Unique Cl– pump rhodopsin with close similarity to H+ pump rhodopsin
Author:
Affiliation:
1. Faculty of Advanced Life Science, Hokkaido University
Publisher
Biophysical Society of Japan
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/biophysico/18/0/18_bppb-v18.038/_pdf
Reference48 articles.
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2. [2] Ernst, O. P., Lodowski, D. T., Elstner, M., Hegemann, P., Brown, L. S., Kandori, H. Microbial and animal rhodopsins: structures, functions, and molecular mechanisms. Chem. Rev. 114, 126–163 (2014). https://doi.org/10.1021/cr4003769
3. [3] Govorunova, E. G., Sineshchekov, O. A., Li, H., Spudich, J. L. Microbial rhodopsins: Diversity, mechanisms, and optogenetic applications. Annu. Rev. Biochem. 86, 845–872 (2017). https://doi.org/10.1146/annurev-biochem-101910-144233
4. [4] Kandori, H. Biophysics of rhodopsins and optogenetics. Biophys. Rev. 12, 355–361 (2020). https://doi.org/10.1007/s12551-020-00645-0
5. [5] Spudich, J. L., Yang, C. S., Jung, K. H., Spudich, E. N. Retinylidene proteins: Structures and functions from archaea to humans. Annu. Rev. Cell Dev. Biol. 16, 365–392 (2000). https://doi.org/10.1146/annurev.cellbio.16.1.365
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