Center for Nanobiotechnology, Vellore Institute of Technology, Vellore, Tamil Nadu, 632014, India.
Immunogenetics. 2024 Apr;76(2):93-108. doi: 10.1007/s00251-024-01334-y. Epub 2024 Feb 8.
Microglia cells are activated in response to different stress signals. Several metabolic adaptations underlie microglia activation in the brain. Among these, in conditions like ischemic stroke and, hypoxic stress stimuli activate microglia cells. Hypoxic stress is mediated by HIF-1α. Although HIF-1α has been implicated in the alteration of metabolic pathways, changes in microglia lipid metabolism during M1 activation of microglia induced by elevated HIF-1α levels are yet to be understood. This can also merit interest in the development of novel targets to mitigate chronic inflammation. Our study aims to elucidate the transcriptional regulation of metabolic pathways in microglia cells during HIF-1α mediated activation. To study the adaptations in the metabolic pathways we induced microglia activation, by activating HIF-1α. Here, we show that microglia cells activated in response to elevated HIF-1α require ongoing lipogenesis and fatty acid breakdown. Notably, autophagy is activated during the initial stages of microglia activation. Inhibition of autophagy in activated microglia affects their viability and phagocytic activity. Collectively, our study expands the understanding of the molecular link between autophagy, lipid metabolism, and inflammation during HIF-1α mediated microglial activation that can lead to the development of promising strategies for controlling maladaptive activation states of microglia responsible for neuroinflammation. Together, our findings suggest that the role of HIF-1α in regulating metabolic pathways during hypoxia in microglia is beyond optimization of glucose utilization and distinctly regulates lipid metabolism during pro-inflammatory activation.
小胶质细胞在受到不同应激信号的刺激后会被激活。小胶质细胞在大脑中的激活涉及多种代谢适应。在缺血性中风等情况下,缺氧应激刺激会激活小胶质细胞。缺氧应激是由 HIF-1α 介导的。尽管 HIF-1α 已被牵涉到代谢途径的改变中,但在由 HIF-1α 水平升高引起的小胶质细胞 M1 激活期间,小胶质细胞脂质代谢的变化仍有待了解。这也可能引起人们对开发新的靶点以减轻慢性炎症的兴趣。我们的研究旨在阐明 HIF-1α 介导的激活中小胶质细胞代谢途径的转录调控。为了研究代谢途径的适应,我们通过激活 HIF-1α 来诱导小胶质细胞的激活。在这里,我们表明,对升高的 HIF-1α 作出反应而被激活的小胶质细胞需要持续的脂肪生成和脂肪酸分解。值得注意的是,自噬在小胶质细胞激活的初始阶段被激活。在激活的小胶质细胞中抑制自噬会影响它们的活力和吞噬活性。总之,我们的研究扩展了对 HIF-1α 介导的小胶质细胞激活过程中自噬、脂质代谢和炎症之间分子联系的理解,这可能导致开发控制负责神经炎症的小胶质细胞适应不良激活状态的有前途的策略。总之,我们的研究结果表明,HIF-1α 在调节缺氧条件下小胶质细胞代谢途径中的作用不仅限于优化葡萄糖利用,而且在促炎激活期间还能明显调节脂质代谢。