Cancer treatment-induced NAD+ depletion in premature senescence and late cardiovascular complications.

Priyanka Banerjee, Elizabeth A Olmsted-Davis, Anita Deswal, Minh Th Nguyen, Efstratios Koutroumpakis, Nicholas L Palaskas, Steven H Lin, Sivareddy Kotla, Cielito Reyes-Gibby, Sai-Ching J Yeung, Syed Wamique Yusuf, Momoko Yoshimoto, Michihiro Kobayashi, Bing Yu, Keri Schadler, Joerg Herrmann, John P Cooke, Abhishek Jain, Eduardo Chini, Nhat-Tu Le, Jun-Ichi Abe
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引用次数: 5

Abstract

Numerous studies have revealed the critical role of premature senescence induced by various cancer treatment modalities in the pathogenesis of aging-related diseases. Senescence-associated secretory phenotype (SASP) can be induced by telomere dysfunction. Telomeric DNA damage response induced by some cancer treatments can persist for months, possibly accounting for long-term sequelae of cancer treatments. Telomeric DNA damage-induced mitochondrial dysfunction and increased reactive oxygen species production are hallmarks of premature senescence. Recently, we reported that the nucleus-mitochondria positive feedback loop formed by p90 ribosomal S6 kinase (p90RSK) and phosphorylation of S496 on ERK5 (a unique member of the mitogen-activated protein kinase family that is not only a kinase but also a transcriptional co-activator) were vital signaling events that played crucial roles in linking mitochondrial dysfunction, nuclear telomere dysfunction, persistent SASP induction, and atherosclerosis. In this review, we will discuss the role of NAD+ depletion in instigating SASP and its downstream signaling and regulatory mechanisms that lead to the premature onset of atherosclerotic cardiovascular diseases in cancer survivors.

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癌症治疗诱导的NAD+耗竭在早衰和晚期心血管并发症中的作用。
大量研究揭示了各种癌症治疗方式诱导的过早衰老在衰老相关疾病发病机制中的关键作用。衰老相关分泌表型(SASP)可由端粒功能障碍诱导。一些癌症治疗引起的端粒DNA损伤反应可以持续数月,这可能是癌症治疗的长期后遗症。端粒DNA损伤引起的线粒体功能障碍和活性氧产生增加是过早衰老的标志。最近,我们报道了p90核糖体S6激酶(p90RSK)形成的核-线粒体正反馈环和ERK5上S496的磷酸化(ERK5是丝裂原激活蛋白激酶家族的独特成员,不仅是激酶,也是转录共激活因子)是至关重要的信号事件,在线粒体功能障碍、核端粒功能障碍、持续SASP诱导和动脉粥样硬化中起着至关重要的作用。在这篇综述中,我们将讨论NAD+缺失在引发SASP及其下游信号传导和调控机制中的作用,这些机制导致癌症幸存者过早发生动脉粥样硬化性心血管疾病。
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