Jiang L, Lawsky H, Coloso R M, Dudley M A, Ferraris R P
Graduate School of the Biomedical Sciences, University of Medicine and Dentistry of New Jersey, New Jersey Medical School, Newark, New Jersey 07103-2714, USA.
Am J Physiol Regul Integr Comp Physiol. 2001 Oct;281(4):R1274-82. doi: 10.1152/ajpregu.2001.281.4.R1274.
C-fos and c-jun are immediate-early genes (IEGs) that are rapidly expressed after a variety of stimuli. Products of these genes subsequently bind to DNA regulatory elements of target genes to modulate their transcription. In rat small intestine, IEG mRNA expression increases dramatically after refeeding following a 48-h fast. We used an in vivo intestinal perfusion model to test the hypothesis that metabolism of absorbed nutrients stimulates the expression of IEGs. Compared with those of unperfused intestines, IEG mRNA levels increased up to 11 times after intestinal perfusion for 0.3-4 h with Ringer solutions containing high (100 mM) fructose (HF), glucose (HG), or mannitol (HM). Abundance of mRNA returned to preperfusion levels after 8 h. Levels of c-fos and c-jun mRNA and proteins were modest and evenly distributed among enterocytes lining the villi of unperfused intestines. HF and HM perfusion markedly enhanced IEG mRNA expression along the entire villus axis. The perfusion-induced increase in IEG expression was inhibited by actinomycin-D. Luminal perfusion induces transient but dramatic increases in c-fos and c-jun expression in villus enterocytes. Induction does not require metabolizable or absorbable nutrients but may involve de novo gene transcription in cells along the villus.
C-fos和c-jun是即刻早期基因(IEGs),在受到多种刺激后会迅速表达。这些基因的产物随后会与靶基因的DNA调控元件结合,以调节其转录。在大鼠小肠中,禁食48小时后重新喂食,即刻早期基因的mRNA表达会显著增加。我们使用体内肠道灌注模型来检验吸收的营养物质代谢刺激即刻早期基因表达这一假说。与未灌注的肠道相比,用含有高浓度(100 mM)果糖(HF)、葡萄糖(HG)或甘露醇(HM)的林格氏液对肠道进行0.3 - 4小时灌注后,即刻早期基因的mRNA水平增加了11倍。8小时后,mRNA丰度恢复到灌注前水平。在未灌注肠道绒毛的肠上皮细胞中,c-fos和c-jun的mRNA及蛋白质水平适中且分布均匀。HF和HM灌注显著增强了沿整个绒毛轴的即刻早期基因mRNA表达。灌注诱导的即刻早期基因表达增加被放线菌素-D抑制。肠腔灌注可诱导绒毛肠上皮细胞中c-fos和c-jun表达短暂但显著增加。诱导不需要可代谢或可吸收的营养物质,但可能涉及沿绒毛的细胞中的从头基因转录。