The interaction of the protein product of the H−ras oncogene with a series of nucleoside di− and triphosphates has been examined to investigate the tolerance of the active site to departures from the GTP or GDP structures. Nucleotides which bind relatively strongly could be used as competitors of GDP in a simple filter binding assay to give semiquantitave estimates of their affinities. For more weakly binding nucleotides or to obtain quantitative data, a transient kinetic method was used which was based on determination of the association and dissociation rate constants. The results obtained indicate that substantial modification of the sugar or phosphate structure is tolerated with little or moderate loss of affinity, but that large losses...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
Gonzalez-Nilo,F. Centro de Bioinformática, Universidad de Talca, 2 Norte 685, Casilla 721, Talca, Ch...
The interaction of the protein product of the H−ras oncogene with a series of nucleoside di− and tri...
The interaction of the protein product of the H−ras oncogene with a series of nucleoside di− and tri...
The interaction of the protein product of the H-ras oncogene with a series of nucleoside di- and tri...
The interaction of the protein product of the H-ras oncogene with a series of nucleoside di- and tri...
The coordination and binding of the Mg2+ ion in the nucleotide-binding site of p21 have been investi...
The coordination and binding of the Mg2+ ion in the nucleotide-binding site of p21 have been investi...
Essential cell division protein FtsZ forms the bacterial cytokinetic ring and is a target for new an...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
The coordination and binding of the Mg2+ ion in the nucleotide−binding site of p21 have been investi...
The coordination and binding of the Mg2+ ion in the nucleotide−binding site of p21 have been investi...
The coordination and binding of the Mg2+ ion in the nucleotide−binding site of p21 have been investi...
The three−dimensional structure of the H−ras oncogene product p21 has been determined in both its ac...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
Gonzalez-Nilo,F. Centro de Bioinformática, Universidad de Talca, 2 Norte 685, Casilla 721, Talca, Ch...
The interaction of the protein product of the H−ras oncogene with a series of nucleoside di− and tri...
The interaction of the protein product of the H−ras oncogene with a series of nucleoside di− and tri...
The interaction of the protein product of the H-ras oncogene with a series of nucleoside di- and tri...
The interaction of the protein product of the H-ras oncogene with a series of nucleoside di- and tri...
The coordination and binding of the Mg2+ ion in the nucleotide-binding site of p21 have been investi...
The coordination and binding of the Mg2+ ion in the nucleotide-binding site of p21 have been investi...
Essential cell division protein FtsZ forms the bacterial cytokinetic ring and is a target for new an...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
The coordination and binding of the Mg2+ ion in the nucleotide−binding site of p21 have been investi...
The coordination and binding of the Mg2+ ion in the nucleotide−binding site of p21 have been investi...
The coordination and binding of the Mg2+ ion in the nucleotide−binding site of p21 have been investi...
The three−dimensional structure of the H−ras oncogene product p21 has been determined in both its ac...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
The solution of the crystallographic macromolecular phase problem requires incorporation of heavy at...
Gonzalez-Nilo,F. Centro de Bioinformática, Universidad de Talca, 2 Norte 685, Casilla 721, Talca, Ch...