Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore, Clinical Science Building, 11 Mandalay Road, 10-01-01M, Singapore, 308232, Singapore.
School of Biological Science, Nanyang Technological University, Singapore, 636551, Singapore.
Sci Rep. 2024 Aug 2;14(1):17942. doi: 10.1038/s41598-024-67976-w.
Glycogen storage, conversion and utilization in astrocytes play an important role in brain energy metabolism. The conversion of glycogen to lactate through glycolysis occurs through the coordinated activities of various enzymes and inhibition of this process can impair different brain processes including formation of long-lasting memories. To replenish depleted glycogen stores, astrocytes undergo glycogen synthesis, a cellular process that has been shown to require transcription and translation during specific stimulation paradigms. However, the detail nuclear signaling mechanisms and transcriptional regulation during glycogen synthesis in astrocytes remains to be explored. In this report, we study the molecular mechanisms of vasoactive intestinal peptide (VIP)-induced glycogen synthesis in astrocytes. VIP is a potent neuropeptide that triggers glycogenolysis followed by glycogen synthesis in astrocytes. We show evidence that VIP-induced glycogen synthesis requires CREB-mediated transcription that is calcium dependent and requires conventional Protein Kinase C but not Protein Kinase A. In parallel to CREB activation, we demonstrate that VIP also triggers nuclear accumulation of the CREB coactivator CRTC2 in astrocytic nuclei. Transcriptome profiles of VIP-induced astrocytes identified robust CREB transcription, including a subset of genes linked to glucose and glycogen metabolism. Finally, we demonstrate that VIP-induced glycogen synthesis shares similar as well as distinct molecular signatures with glucose-induced glycogen synthesis, including the requirement of CREB-mediated transcription. Overall, our data demonstrates the importance of CREB-mediated transcription in astrocytes during stimulus-driven glycogenesis.
星形胶质细胞中的糖原储存、转化和利用在大脑能量代谢中发挥着重要作用。糖原通过糖酵解转化为乳酸的过程是通过各种酶的协调活动实现的,而抑制这一过程会损害包括长时记忆形成在内的不同脑过程。为了补充耗尽的糖原储备,星形胶质细胞经历糖原合成,这是一个细胞过程,已经表明在特定的刺激范式中需要转录和翻译。然而,糖原合成过程中星形胶质细胞的详细核信号机制和转录调控仍有待探索。在本报告中,我们研究了血管活性肠肽(VIP)诱导星形胶质细胞中糖原合成的分子机制。VIP 是一种有效的神经肽,它在星形胶质细胞中引发糖原分解,随后是糖原合成。我们有证据表明,VIP 诱导的糖原合成需要 CREB 介导的转录,该转录依赖于钙,需要传统的蛋白激酶 C,但不需要蛋白激酶 A。与 CREB 激活平行,我们证明 VIP 还触发了 CREB 共激活因子 CRTC2 在星形胶质细胞核中的核积累。VIP 诱导的星形胶质细胞的转录组图谱鉴定出了强大的 CREB 转录,包括与葡萄糖和糖原代谢相关的一组基因。最后,我们证明 VIP 诱导的糖原合成与葡萄糖诱导的糖原合成具有相似和不同的分子特征,包括 CREB 介导的转录的要求。总的来说,我们的数据表明,在刺激驱动的糖生成过程中,CREB 介导的转录在星形胶质细胞中非常重要。