Actins

Displaying 1 - 9 of 9CSV
Connors, C. Q., Mauro, M. S., Wiles, J. T., Countryman, A. D., Martin, S. L., Lacroix, B., Shirasu-Hiza, M., Dumont, J., Kasza, K. E., Davies, T. R., & Canman, J. C. (2024). Germ fate determinants protect germ precursor cell division by reducing septin and anillin levels at the cell division plane. Molecular Biology of the Cell, 35(7). https://doi.org/10.1091/mbc.e24-02-0096-t
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Vepřek, N. A., Cooper, M. H., Laprell, L., Yang, E. J.-N., Folkerts, S., Bao, R., Boczkowska, M., Palmer, N. J., Dominguez, R., Oertner, T. G., Pon, L. A., Zuchero, J. B., & Trauner, D. H. (2024). Optical Control of G-Actin with a Photoswitchable Latrunculin. Journal of the American Chemical Society, 146(13), 8895–8903. https://doi.org/10.1021/jacs.3c10776
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Martinez, A. L., Shannon, M. J., Sloan, T., & Mace, E. M. (2024). CD56/NCAM mediates cell migration of human NK cells by promoting integrin-mediated adhesion turnover. Molecular Biology of the Cell, 35(5). https://doi.org/10.1091/mbc.e23-12-0463
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Oevel, K., Hohensee, S., Kumar, A., Rosas-Brugada, I., Bartolini, F., Soykan, T., & Haucke, V. (2024). Rho GTPase signaling and mDia facilitate endocytosis via presynaptic actin. ELife, 12. CLOCKSS. https://doi.org/10.7554/elife.92755.3
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Reed, A. E., Peraza, J., van den Haak, F., Hernandez, E. R., Gibbs, R. A., Chinn, I. K., Lupski, J. R., Marchi, E., Reshef, R., Alobeid, B., Mace, E. M., & Orange, J. S. (2024). β-Actin G342D as a Cause of NK Cell Deficiency Impairing Lytic Synapse Termination. The Journal of Immunology, 212(6), 962–973. https://doi.org/10.4049/jimmunol.2300671
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Orman, M., Landis, M., Oza, A., Nambiar, D., Gjeci, J., Song, K., Huang, V., Klestzick, A., Hachicho, C., Liu, S. Q., Kamm, J. M., Bartolini, F., Vadakkan, J. J., Rojas, C. M., & Vizcarra, C. L. (2022). Alterations to the broad-spectrum formin inhibitor SMIFH2 modulate potency but not specificity. Scientific Reports, 12(1). https://doi.org/10.1038/s41598-022-17685-z
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Choudhury, A., Ratna, A., Lim, A., Sebastian, R. M., Moore, C. L., Filliol, A. A., Bledsoe, J., Dai, C., Schwabe, R. F., Shoulders, M. D., & Mandrekar, P. (2022). Loss of heat shock factor 1 promotes hepatic stellate cell activation and drives liver fibrosis. Hepatology Communications, 6(10), 2781–2797. https://doi.org/10.1002/hep4.2058
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Columbia Affiliation
Das, S., Feng, Q., Balasubramanian, I., Lin, X., Liu, H., Pellón-Cardenas, O., Yu, S., Zhang, X., Liu, Y., Wei, Z., Bonder, E. M., Verzi, M. P., Hsu, W., Zhang, L., Wang, T. C., & Gao, N. (2022). Colonic healing requires Wnt produced by epithelium as well as Tagln+ and Acta2+ stromal cells. Development, 149(1). https://doi.org/10.1242/dev.199587
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