For a reaction to be generally useful for protein modification, it must be site-selective and efficient under conditions compatible with proteins: aqueous media, low to ambient temperature, and at or near neutral pH. To engineer a reaction that satisfies these conditions is not a simple task. Olefin metathesis is one of most useful reactions for carbon-carbon bond formation, but does it fit these requirements? This minireview is an account of the development of olefin metathesis for protein modification. Highlighted below are examples of olefin metathesis in peptidic systems and in aqueous media that laid the groundwork for successful metathesis on protein substrates. Also discussed are the opportunities in protein engineering for the genet...
This review summarizes the recent progress of Grubbs–Hoveyda (GH) type olefin metathesis catalysts i...
This thesis investigates the application of cross metathesis and ring-closing metathesis to amino ac...
Olefin metathesis is one of the most powerful C-C double-bond-forming reactions. Metathesis reaction...
For a reaction to be generally useful for protein modification, it must be site-selective and effici...
Olefin metathesis has become a mainstay in organic synthesis.1 Cross-metathesis (CM), however, is la...
Olefin metathesis has recently emerged as a viable reaction for chemical protein modification. The s...
Chemical modification of proteins is critical for many areas of biochemistry and medicine. Several m...
Multiple, complementary methods are reported for the chemical conversion of cysteine to S-allyl cyst...
Site-selective protein modification has become an important tool to study protein functions in chemi...
Site-selective protein modification has become an important tool to study protein functions in chemi...
Olefin metathesis is one of the most powerful C–C double-bond-forming reactions. Metathesis reaction...
Olefin metathesis is a Nobel prize winning reaction that can rearrange double or triple bonds with t...
Olefin cross-metathesis (CM) is a viable reaction for the modification of alkene-containing proteins...
Olefin cross-metathesis (CM) is a viable reaction for the modification of alkene-containing proteins...
A series of Grubbs–Hoveyda type catalyst precursors for olefin metathesis containing a maleimide moi...
This review summarizes the recent progress of Grubbs–Hoveyda (GH) type olefin metathesis catalysts i...
This thesis investigates the application of cross metathesis and ring-closing metathesis to amino ac...
Olefin metathesis is one of the most powerful C-C double-bond-forming reactions. Metathesis reaction...
For a reaction to be generally useful for protein modification, it must be site-selective and effici...
Olefin metathesis has become a mainstay in organic synthesis.1 Cross-metathesis (CM), however, is la...
Olefin metathesis has recently emerged as a viable reaction for chemical protein modification. The s...
Chemical modification of proteins is critical for many areas of biochemistry and medicine. Several m...
Multiple, complementary methods are reported for the chemical conversion of cysteine to S-allyl cyst...
Site-selective protein modification has become an important tool to study protein functions in chemi...
Site-selective protein modification has become an important tool to study protein functions in chemi...
Olefin metathesis is one of the most powerful C–C double-bond-forming reactions. Metathesis reaction...
Olefin metathesis is a Nobel prize winning reaction that can rearrange double or triple bonds with t...
Olefin cross-metathesis (CM) is a viable reaction for the modification of alkene-containing proteins...
Olefin cross-metathesis (CM) is a viable reaction for the modification of alkene-containing proteins...
A series of Grubbs–Hoveyda type catalyst precursors for olefin metathesis containing a maleimide moi...
This review summarizes the recent progress of Grubbs–Hoveyda (GH) type olefin metathesis catalysts i...
This thesis investigates the application of cross metathesis and ring-closing metathesis to amino ac...
Olefin metathesis is one of the most powerful C-C double-bond-forming reactions. Metathesis reaction...