Wild Angela R, Hogg Peter W, Flibotte Stephane, Kochhar Shruti, Hollman Rocio B, Haas Kurt, Bamji Shernaz X
Bamji Lab, Department of Cellular and Physiological Sciences, Life Sciences Institute and Djavad Mowafaghian Centre for Brain Health, Vancouver, BC, Canada.
Life Sciences Institute Bioinformatics Facility, University of British Columbia, Vancouver, BC, Canada.
Front Physiol. 2023 Jan 24;14:1110550. doi: 10.3389/fphys.2023.1110550. eCollection 2023.
The reversible lipid modification protein S-palmitoylation can dynamically modify the localization, diffusion, function, conformation and physical interactions of substrate proteins. Dysregulated S-palmitoylation is associated with a multitude of human diseases including brain and metabolic disorders, viral infection and cancer. However, the diverse expression patterns of the genes that regulate palmitoylation in the broad range of human cell types are currently unexplored, and their expression in commonly used cell lines that are the workhorse of basic and preclinical research are often overlooked when studying palmitoylation dependent processes. We therefore created CellPalmSeq (https://cellpalmseq.med.ubc.ca), a curated RNAseq database and interactive webtool for visualization of the expression patterns of the genes that regulate palmitoylation across human single cell types, bulk tissue, cancer cell lines and commonly used laboratory non-human cell lines. This resource will allow exploration of these expression patterns, revealing important insights into cellular physiology and disease, and will aid with cell line selection and the interpretation of results when studying important cellular processes that depend on protein S-palmitoylation.
可逆性脂质修饰蛋白S-棕榈酰化可动态修饰底物蛋白的定位、扩散、功能、构象及物理相互作用。S-棕榈酰化失调与多种人类疾病相关,包括脑部和代谢紊乱、病毒感染及癌症。然而,目前尚未探索在广泛的人类细胞类型中调控棕榈酰化的基因的多样表达模式,并且在研究棕榈酰化依赖过程时,常用于基础研究和临床前研究的细胞系中这些基因的表达常常被忽视。因此,我们创建了CellPalmSeq(https://cellpalmseq.med.ubc.ca),这是一个经过整理的RNA测序数据库和交互式网络工具,用于可视化调控棕榈酰化的基因在人类单细胞类型、大块组织、癌细胞系及常用实验室非人类细胞系中的表达模式。该资源将有助于探索这些表达模式,揭示细胞生理学和疾病方面的重要见解,并在研究依赖蛋白S-棕榈酰化的重要细胞过程时辅助细胞系选择及结果解读。