PubMed HealthSearch

Biomedical subjects

K Grade

Publications and source records attributed to K Grade.

At least 37 records · Page 2Linked to original sources

Possibilities and limitation of prenatal diagnosis and carrier determination for Duchenne and Becker muscular dystrophy using cDNA probes.

Two cDNA probes, cf23a and cf56a, identify deletions of selected exons in about 50% of our DMD/BMD patients. We have estimated the most likely order of the 11 exons detectable with both probes with respect to the different extensions of the deletions. In one of our BMD pedigrees, the observed deletion could be traced in the affected males through three generations. This result shows that with the use of cDNA probes detecting deletions, the only risk of error in genomic prenatal diagnosis is the general high frequency of new mutations for DMD/BMD. This is important progress in diagnosis compared to the 2 to 5% risk of misdiagnosis because of crossing over events using conventional linkage analysis with bridging or intragenic probes. The first prenatal diagnosis of an unaffected fetus of a woman who is a DMD carrier according to ultrasound examination is described. In one of our DMD males, the cDNA probe cf56a detects a deletion breakpoint. His sister also shows the altered band and is therefore a DMD carrier, while his mother has a totally normal band pattern. The interpretation of this observation could be either germline mosaicism or two identical new mutations. The identification of deletion breakpoints is a new diagnostic strategy, especially for carrier determination, which excludes misdiagnosis owing to crossing over events and the problems of dosage estimation. It is, however, limited by the low frequency of breakpoints detectable with cDNA probes. Therefore, the generation of new intron probes in this region is an important goal.

Chromosome Deletion

[The development of molecular human genetics and its significance for perspectives of modern medicine].

The introduction of molecular human genetics has become a paradigma for the application of genetic engineering in medicine. The main principles of this technology are the isolation of molecular probes, their application in hybridization reactions, specific gene-amplification by the polymerase chain reaction, and DNA sequencing reactions. These methods are used for the analysis of monogenic diseases by linkage studies and the elucidation of the molecular defect causing these conditions, respectively. They are also the basis for genomic diagnosis of monogenic diseases, introduced into the health care system of the GDR by a national project on Duchenne/Becker muscular dystrophy, Cystic Fibrosis and Phenylketonuria. The rapid development of basic research on the molecular analysis of the human genome and genomic diagnosis indicates, that human molecular genetics is becoming a decisive basic discipline of modern medicine.

Child

Condensation of vector DNA by the chromosomal protein HMG1 results in efficient transfection.

The aim of this study was the search for a method of vector packaging using natural chromatin constituents. The interaction of the chromosomal non-histone protein HMG1 with a vector plasmid (pLTEneo) was studied by sedimentation analysis and electron microscopy at physiological salt concentration. At high protein input the complexes exist in a condensed, monodisperse form sedimenting with 80 S irrespective of the supercoiled or relaxed conformation of DNA. Saturation binding is already observed at much lower input ratios. Dilution of 80 S complexes results in decondensation of the complexes. In the decondensed complex form, HMG1 binds in a bead-like manner to specific DNA regions. Condensation by HMG1 is sufficient to introduce the vector into mammalian cells without the need for unphysiological additives. The transfection rates were similar to or even higher than those obtained by the calcium phosphate coprecipitation technique.

Animals

Interaction of histone H1 with superhelical DNA. Sedimentation and electron microscopical studies at low salt concentration.

Complexes of histones H1 with superhelical SV40 DNA obtained by direct mixing were studied in 0.1 SSC buffer corresponding to 0.02 M Na+. Depending on the molar input ratio H1/DNA three classes of sedimenting species were observed: (1) a component sedimenting similar to superhelical DNA with a sedimentation coefficient s2o,w of 25 S observable up to 335 Mol H1/Mol DNA (w/w = 2); (2) a component with s2o,w = 120 S appearing at 135 Mol H1/Mol DNA and (3) growing amounts of heterogeneous aggregates greater than 1000 S. Electron micrographs revealed the 25 S component to consist of double-fibers formed from one DNA molecule and the 120 S component to consist of bundles of several such double-fibers. The aggregates represent cable-like structures. The addition of ethidium bromide to 25 S complexes induces the formation of bundles, if H1 is present in a quantity which alone is not sufficient to bring about this effect. This result indicates that ethidium bromide effects a redistribution of H1 molecules and that H1 is responsible for the bundle formation.

DNA, Superhelical

Physicochemical properties of salt-soluble, unsheared chromatin. Salt-dependent structural changes.

Salt-dependent structural changes of rat liver chromatin isolated by an extraction procedure not involving shear and exogenous nucleases were investigated by sedimentation and light scattering methods. The effects observed are complex involving changes in the molecular weight and expansion. Between 0.1 M and 0.2 M (NH4)2SO4 where histone H1 is released, a fragmentation into molecules of half molecular weight is found which is accompanied by an expansion into a more extended conformation gradually increasing to 0.4 M (NH4)2SO2. The H1-free chromatin does not exhibit the reduction in molecular weight but undergoes this expansion. The original conformation is not reversible on re-decreasing the salt concentration to 0.1 M (NH4)2SO4.

Ammonium Sulfate

RNA-primed DNA synthesis by an enzyme preparation of calf thymus containing highly enriched RNA polymerase B and DNA polymerase.

RNA polymerase B and DNA polymerase alpha were highly enriched simultaneously from calf thymus. It was shown that the preparation exhibits RNA-synthesizing activity, which is able to stimulate in vitro DNA synthesis by DNA polymerase alpha by its preceding RNA synthesis. A part of the DNA was found to be covalently attached to RNA in Cs2SO4 equilibrium gradients after denaturation by formamide.

Animals

Complexes of DNA with arginine-rich and slightly lysine-rich histones. Transcription and electron microscopy.

Calf thymus DNA was reconstituted with arginine-rich histones H3 and H4 and slightly lysine-rich histones H2A and H2B respectively. Complexes containing histones H3 and H4 exhibit nucleosome-like structures when examined in the electron microscope and show a restriction of in vitro transcription similar to that obtained for reconstitutes made up from the four histones H2A, H2B, H3 and H4. One the contrary, complexes of DNA and histones H2A and H2B create different morphological structures of short stretches of bound histones and do not cause a template restriction in vitro.

Animals

Transcriptional capacity of rat liver nuclei and of isolated chromatin at different ammonium sulphate concentrations.

The transcription of freshly prepared nuclei and lysates from rat liver is stimulated by exogenous RNA polymerase B from calf thymus to an insignificant extent only. This also holds for chromatin isolated from nuclei lysates by separation on a Sepharose 4 B column. After removal of histone H1 by pretreatment with 0.2 M ammonium sulphate no further stimulation by added RNA polymerase has been found. If, however, the incubation time was extended, or the nuclei had been kept frozen at -20 degrees C for some time before use, a significant increase in RNA synthesis by the added RNA polymerase was obtained. In the freshly prepared nuclei as well as in the undamaged chromatin the template capacity was highly restricted. This can be seen from the fact that after pretreatment of the chromatin with 0.4 M ammonium sulphate the RNA synthesis was stimulated about 13fold.

Ammonium Sulfate

An improved method for the preparation of the DNA-dependent RNA polymerase B from calf thymus.

A simplified method is described for the large-scale preparation of a highly purified DNA-dependent RNA polymerase B from calf thymus. The method includes homogenization and lysis of the tissue, chromatography on DEAE-cellulose, phosphocellulose, hydroxylapatite-Sephadex G-10 and, once again, phosphocellulose. The procedure avoids the preparation of nuclei, the use of sonication, ammonium sulphate precipitations and dialysis steps and needs no ultracentrifugation.

Animals