Monitoring practice: simplifying and strengthening the process.
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Biomedical subjects
Publications and source records attributed to S Simons.
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The cell surface cAMP receptor was excised from preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis and used to generate a polyclonal antiserum. The antiserum immunoprecipitates the two molecular weight forms of the cAMP receptor. Both forms are phosphorylated. Western blot analyses show that the antiserum is highly specific and recognizes only the two molecular weight forms of the cAMP receptor. Immunological studies indicate that both forms of the receptor are phosphorylated. Vegetative amoebae possess low levels of the cAMP receptor. Levels of the antigen increase in differentiated cells which express high cell surface cAMP binding activity. The antiserum was also used to isolate 6 lambda gt11 cDNA clones. One of those clones contains a 1.1-kilobase pair cDNA fragment which encodes for a protein of approximately 30,000-35,000 daltons. The antibody which binds to the fusion protein also recognizes the two molecular weight forms of the receptor.
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Stimulation, within 1 min after cAMP stimulation, of aggregation-competent Dictyostelium discoideum amebae was found to cause a rapid (within 1 min) modification of the cell's surface cAMP receptor. The modified receptor migrated on SDS PAGE as a 47,000-mol-wt protein, as opposed to a 45,000-mol-wt protein labeled on unstimulated cells. The length of time this modified receptor could be detected depended upon the strength of the cAMP stimulus: 3-4 min after treatment with 10(-7) M cAMP, cells no longer possessed the 47,000-mol-wt form of the cAMP receptor. Instead, the 45,000-mol-wt form was present. Stimulation of cells with 10(-5) M cAMP, however, resulted in the persistent (over 15 min) expression of the modified receptor. The time course, concentration dependence, and specificity of stimulus for this cAMP-induced shift in the cAMP receptor were found to parallel the cAMP-stimulated phosphorylation of a 47,000-mol-wt protein. In addition, both phenomena were shown to occur in the absence of endogenous cAMP synthesis. The possibility that the cAMP receptor is phosphorylated in response to cAMP stimulation, and the role of this event in cell desensitization, are discussed.
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Purified nuclei isolated from mice challenged with nonlethal levels of mercury chloride (10-(3)M) in drinking water for 4 to 7 weeks (experimental) and from animals given deionized water (control) were fractionated and the subsequent fractions were analyzed for mercury by flameless atomic absorption. Control (active) euchromatin contained 1.75 +/- 0.53 micrograms of mercury per milligram of DNA. There was a 12- to 15-fold enrichment of mercury in the euchromatin fraction of challenged animals. Mercury was not detected in control (inactive) heterochromatin, and only trace levels (parts per billion) appeared in experimental heterochromatin. It seems likely that mercury can be incorporated into chromatin as a metal-protein complex, but the possibility of protein-mercury-DNA or mercury-DNA complexes within euchromatin cannot be excluded.
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