Science for Life Laboratory, Department of Applied Physics, Royal Institute of Technology, Box 1031, 171 21, Solna, Sweden.
Science for Life Laboratory, Department of Biochemistry and Biophysics, Stockholm University, Solna, Sweden.
Sci Rep. 2020 Jun 25;10(1):10390. doi: 10.1038/s41598-020-67361-3.
Cell cultures are often used to study physiological processes in health and disease. It is well-known that cells change their gene expression in vitro compared to in vivo, but it is rarely experimentally addressed. High glucose is a known trigger of apoptosis in proximal tubular cells (PTC). Here we used RNA-seq to detect differentially expressed genes in cultures of primary rat PTC, 3 days old, compared to cells retrieved directly from rat outer renal cortex and between PTC exposed to 15 mM glucose and control for 8 h. The expression of 6,174 genes was significantly up- or downregulated in the cultures of PTC compared to the cells in the outer renal cortex. Most altered were mitochondrial and metabolism related genes. Gene expression of proapoptotic proteins were upregulated and gene expression of antiapoptotic proteins were downregulated in PTC. Expression of transporter related genes were generally downregulated. After 8 h, high glucose had not altered the gene expression in PTC. The current study provides evidence that cells alter their gene expression in vitro compared to in vivo and suggests that short-term high glucose exposure can trigger apoptosis in PTC without changing the gene expression levels of apoptotic proteins.
细胞培养常用于研究健康和疾病中的生理过程。众所周知,与体内相比,细胞在体外会改变其基因表达,但很少有实验对此进行研究。高葡萄糖是近端肾小管细胞 (PTC) 凋亡的已知触发因素。在这里,我们使用 RNA-seq 检测了培养的 3 天大的原代大鼠 PTC 与直接从大鼠外肾皮质中回收的细胞之间以及暴露于 15mM 葡萄糖和对照组 8 小时的 PTC 之间差异表达的基因。与外肾皮质中的细胞相比,PTC 培养物中有 6174 个基因的表达明显上调或下调。改变最明显的是与线粒体和代谢相关的基因。促凋亡蛋白的基因表达上调,抗凋亡蛋白的基因表达下调。转运体相关基因的表达通常下调。8 小时后,高葡萄糖未改变 PTC 中的基因表达。本研究提供了证据表明,与体内相比,细胞在体外会改变其基因表达,并表明短期高葡萄糖暴露可引发 PTC 凋亡,而不会改变凋亡蛋白的基因表达水平。