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Fanconi anemia protein FANCD2 is activated by AICAR, a modulator of AMPK and cellular energy metabolism

机译:范可尼贫血蛋白FANCD2被AICAR激活,后者是AMPK和细胞能量代谢的调节剂

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FANCD2 is a pivotal molecule in the pathogenesis of Fanconi anemia (FA), an autosomal recessive human syndrome with diverse clinical phenotypes, including cancer predisposition, short stature, and hematological abnormalities. In our previous study, we detected the functional association of FANC proteins, whose mutations are responsible for the onset of FA, with AMPK in response to DNA interstrand crosslinking lesions. Because AMPK is well known as a critical sensing molecule for cellular energy levels, we checked whether FANCD2 activation occurs after treatments affecting AMPK and/or cellular energy status. Among the treatments tested, AMPK‐activating 5‐aminoimidazole‐4‐carboxamide‐ribonucleoside (AICAR) induced monoubiquitination and nuclear foci formation of FANCD2, which are biomarkers of FANCD2 activation. FANCD2 activation was abolished by treatments with Compound C, an AMPK inhibitor, or after AMPKα1 knockdown, substantiating the involvement of AMPK in AICAR‐induced FANCD2 activation. Similarly, FANCA protein, which is a component of the FA core complex monoubiquitinating FANCD2, was required for this event. Furthermore, FANCD2 repression enhanced cell death upon AICAR treatments in transformed fibroblasts and cell cycle arrest in the renal cell carcinoma cell line Caki‐1. Overall, this study showed FANCD2 involvement in response to AICAR, a chemical modulating cellular energy metabolism.
机译:FANCD2是Fanconi贫血(FA)发病机理中的关键分子,Fanconi贫血是一种常染色体隐性遗传的人类综合征,具有多种临床表型,包括癌症易感性,身材矮小和血液学异常。在我们之前的研究中,我们检测到FANC蛋白的功能关联,该突变与FAK的起因有关,而FANC蛋白的突变与DNA链交联病变的AMPK有关。因为AMPK是细胞能量水平的关键传感分子,所以我们检查了影响AMPK和/或细胞能量状态的治疗后是否发生FANCD2激活。在测试的治疗方法中,激活AMPK的5-氨基咪唑-4-羧酰胺核糖核苷(AICAR)诱导FANCD2的单泛素化和核灶形成,这是FANCD2激活的生物标记。通过使用化合物C(一种AMPK抑制剂)或在AMPKα1敲低后进行处理,FANCD2的激活被取消,从而证实了AMPK在AICAR诱导的FANCD2激活中的参与。同样,此事件也需要FANCA蛋白,它是FA核心复合物单泛素化FANCD2的组成部分。此外,FANCD2抑制增加了转化细胞后成纤维细胞中AICAR处理后的细胞死亡,并增强了肾癌细胞Caki-1的细胞周期阻滞。总的来说,这项研究表明FANCD2参与了对AICAR(一种调节细胞能量代谢的化学反应)的反应。

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