PubMed HealthSearch

Biomedical subjects

T Caskey

Publications and source records attributed to T Caskey.

9 recordsLinked to original sources

Two hot spots of recombination in the DMD gene correlate with the deletion prone regions.

Genetic mapping has indicated that meiotic recombination occurs about 4 time more frequently in the dystrophin gene than expected on the basis of its length. To detect where recombinations occur within the gene, we have studied the CEPH families panel using highly polymorphic microsatellite markers located at the ends of the gene or flanking the major deletion hot spot in intron 44. We found a major hot spot of recombination between markers STR44 and STR50(1), i.e., between exons 44 and 51. Within this hot spot, a peak of recombination was located in the large intron 44. A second minor recombination prone region was found between DXS 206, (XJ, in the large intron 7) and the 5' end of the DMD gene. The distribution of the recombination events in the gene of healthy individuals was very similar to that of deletion breakpoints in DMD/BMD patients, suggesting that the two phenomenon may share a common mechanism. These results should also improve efficiency and accuracy of linkage analysis applied to carrier detection and prenatal diagnosis. In particular, if markers located at the very 3' end of the gene are not informative, the highly polymorphic ones located between exons 50 and 60 can be used instead of presently available extragenic markers, with a very low risk of diagnostic error due to recombination.

Dystrophin

Peptide chain termination. VI. Purification and site of action of S.

PEPTIDE CHAIN TERMINATION IS A RESULT OF AT LEAST TWO EVENTS: terminator codon recognition and hydrolysis of peptidyl tRNA. A protein factor S, isolated from the supernatant of Escherichia coli B, stimulates fMet release. Factor S lowers the K(m) for terminator trinucleotides without altering the V(max) of release and therefore acts at terminator codon recognition. The S protein differs from initiation factors, elongation factor G, several forms of elongation factor T and release factors. The importance of the 2% Tu content in purified S is unresolved.

Bacterial Proteins

Peptide chain termination. 3. Stimulation of in vitro termination.

Throughout extensive purification, the release factors R(1) and R(2) each behave as a single molecular species with alternate codon recognition (R(1), UAA or UAG; R(2), UAA or UGA). The release of f[(3)H]methionine from f[(3)H]-Met-tRNA.AUG.ribosome complex requires R factor and terminator codon and does not appear to require tRNA or transfer factors T and G. Purification of the components of the release assay has enabled identification of a protein factor S in the 55-80 per cent ammonium sulfate fraction of E. coli B supernatant fraction which stimulates the rate but not the extent of release dependent upon R factor and appropriate termination codon. The S factor has properties similar to T, but further purification is required to determine the nature and function of S in peptide chain termination.

Amino Acid Sequence