Abstract
We introduce a carbon-dot-based fluorescent label for F-actin with high labeling specificity that allowed us to perform three-dimensional fluorescence imaging of thick muscle tissues. Actin-binding proteins play a pivotal role in the sarcomere, regulating actin-filament morphology, stability, and dynamics. We studied the morphology of Caenorhabditis elegans nematode body-wall-muscle cells as well as changes with the mutation of various actin-binding proteins. The obtained results of the study of a newly generated by us dbn-1(vit7) C. elegans mutant muscle structure are important in order to understand the development of drebrin-like protein-caused heart failure in humans.
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Butkevich, E., Verma, N. C., Oleksiievets, N., Gregor, I., Schmidt, C. F., Enderlein, J., … Chizhik, A. I. (2019). Carbon Dots for Studying Muscle Architecture. ACS Applied Nano Materials, 2(12), 7466–7472. https://doi.org/10.1021/acsanm.9b01815
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