Actin polymerization dynamics regulated by actin-binding proteins are essential for various cellular functions. The cofilin family of proteins are potent regulators of actin severing and filament disassembly. The structural basis for cofilin-isoform-specific severing activity is poorly understood as their high-resolution structures in complex with filamentous actin (F-actin) are lacking. Here, we present the atomic-resolution structure of the muscle-tissue-specific isoform, cofilin-2 (CFL2), assembled on ADP-F-actin, determined by magic-angle-spinning (MAS) NMR spectroscopy and data-guided molecular dynamics (MD) simulations. We observe an isoform-specific conformation for CFL2. This conformation is the result of a unique network of hydrogen bonding interactions within the α2 helix containing the non-conserved residue, Q26. Our results indicate F-site interactions that are specific between CFL2 and ADP-F-actin, revealing mechanistic insights into isoform-dependent F-actin disassembly.
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Xu, Chaoyi ; Katyal, Nidhi ; Nesterova, Tanya ; Perilla, Juan R. ( , The Journal of Chemical Physics)null (Ed.)
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Segura, Carolina P ; Katyal, Nidhi ; González-Arias, Fabio ; J. Bryer, Alexander ; Perilla, Juan R. ; Hadden-Perilla, Jodi A ( , Delaware journal of public health)The Perilla/Hadden-Perilla research team at the University of Delaware presents an overview of computational structural biology, their efforts to model the SARS-CoV-2 viral particle, and their perspective on how their work and training endeavors can contribute to public health.more » « less
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Segura, Carolina Pérez ; Katyal, Nidhi ; González-Arias, Fabio ; Bryer, Alexander J. ; Perilla, Juan R. ; Hadden-Perilla, Jodi A. ( , Delaware Journal of Public Health)null (Ed.)