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葡萄糖和胆固醇通过 DAF-12 和 MPK-1 诱导. 中的异常细胞分裂。

Glucose and cholesterol induce abnormal cell divisions via DAF-12 and MPK-1 in .

机构信息

School of Nursing and Health, Henan University, Kaifeng 475004, Henan Province, China.

Medical School, Henan University, Kaifeng 475004, Henan Province, China.

出版信息

Aging (Albany NY). 2020 Aug 28;12(16):16255-16269. doi: 10.18632/aging.103647.

Abstract

People exposed to starvation have a high risk of developing cancer later in life, and prior studies have shown these individuals have high insulin and cholesterol levels and are sensitive to glucose. Using as a model, we found that glucose and cholesterol can promote survival and cause starved L1 diapause worms to undergo abnormal neuronal cell divisions. Starvation has also been shown to promote long-term survival; however, we found that the functions of glucose and cholesterol in relation to these cell divisions are distinct from their effects on survival. We demonstrate that glucose functions in a DAF-16/FOXO-independent IIS pathway to activate the MAPK ontogenetic signaling to induce neuronal Q-cell divisions, and cholesterol works through DAF-12/steroidogenic pathways to promote these cell divisions. and mutants suppress the function of glucose and cholesterol in these divisions, and a fully functioning dpMPK-1 requires the steroid hormone receptor DAF-12 for these divisions to occur. These afflictions also can be passed on to the immediate progeny. This work indicates a possible link between glucose and cholesterol in starved animals and an increased risk of cancer.

摘要

暴露于饥饿环境中的人在以后的生活中患癌症的风险很高,先前的研究表明这些个体的胰岛素和胆固醇水平较高,对葡萄糖敏感。我们以线虫为模型发现,葡萄糖和胆固醇可以促进存活,并导致饥饿的 L1 休眠线虫进行异常的神经元细胞分裂。饥饿也已被证明可以促进长期存活;然而,我们发现葡萄糖和胆固醇在与这些细胞分裂相关的功能与其对存活的影响不同。我们证明葡萄糖在线粒体 AKT/FoxO 非依赖性 IIS 途径中发挥作用,以激活 MAPK 个体发生信号来诱导神经元 Q 细胞分裂,而胆固醇通过 DAF-12/类固醇生成途径发挥作用以促进这些细胞分裂。glp-1 和 age-1 突变体抑制葡萄糖和胆固醇在这些分裂中的作用,而完全功能的 dpMPK-1 需要类固醇激素受体 DAF-12 才能发生这些分裂。这些疾病也可以传递给直接后代。这项工作表明饥饿动物中葡萄糖和胆固醇之间可能存在联系,这增加了患癌症的风险。

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