Laboratory of Molecular Biology, Istituto di Ricerche Farmacologiche Mario Negri IRCCS, via Mario Negri 2, 20156, Milano, Italy.
Department of Chemistry, Biology and Biotechnology, University of Perugia, via Elce di Sotto 8, 06123, Perugia, Italy.
Cell Death Dis. 2022 Jan 10;13(1):30. doi: 10.1038/s41419-021-04476-z.
The role played by lipids in the process of granulocytic differentiation activated by all-trans retinoic acid (ATRA) in Acute-Promyelocytic-Leukemia (APL) blasts is unknown. The process of granulocytic differentiation activated by ATRA in APL blasts is recapitulated in the NB4 cell-line, which is characterized by expression of the pathogenic PML-RARα fusion protein. In the present study, we used the NB4 model to define the effects exerted by ATRA on lipid homeostasis. Using a high-throughput lipidomic approach, we demonstrate that exposure of the APL-derived NB4 cell-line to ATRA causes an early reduction in the amounts of cardiolipins, a major lipid component of the mitochondrial membranes. The decrease in the levels of cardiolipins results in a concomitant inhibition of mitochondrial activity. These ATRA-dependent effects are causally involved in the granulocytic maturation process. In fact, the ATRA-induced decrease of cardiolipins and the concomitant dysfunction of mitochondria precede the differentiation of retinoid-sensitive NB4 cells and the two phenomena are not observed in the retinoid-resistant NB4.306 counterparts. In addition, ethanolamine induced rescue of the mitochondrial dysfunction activated by cardiolipin deficiency inhibits ATRA-dependent granulocytic differentiation and induction of the associated autophagic process. The RNA-seq studies performed in parental NB4 cells and a NB4-derived cell population, characterized by silencing of the autophagy mediator, ATG5, provide insights into the mechanisms underlying the differentiating action of ATRA. The results indicate that ATRA causes a significant down-regulation of CRLS1 (Cardiolipin-synthase-1) and LPCAT1 (Lysophosphatidylcholine-Acyltransferase-1) mRNAs which code for two enzymes catalyzing the last steps of cardiolipin synthesis. ATRA-dependent down-regulation of CRLS1 and LPCAT1 mRNAs is functionally relevant, as it is accompanied by a significant decrease in the amounts of the corresponding proteins. Furthermore, the decrease in CRLS1 and LPCAT1 levels requires activation of the autophagic process, as down-regulation of the two proteins is blocked in ATG5-silenced NB4-shATG5 cells.
全反式维甲酸(ATRA)激活急性早幼粒细胞白血病(APL)细胞粒细胞分化过程中脂质的作用尚不清楚。ATRA 激活 APL 细胞粒细胞分化的过程在 NB4 细胞系中得到了重现,该细胞系表达致病的 PML-RARα融合蛋白。在本研究中,我们使用 NB4 模型来定义 ATRA 对脂质稳态的影响。使用高通量脂质组学方法,我们证明暴露于 ATRA 会导致 APL 衍生的 NB4 细胞中线粒体膜主要脂质成分心磷脂的含量早期减少。心磷脂水平的降低导致线粒体活性的伴随抑制。这些 ATRA 依赖性作用与粒细胞成熟过程有关。事实上,ATRA 诱导的心磷脂减少和随之而来的线粒体功能障碍发生在视黄酸敏感的 NB4 细胞分化之前,并且在视黄酸抗性的 NB4.306 对应物中观察不到这两种现象。此外,心磷脂缺乏引起的线粒体功能障碍的乙醇胺诱导挽救抑制 ATRA 依赖性粒细胞分化和诱导相关自噬过程。在亲本 NB4 细胞和由沉默自噬调节剂 ATG5 引起的 NB4 衍生细胞群中进行的 RNA-seq 研究提供了有关 ATRA 分化作用的潜在机制的见解。结果表明,ATRA 导致编码催化心磷脂合成最后步骤的两种酶的 CRLS1(心磷脂合酶-1)和 LPCAT1(溶血磷脂酰胆碱酰基转移酶-1)mRNA 的显著下调。CRLS1 和 LPCAT1 mRNA 的 ATRA 依赖性下调具有功能相关性,因为它伴随着相应蛋白数量的显著减少。此外,CRLS1 和 LPCAT1 水平的降低需要自噬过程的激活,因为在 ATG5 沉默的 NB4-shATG5 细胞中,两种蛋白的下调被阻断。