High throughput functional profiling of genes at intraocular pressure loci reveals distinct networks for glaucoma

眼压位点基因的高通量功能分析揭示了青光眼的不同网络

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作者:Connor J Greatbatch, Qinyi Lu, Sandy Hung, Alexander J Barnett, Kristof Wing, Helena Liang, Xikun Han, Tiger Zhou, Owen M Siggs, David A Mackey, Anthony L Cook, Anne Senabouth, Guei-Sheung Liu, Jamie E Craig, Stuart MacGregor, Joseph E Powell, Alex W Hewitt

Conclusion

High-throughput analysis of cellular structure and function through multiplex fluorescent single-cell analysis and scRNA-seq assays enabled the direct study of genetic perturbations at the single-cell resolution. This work provides a framework for investigating the role of genes in the pathogenesis of glaucoma and heterogenous diseases with a strong genetic basis.

Methods

62 genes across 55 loci were knocked-out in a primary human TMC line. Each knockout group, including five non-targeting control groups, underwent single-cell RNA-sequencing (scRNA-seq) for differentially-expressed gene (DEG) analysis. Multiplexed fluorescence coupled with CellProfiler image analysis allowed for single-cell morphological profiling.

Results

Many gene knockouts invoked DEGs relating to matrix metalloproteinases and interferon-induced proteins. We have prioritized genes at four loci of interest to identify gene knockouts that may contribute to the pathogenesis of POAG, including ANGPTL2, LMX1B, CAV1, and KREMEN1. Three genetic networks of gene knockouts with similar transcriptomic profiles were identified, suggesting a synergistic function in trabecular meshwork cell physiology. TEK knockout caused significant upregulation of nuclear granularity on morphological analysis, while knockout of TRIOBP, TMCO1 and PLEKHA7 increased granularity and intensity of actin and the cell-membrane.

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