Sheeter Dennis A, Garza Secilia, Park Hui Gyu, Benhamou Lorraine-Rana E, Badi Niharika R, Espinosa Erika C, Kothapalli Kumar S D, Brenna J Thomas, Powers John T
Department of Pediatrics, Dell Pediatric Research Institute, Dell Medical School at The University of Texas at Austin, Austin, TX 78723, USA.
Department of Chemistry, Dell Pediatric Research Institute, The University of Texas at Austin, Austin, TX 78723, USA.
Cancers (Basel). 2024 Apr 21;16(8):1590. doi: 10.3390/cancers16081590.
amplification () and disruption of tumor suppressor microRNA (TSmiR) function are key drivers of poor outcomes in neuroblastoma (NB). While MYCN and TSmiRs regulate glucose metabolism, their role in de novo fatty acid synthesis (FAS) and unsaturated FAS (UFAS) remains poorly understood. Here, we show that FAS and UFAS (U/FAS) genes , , , , and are upregulated in high-risk (HR) NB and that their expression is associated with lower overall survival. RNA-Seq analysis of human NB cell lines revealed parallel U/FAS gene expression patterns. Consistent with this, we found that NB-related TSmiRs were predicted to target these genes extensively. We further observed that both MYC and MYCN upregulated U/FAS pathway genes while suppressing TSmiR host gene expression, suggesting a possible U/FAS regulatory network between MYCN and TSmiRs in NB. NB cells are high in de novo synthesized omega 9 (ω9) unsaturated fatty acids and low in both ω6 and ω3, suggesting a means for NB to limit cell-autonomous immune stimulation and reactive oxygen species (ROS)-driven apoptosis from ω6 and ω3 unsaturated fatty acid derivatives, respectively. We propose a model in which MYCN and TSmiRs regulate U/FAS and play an important role in NB pathology, with implications for other MYC family-driven cancers.
肿瘤抑制性微小RNA(TSmiR)功能的扩增和破坏是神经母细胞瘤(NB)预后不良的关键驱动因素。虽然MYCN和TSmiRs调节葡萄糖代谢,但其在从头脂肪酸合成(FAS)和不饱和FAS(UFAS)中的作用仍知之甚少。在此,我们表明FAS和UFAS(U/FAS)基因、、、和在高危(HR)NB中上调,且它们的表达与较低的总生存率相关。对人NB细胞系的RNA测序分析揭示了平行的U/FAS基因表达模式。与此一致,我们发现NB相关的TSmiRs被预测广泛靶向这些基因。我们进一步观察到,MYC和MYCN均上调U/FAS途径基因,同时抑制TSmiR宿主基因表达,提示在NB中MYCN和TSmiRs之间可能存在一个U/FAS调控网络。NB细胞中从头合成的ω9不饱和脂肪酸含量高,而ω6和ω3含量低,这分别提示NB限制细胞自主免疫刺激以及ω6和ω3不饱和脂肪酸衍生物驱动的活性氧(ROS)诱导凋亡的一种方式。我们提出一个模型,其中MYCN和TSmiRs调节U/FAS,并在NB病理学中起重要作用,这对其他MYC家族驱动的癌症也有启示意义。