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PNAS Plus: Magnesium-sensitive upstream ORF controls PRL phosphatase expression to mediate energy metabolism

机译:PNAS Plus:对镁敏感的上游ORF控制PRL磷酸酶的表达以介导能量代谢

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摘要

Phosphatases of regenerating liver (PRL-1, PRL-2, and PRL-3, also known as PTP4A1, PTP4A2, and PTP4A3) control magnesium homeostasis through an association with the CNNM magnesium transport regulators. Although high PRL levels have been linked to cancer progression, regulation of their expression is poorly understood. Here we show that modulating intracellular magnesium levels correlates with a rapid change of PRL expression by a mechanism involving its 5′UTR mRNA region. Mutations or CRISPR-Cas9 targeting of the conserved upstream ORF present in the mRNA leader derepress PRL protein synthesis and attenuate the translational response to magnesium levels. Mechanistically, magnesium depletion reduces intracellular ATP but up-regulates PRL protein expression via activation of the AMPK/mTORC2 pathway, which controls cellular energy status. Hence, altered PRL-2 expression leads to metabolic reprogramming of the cells. These findings uncover a magnesium-sensitive mechanism controlling PRL expression, which plays a role in cellular bioenergetics.
机译:再生肝脏的磷酸酶(PRL-1,PRL-2和PRL-3,也称为PTP4A1,PTP4A2和PTP4A3)通过与CNNM镁转运调节剂的结合来控制镁稳态。尽管高PRL水平与癌症进展有关,但对其表达的调节了解甚少。在这里,我们显示调节细胞内镁水平与PRL表达的快速变化有关,该机制涉及PRL表达的5'UTR mRNA区。存在于mRNA前导物中的保守上游ORF的突变或CRISPR-Cas9靶向抑制PRL蛋白合成并减弱对镁水平的翻译反应。从机制上讲,镁的消耗通过激活细胞能量状态的AMPK / mTORC2途径的激活而降低细胞内ATP,但上调PRL蛋白的表达。因此,改变的PRL-2表达导致细胞的代谢重编程。这些发现揭示了控制PRL表达的镁敏感机制,该机制在细胞生物能学中起作用。

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