PubMed Health⌕ Search

Biomedical subjects

W T Wiesler

Publications and source records attributed to W T Wiesler.

4 recordsLinked to original sources

Yeast alpha mating factor structure-activity relationship derived from genetically selected peptide agonists and antagonists of Ste2p.

alpha-Factor, a 13-amino-acid pheromone secreted by haploid alpha cells of Saccharomyces cerevisiae, binds to Ste2p, a seven-transmembrane, G-protein-coupled receptor present on haploid alpha cells, to activate a signal transduction pathway required for conjugation and mating. To determine the structural requirements for alpha-factor activity, we developed a genetic screen to identify from random and semirandom libraries novel peptides that function as agonists or antagonists of Ste2p. The selection scheme was based on autocrine strains constructed to secrete random peptides and respond by growth to those that were either agonists or antagonists of Ste2p. Analysis of a number of peptides obtained by this selection procedure indicates that Trp1, Trp3, Pro8, and Gly9 are important for agonist activity specifically. His2, Leu4, Leu6, Pro10, a hydrophobic residue 12, and an aromatic residue 13 are important for both agonist and antagonist activity. Our results also show that activation of Ste2p can be achieved with novel, unanticipated combinations of amino acids. Finally, the results suggest the utility of this selection scheme for identifying novel ligands for mammalian G-protein-coupled receptors heterologously expressed in S. cerevisiae.

Amino Acid Sequence↗

Oligosaccharide microanalysis by c.d. spectroscopy. Reference curves for D-mannose derivatives.

This study completes the spectroscopic basis for a novel oligosaccharide microanalytical method, wherein a derivatization sequence provides monosaccharide subunits bearing two types of exciton-coupling chromophore groups ("bichromophoric") for circular dichroic spectroscopy, namely 4-bromobenzoate (lambda max 245 nm) and 4-methoxycinnamate (lambda max 311 nm). The 24 possible derivatives of methyl alpha-D-mannopyranoside bearing two chromophore and two acetate groups have been prepared and their c.d. spectra recorded. These spectra have been used to calculate the c.d. curves of the 14 possible tetrachromophic derivatives according to the pairwise additivity rule. The accuracy of these calculations has been demonstrated for six representative derivatives. The c.d. curves obtained here, together with curves of the corresponding D-glucose and D-galactose derivatives, comprise a set of 42 unique and distinctive spectra which can be utilized to identify sugars and their linkage patterns, and thus represent the basis for an alternative to methylation analysis which does not rely upon synthetic standards.

Bromobenzoates↗

Circular dichroism spectra of bichromophorically derivatized methyl-D-galactopyranosides, calculable by pairwise additivity, provide a basis for novel microanalysis of oligosaccharides.

The spectroscopic basis for a novel alternative to methylation microanalysis for linkage determination is presented. The complex c.d. spectra of "bichromophoric" D-galactopyranoside derivatives, i.e., containing two types of exciton-coupling chromophore, namely, p-bromobenzoate (lambda max 245 nm) and p-methoxycinnamate (lambda max 311 nm), are highly characteristic at nanomolar levels, indicative of the sugar, the substitution pattern, and the D or L configuration. That these spectra are due to a recently demonstrated pairwise additivity is confirmed. Work directed towards an oligosaccharide derivatization-sequence, resulting in the easily identifiable tetrachromophoric monosaccharide residues, is described. Such an analysis can simultaneously accomplish identification of sugar components, linkage pattern, and determination of absolute configuration at the nanomolar level.

Benzoates↗