Peptide Biology Laboratories, Salk Institute for Biological Studies, La Jolla, CA 92037.
BioInfoRx, Inc., Madison, WI 53719.
Proc Natl Acad Sci U S A. 2021 Mar 23;118(12). doi: 10.1073/pnas.2024865118.
Fasting in mammals promotes increases in circulating glucagon and decreases in circulating insulin that stimulate catabolic programs and facilitate a transition from glucose to lipid burning. The second messenger cAMP mediates effects of glucagon on fasting metabolism, in part by promoting the phosphorylation of CREB and the dephosphorylation of the cAMP-regulated transcriptional coactivators (CRTCs) in hepatocytes. In , fasting also triggers activation of the single Crtc homolog in neurons, via the PKA-mediated phosphorylation and inhibition of salt-inducible kinases. mutant flies are more sensitive to starvation and oxidative stress, although the underlying mechanism remains unclear. Here we use RNA sequencing to identify Crtc target genes that are up-regulated in response to starvation. We found that Crtc stimulates a subset of fasting-inducible genes that have conserved CREB binding sites. In keeping with its role in the starvation response, Crtc was found to induce the expression of genes that inhibit insulin secretion () and insulin signaling (). In parallel, Crtc also promoted the expression of genes involved in one-carbon (1-C) metabolism. Within the 1-C pathway, Crtc stimulated the expression of enzymes that encode modulators of -adenosyl-methionine metabolism ( and and purine synthesis ( and Collectively, our results point to an important role for the CREB/CRTC pathway in promoting energy balance in the context of nutrient stress.
在哺乳动物中,禁食会促进循环中胰高血糖素的增加和胰岛素的减少,从而刺激分解代谢程序,并促进从葡萄糖向脂质燃烧的转变。第二信使 cAMP 介导了胰高血糖素对禁食代谢的作用,部分是通过促进 CREB 的磷酸化和 cAMP 调节的转录共激活因子 (CRTCs) 在肝细胞中的去磷酸化。在神经元中,禁食还通过 PKA 介导的盐诱导激酶的磷酸化和抑制来触发单个 CRTC 同源物的激活。 突变果蝇对饥饿和氧化应激更为敏感,尽管潜在的机制尚不清楚。在这里,我们使用 RNA 测序来鉴定响应饥饿而上调的 CRTC 靶基因。我们发现 CRTC 刺激了一组与禁食诱导相关的基因,这些基因具有保守的 CREB 结合位点。与它在饥饿反应中的作用一致,CRTC 被发现诱导抑制胰岛素分泌 () 和胰岛素信号 () 的基因的表达。平行地,CRTC 还促进了参与一碳 (1-C) 代谢的基因的表达。在 1-C 途径中,CRTC 刺激了编码 -腺嘌呤甲硫氨酸代谢调节剂的酶的表达 () 和嘌呤合成 () 和 。总的来说,我们的结果表明,在营养应激的情况下,CREB/CRTC 途径在促进能量平衡方面起着重要作用。