Search PubMedSearch

Biomedical subjects

S H Moss

Publications and source records attributed to S H Moss.

6 recordsLinked to original sources

Isolation and partial purification of a melanocyte-stimulating hormone receptor from B16 murine melanoma cells. A novel approach using a cleavable biotinylated photoactivated ligand and streptavidin-coated magnetic beads.

The alpha-melanocyte-stimulating hormone (alpha-MSH) receptor of B16 mouse melanoma cells was characterized by photoaffinity labelling using radiolabelled photoactive derivatives of alpha-MSH. A doublet band of 43-46 kDa representing a ligand-receptor complex was identified. A novel adaptation of the streptovadin/biotin-based affinity system was used to isolate the alpha-MSH receptor. A probe was synthesized which contained biotin connected to a photolabelled alpha-MSH analogue via a cleavable disulphide linker and which displayed high affinity for the alpha-MSH receptor. Streptavidin-coated magnetic beads were used as a solid support instead of an affinity column. Covalently linked probe-receptor complexes solubilized in Triton X-100 were equilibrated with the beads, and after magnetic separation and washing, specifically bound complexes were treated with dithiothreitol to cleave the disulphide bridge in the biotin-peptide spacer arm and so release the receptor-ligand complex. The identity of the isolated protein was established by SDS/PAGE analysis. Methods to achieve purification to homogeneity and to allow quantitative isolation of the receptor are discussed.

Affinity Labels

Photo-reactivation of gamma-radiation damage in Escherichia coli as evidence for the nature of the oxygen-enhancement effect.

The enhancement of gamma-radiation-induced damage in bacteria by the presence of oxygen during irradiation has been attributed to changes in the rate of formation, or alternatively in the repair, of single-strand breaks. This paper presents data which support the hypothesis that the observed effect of oxygen of modifying viability after irradiation is in part associated with lesions other than DNA single-strand breaks. In particular, the influence of oxygen during gamma-irradiation on the subsequent efficiency of photo-reactivation and excision repair is used to demonstrate that oxygen enhancement is due to a reduction in the excision repair of non-photo-reactivable damage.

Cell Survival