Yang Huansheng, Xiong Xia, Wang Xiaocheng, Yin Yulong
Animal Nutrition and Human Health Laboratory, School of Life Sciences, Hunan Normal University, Changsha, China.
Cell Physiol Biochem. 2016;39(2):751-9. doi: 10.1159/000445665. Epub 2016 Jul 27.
BACKGROUND/AIMS: Understanding the mechanism that involves in regulating epithelial cells renewal is the fundamental of regulating intestinal mucosa development and functions and related diseases. The mechanistic target of rapamycin (mTOR) signaling pathway involves in controlling various major processes by integrating intracellular and extracellular cues. The present experiment was conducted to test the correlation between the mTOR signaling pathway and intestinal epithelial cells renewal along crypt-villus axis (CVA).
Intestinal epithelial cells were sequentially isolated from the jejunum of piglets along CVA, and the amount or phosphorylation level of proteins involved in cell cycle, mTOR signaling pathway, gene expression, and the antioxidant capacity in the isolated cells were measured.
The results showed that the amount of proteins involved in cell cycle decreased from crypt to villus tip. The amount or phosphorylation level of proteins related to mTOR signaling pathway in intestinal epithelial cells mainly decreased during maturation along CVA. The amount of proteins involved in gene expression and the antioxidant capacity also decreased from crypt to the top of villi.
These results indicate that the mTOR signaling pathway may be involved in regulating the intestinal epithelial cells renewal along CVA and it may partly through affecting the antioxidant capacity and gene expression of intestinal epithelial cells. Further histological verification is needed to confirm the results of the present experiments.
背景/目的:了解参与调节上皮细胞更新的机制是调控肠黏膜发育、功能及相关疾病的基础。雷帕霉素靶蛋白(mTOR)信号通路通过整合细胞内和细胞外信号来控制各种主要过程。本实验旨在检测mTOR信号通路与沿肠隐窝-绒毛轴(CVA)的肠上皮细胞更新之间的相关性。
沿CVA从仔猪空肠中依次分离肠上皮细胞,并检测分离细胞中参与细胞周期、mTOR信号通路、基因表达的蛋白质数量或磷酸化水平以及抗氧化能力。
结果显示,参与细胞周期的蛋白质数量从隐窝到绒毛顶端逐渐减少。肠上皮细胞中与mTOR信号通路相关的蛋白质数量或磷酸化水平在沿CVA成熟过程中主要呈下降趋势。参与基因表达的蛋白质数量和抗氧化能力也从隐窝到绒毛顶端逐渐降低。
这些结果表明,mTOR信号通路可能参与调控沿CVA的肠上皮细胞更新,且可能部分通过影响肠上皮细胞的抗氧化能力和基因表达来实现。需要进一步的组织学验证来证实本实验结果。