Intrinsic Diversity in Primary Cilia Revealed Through Spatial Proteomics
Lundberg, E.; Hansen, J.; Sun, H.; Kahnert, K.; Johannesson, A.; Tzavlaki, K.; Winsnes, C.; Pohjahnen, E.; Fall, J.; Uhlen, M.; Axelsson, U.; Navarro, F. B.; Backstrom, A.; Lindskog, C.; Johansson, F.; von Feilitzen, K.; Vega, A. D.; Casals, A. M.; Mahdessian, D.; Lindstrand, A.; Westenius, E.
Show abstract
Primary cilia are a critical organelle found on most human cells, and their dysfunction is linked to hereditary ciliopathies with a wide phenotypic spectrum. Despite their significance, the specific roles of cilia in different cell types remain poorly understood due to limitations in analyzing ciliary protein composition. We employed antibody-based spatial proteomics to expand the Human Protein Atlas to primary cilia. Our analysis identified the subciliary locations of 715 proteins across three cell lines, examining 128,156 individual cilia. We found that 69% of the ciliary proteome is cell-type specific, and 78% exhibited single-cilia heterogeneity. Our findings portray cilia as sensors tuning their proteome to effectively sense the environment and compute cellular responses. We identified 91 novel cilia proteins and found a genetic candidate variant in CREB3 in one clinical case with features overlapping ciliopathy phenotypes. This open, spatial cilia atlas advances research on cilia and ciliopathies.
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