Abstract
Intermediate filaments (IFs), in coordination with microfilaments and microtubules, form the structural framework of the cytoskeleton and nucleus, thereby providing mechanical support against cellular stresses and anchoring intracellular organelles in place. The assembly and disassembly of IFs are mainly regulated by the phosphorylation of IF proteins. These phosphorylation states can be tracked using antibodies raised against phosphopeptides in the target proteins. IFs exert their functions through interactions with not only structural proteins, but also non-structural proteins involved in cell signaling, such as stress responses, apoptosis, and cell proliferation. This review highlights findings related to how IFs regulate cell division through phosphorylation cascades and how trichoplein, a centriolar protein originally identified as a keratinassociated protein, regulates the cell cycle through primary cilium formation.
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Nishimura, Y., Kasahara, K., & Inagaki, M. (2019). Intermediate filaments and IF-associated proteins: From cell architecture to cell proliferation. Proceedings of the Japan Academy Series B: Physical and Biological Sciences. Japan Academy. https://doi.org/10.2183/pjab.95.034
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