Alternative hypotheses on the inheritance of Tourette syndrome.
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Biomedical subjects
Publications and source records attributed to D E Comings.
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Mouse liver non-histone proteins, isolated by hydroxyapatite chromatography, were fractionated by hydrophobic chromatography using omega-amino-decyl-agarose omega-amino butyl-agarose, decyl-agarose, butyl-agarose, phenyl-Sepharose, and CPAD-Sepharose. Two column loading techniques were used. In the 0.35 M NaCl technique, the proteins were dialized into 0.35 M NaCl, applied to the column and initially eluted with 0.35 M NaCl. In the 40% (NH4)2SO4 technique, the non-histone proteins were mixed with the hydrophobic agarose, dialized against 40% (NH4)2SO4, and initially eluted with 40% (NH4)2SO4. In both cases the columns were subsequently eluted with 10 mM Tris-HCl, pH 7.5, 0.35, 1.0 and 5.0 M LiBr, and finally with 1% sodium dodecyl sulfate. The 0.35 M NaCl technique, using decyl-agarose and phenyl-Sepharose, resulted in a single step marked enrichment of the major hnRNA proteins (1 M LiBr fraction). The 40% (NH4)2SO4 technique resulted in a single step isolation of a pair of 15-20 000 dalton polypeptides.
Human fibroblasts were labeled by the 125I-lactoperoxidase technique and the sodium dodecyl sulfate soluble proteins examined by two-dimensional gel electrophoresis to determine the charge heterogeneity of the surface proteins and test for differences in surface proteins in several hereditary disorders. Approximately 80 polypeptides were observed. Those below 65 000 daltons tended to occur as single spots, while those of higher molecular weight were often present as a series of polypeptides of similar molecular weight (charge isomers). The possible role of these proteins in cell-cell recognition is discussed.
Isolated Chinese hamster metaphase chromosomes were resuspended in 4 M ammonium acetate and spread on a surface of distilled water or 0.15 to 0.5 M ammonium acetate. The DNA was released in the form of a regular series of rosettes connected by interrossette DNA. The mean length of the rosette DNA was 14 micron, similar to the mean length of 10 micron for chromomere DNA of Drosophila polytene chromosomes. The mean interrosette DNA was 4.2 micron. SDS gel electrophoresis of the chromosomal nonhistone proteins showed them to be very similar to nuclear nonhistone proteins except for the presence of more actin and tubulin. Nuclear matrix proteins were present in the chromosomes and may play a role in forming the rosettes. Evidence that the rosette pattern is artifactual versus the possibility that it represents a real organizational substructure of the chromosomes is reviewed.
Pc 1 Duarte, a common variant of a human brain-specific protein, is present in one-third of the control population and has a gene frequency of 0.17. There was a significantly increased frequency of mutant heterozygotes and homozygotes among individuals with depressive disease. This is consistent with a model in which Pc 1 Duarte is the major gene in depressive disease, acting in conjunction with an environmental threshold effect.
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A triple-spot pattern of polypeptides occurring in two-dimensional gel electrophoresis of proteins is described. The presence of a mutant protein, Pc 1 Duarte, which results in a splitting of all three polypeptides, is evidence that they are produced by the same gene. This pattern is seen in about 1% of the proteins from a variety of sources. Typically, about 50% of the protein occurs as a single major spot, the remainder occurring as two polypeptides with an additional negative charge and slightly different molecular weight. The reproducibility of this pattern implies a functional significance which is presently unknown. The implication of this configuration for patterns seen by one-dimensional gel electrophoresis is discussed.
The binding of mouse liver chromosomal proteins to DNA has been investigated using the nitrocellulose filter binding technique. Careful purification of the DNA involving nuclease S1 digestion and prefiltration through a nitrocellulose filter is used to reduce background binding in the absence of protein to less than 1%. Procedures involving direct binding of protein to labeled DNA, competition of binding of labeled DNA by unlabeled DNA, and dissociation of DNA . protein complexes with time do not indicate significant preference for binding to mouse DNA relative to Escherichia coli DNA. This specificity is demonstrated much more clearly by a novel type of procedure, which we call a sequential binding procedure. In this procedure non-specific binding proteins are sequestered by incubation with an excess of unlabeled E. coli DNA prior to addition of labeled DNA. Under these conditions, labeled mouse DNA is bound to filters to a 3- to 4-fold greater extent than labeled E. coli DNA.
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We examined four extracts of mouse liver for histone-binding proteins using histone affinity chromatography and positively charged resins. The extracts used were cytoplasm and washes from isolated nuclei with buffers containing 0.05 M Tris, 0.15 M NaCl or 0.35 M NaCl. Proteins from the nuclear washes showed greater binding to the columns than proteins from the cytoplasm. The binding fractions were heterogeneous in gel electrophoresis systems. Proteins bound to affinity columns of individual histones were similar to those bound to columns of whole histone, polylysine and DEAE. A 25,000 dalton polypeptide (J2), found only in nuclear washes was a prominent histone-binding protein. It could be competitively eluted from DEAE with histones, suggesting polypeptide J2 may show a specific affinity for histones. Polypeptide J2 has an acidic to basic amino acid ratio of 1.58, and its amino acid composition is not similar to that of the high mobility group 1 protein. Polypeptide J2 binds to hydrophobic columns and may play a role in modifying histone-histone and histone-DNA interactions.
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Mouse nuclear matrix proteins, examined by a filter assay, were found to bind to DNA. There was no preference for homologous mouse compared to heterologous E. coli DNA. Competition assays showed a preference for AT-rich DNA and of the 4 single-stranded homopolymers there was a preference for poly(dT). These observations are consistent with the possibility that the matrix may play a role in the formation of AT-rich chromomeres (G-bands).
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The optical absorption and fluorescence characteristics of 4'-6-diamidino-2-phenylindole (DAPI) with DNA and chromosomes were studied. There is a decrease in extinction coefficient and chift in the absorption spectra to a higher wavelength when the dye binds to DNA. The fluorescence of DAPI is enhanced by both A-T and G-C base-pairs. The enhancement by A-T rich is significantly greater than by G-C rich DNA. The chromosomes and the constrictions of human chromosomes 1 and 16; these regions are known to contain A-T rich DNA and show dull fluorescence when treated with quinacrine. This dye may be useful for identifying A-T rich region in chromosomes. The fluorescence of DAPI bound to polynucleotides or chromosomes is partially quenched by the introduction of BrdU. This suppression of dye fluorescence allows optical detection of sister chromatid exchanges and chromosome region containing DNA with an unequal distribution of thymidine between polynucleotide chains after BrdU incorporation.