceptualization of hormesis to aid in designing and interpreting future studies. Here, we establish a working compartmentalization of hormesis into ten categories that provide an integrated understanding of the biological meaning and applications of hormesis.

激效是指生物系统对适度的环境或自我施加的挑战做出的适应性反应,通过这种反应,系统可以提高其功能和/或对更严重挑战的耐受性。在过去的二十年里,人们对激效概念的认识不断扩大,对其进化基础和潜在的细胞和分子机制的阐明,以及在提高生活质量方面的实际应用。为了更好地为未来的基础和应用研究提供信息,我们组织并重新评估了最近与激效相关的发现,目的是结合生物学机制的新知识,并为激效在生物学、生物医学和风险评估方面的意义提供基本见解。随着有关激效的文献迅速扩展到基础和应用研究的新领域,提供精确的激效概念对于设计和解释未来的研究非常重要。在这里,我们将激效划分为十个类别,以提供对激效的生物学意义和应用的综合理解。
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引用次数: 324
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NPJ Aging and Mechanisms of Disease
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