Abstract
Proteins are commonly viewed as modular assemblies of functional domains. We analyzed a loss-of-function mutation in the Caenorhabditis elegans intracellular receptor DAF-12, a conservative substitution of an arginine to a lysine at position 197 (R197K). Arg197 resides in region similar to a nuclear localization signal, just downstream of the receptor minimal zinc finger DNA binding domain (DBD) core. We found that the R197K, but not mutations of neighboring arginine or lysine residues, dramatically reduced DAF-12 transcriptional regulatory activity in a yeast reporter assay. This reduction in regulatory activity correlated with greatly decreased DNA binding affinity in vitro, suggesting a role for the DAF-12 DBD C-terminal region (dbdC), and specifically for Arg197, in DNA binding. Remarkably, three basic residues immediately contiguous with Arg197 played little role in DNA binding and rather affected nuclear localization; in contrast, Arg 197 itself was dispensable for nuclear localization. Thus, DAF-12 dbdC harbors overlapping but separable determinants of DNA binding and nuclear localization in a single small region. © 2005 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Shostak, Y., & Yamamoto, K. R. (2005). Overlapping but separable determinants of DNA binding and nuclear localization map to the C-terminal end of the Caenorhabditis elegans DAF-12 DNA binding domain. Journal of Biological Chemistry, 280(8), 6554–6560. https://doi.org/10.1074/jbc.M412928200
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