Division of Transcriptomics, Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan.
Genes Cells. 2021 Jul;26(7):530-540. doi: 10.1111/gtc.12870. Epub 2021 Jun 8.
Single-cell RNA-sequencing analysis is one of the most effective tools for understanding specific cellular states. The use of single cells or pooled cells in RNA-seq analysis requires the isolation of cells from a tissue or culture. Although trypsin or more recently cold-active protease (CAP) has been used for cell dissociation, the extent to which the gene expression changes are suppressed has not been clarified. To this end, we conducted detailed profiling of the enzyme-dependent gene expression changes in mouse skeletal muscle progenitor cells, focusing on the enzyme treatment time, amount and temperature. We found that the genes whose expression was changed by the enzyme treatment could be classified in a time-dependent manner and that there were genes whose expression was changed independently of the enzyme treatment time, amount and temperature. This study will be useful as reference data for genes that should be excluded or considered for RNA-seq analysis using enzyme isolation methods.
单细胞 RNA 测序分析是理解特定细胞状态的最有效工具之一。单细胞或混合细胞的 RNA-seq 分析需要从组织或培养物中分离细胞。虽然胰蛋白酶或最近的冷活性蛋白酶 (CAP) 已被用于细胞解离,但基因表达变化被抑制的程度尚不清楚。为此,我们详细分析了小鼠骨骼肌祖细胞中酶依赖性基因表达变化,重点研究了酶处理时间、酶量和温度。我们发现,受酶处理影响的基因表达可以随时间进行分类,并且有一些基因的表达变化独立于酶处理时间、酶量和温度。这项研究将作为使用酶分离方法进行 RNA-seq 分析时应排除或考虑的基因的参考数据。