Abstract
The versatile microbial rhodopsin family performs a variety of biological tasks using a highly conserved architecture, making it difficult to understand the mechanistic basis for different functions. Besaw et al. now report structures of a recently discovered cyanobacterial Cl2-pumping rhodopsin and its functionally divergent mutant that reveal how these transmembrane proteins create a gradient of activity with subtle changes. These insights are paralleled by a second recent report, which in combination answers long-standing questions about rhodopsin selectivity and will facilitate future engineering efforts.
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CITATION STYLE
Inoue, K. (2020). Shining light on rhodopsin selectivity: How do proteins decide whether to transport H1 or Cl-? Journal of Biological Chemistry, 295(44), 14805–14806. https://doi.org/10.1074/jbc.H120.016032
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