4.7 Article

Nucleus-mitochondria positive feedback loop formed by ERK5 S496 phosphorylation-mediated poly (ADP-ribose) polymerase activation provokes persistent pro-inflammatory senescent phenotype and accelerates coronary atherosclerosis after chemo-radiation

期刊

REDOX BIOLOGY
卷 47, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.redox.2021.102132

关键词

Mitochondrial stunning; Atherosclerosis; Senescence-associated secretory phenotype (SASP); Efferocytosis; Antioxidants; Telomere length; p90RSK; Ionizing radiation; ERK5; Poly (ADP-Ribose) polymerase

资金

  1. National In-stitutes of Health (NIH) [AI-156921, HL-123346, HL-149303, HL-134740]
  2. National Aeronautics and Space Administration (NASA) [80NSSC18K1639 P00007]
  3. Cancer Prevention and Research Institute of Texas (CPRIT) [RP190256]
  4. National Institutes of Health through MD Anderson's Support Grant [CA016672]

向作者/读者索取更多资源

The incidence of cardiovascular disease is higher in cancer survivors due to various cancer treatments. Research suggests that chemotherapy and radiation therapy can induce persistent SASP, a phenotype associated with cardiovascular disease. Inhibiting PARP activation may prevent the development of cardiovascular disease in cancer survivors.
The incidence of cardiovascular disease (CVD) is higher in cancer survivors than in the general population. Several cancer treatments are recognized as risk factors for CVD, but specific therapies are unavailable. Many cancer treatments activate shared signaling events, which reprogram myeloid cells (MCs) towards persistent senescence-associated secretory phenotype (SASP) and consequently CVD, but the exact mechanisms remain unclear. This study aimed to provide mechanistic insights and potential treatments by investigating how chemoradiation can induce persistent SASP. We generated ERK5 S496A knock-in mice and determined SASP in myeloid cells (MCs) by evaluating their efferocytotic ability, antioxidation-related molecule expression, telomere length, and inflammatory gene expression. Candidate SASP inducers were identified by high-throughput screening, using the ERK5 transcriptional activity reporter cell system. Various chemotherapy agents and ionizing radiation (IR) up-regulated p90RSK-mediated ERK5 S496 phosphorylation. Doxorubicin and IR caused metabolic changes with nicotinamide adenine dinucleotide depletion and ensuing mitochondrial stunning (reversible mitochondria dysfunction without showing any cell death under ATP depletion) via p90RSK-ERK5 modulation and poly (ADP ribose) polymerase (PARP) activation, which formed a nucleus-mitochondria positive feedback loop. This feedback loop reprogramed MCs to induce a sustained SASP state, and ultimately primed MCs to be more sensitive to reactive oxygen species. This priming was also detected in circulating monocytes from cancer patients after IR. When PARP activity was transiently inhibited at the time of IR, mitochondrial stunning, priming, macrophage infiltration, and coronary atherosclerosis were all eradicated. The p90RSK-ERK5 module plays a crucial role in SASP-mediated mitochondrial stunning via regulating PARP activation. Our data show for the first time that the nucleus-mitochondria positive feedback loop formed by p90RSK-ERK5 S496 phosphorylationmediated PARP activation plays a crucial role of persistent SASP state, and also provide preclinical evidence supporting that transient inhibition of PARP activation only at the time of radiation therapy can prevent future CVD in cancer survivors.

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