Site-specific incorporation of phosphotyrosine using an expanded genetic code
Christian Hoppmann1, Allison Wong2, Bing Yang1
1Department of Pharmaceutical Chemistry, University of California, San Francisco, San Francisco, California, USA.
Abstract:
Access to phosphoproteins with stoichiometric and site-specific phosphorylation status is key to understanding the role of protein phosphorylation. Here we report an efficient method to generate pure, active phosphotyrosine-containing proteins by genetically encoding a stable phosphotyrosine analog that is convertible to native phosphotyrosine. We demonstrate its general compatibility with proteins of various sizes, phosphotyrosine sites and functions, and reveal a possible role of tyrosine phosphorylation in negative regulation of ubiquitination.
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