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W Prensky

Publications and source records attributed to W Prensky.

30 records · Page 2Linked to original sources

Application of fingerprinting techniques to iodinated nucleic acids.

Several techniques of RNA and DNA finger-printing and determination of sequence have been applied to nucleic acids labeled with (125)I. Fingerprints of human 5S RNA and bacteriophage f2 RNA resemble those of their noniodinated counterparts both in complexity and in specific pattern. Iodination as used here is thus a general labeling procedure, and appears principally to label cytidine residues. This iodination method shows little sensitivity to potential structure in single-stranded RNA molecules, yields stable oligonucleotide products in a reproducible manner, and does not change the specificity of several ribonucleases and deoxyribonucleases.

Animals↗

The use of iodinated RNA for gene localization.

Carrier-free iodination of 5S RNA with (125)I yields a probe suitable for use in cytological RNA-DNA hybridization studies. The genes coding for 5S ribosomal RNA in Drosophila could be localized by autoradiography after a 2-day exposure, whereas a 2-month exposure is needed when the best available [(3)H]RNA is used. The procedure introduces one covalently bound (125)I atom per 100 nucleotides, resulting in a specific activity of over 10(8) dpm/mug of RNA. The method may be readily applied to other problems involving molecular hybridization techniques.

Animals↗

Detection of a feline X-linked antigen in somatic cell hybrids. Single-cell analysis using monoclonal antibodies.

We tested the premise that monoclonal antibodies to either intracellular or membrane antigens can greatly facilitate the construction of linkage maps of mammals whose chromosomes can be introduced into rodent cells. Monoclonal antibodies against antigenic determinants of cat lymphocytes and fibroblasts were used to analyze feline antigen expression in cat-mouse somatic cell hybrid populations selected to contain the X-linked feline HPRT locus. The frequency of antigen expression as measured by fixed cell immunofluorescence (IF) assays, varied greatly within hybrid populations for all but the antigen designated as VP382. Its frequent presence in hybrid cells led to the prediction, confirmed by 8-azaguanine selection experiments, that its expression was controlled by a gene, or genes, on the feline X chromosome. The antigens identified by the rest of the antibodies segregated independently of each other in cat-mouse somatic cell hybrids and their expression appeared to be controlled by autosomal genes of the cat.

Animals↗