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Biomedical subjects

J M Ulrich

Publications and source records attributed to J M Ulrich.

8 recordsLinked to original sources

DNA-protein interaction sites in differentiating cells. II. A subset of alphoid repetitive sequences with retinoic acid induced protein attachment and an unusual purine-pyrimidine 'signature'.

Two independent methods were used to recover the tightly or covalently attached DNA-protein complexes which form during the differentiation induction of HL60 cells by all-trans retinoic acid. One method employed nitrocellulose filter binding (described in the accompanying paper) to recover these protein-DNA complexes, following by representational difference analysis (RDA). RDA is an extremely powerful new technique for cloning the difference between complex DNA samples, exploiting a combination of kinetic enrichment during PCR amplification, and subtractive hybridization. In this case, we used filter-bound DNA from undifferentiated cells for subtraction of equivalent DNA from differentiating cells. A second approach used a combination of sodium dodecyl sulfate (SDS)/KCI precipitation and affinity phase partitioning for purification of DNA bound to proteins, followed by selection of clones showing differentiation-specific attachment of proteins (by differential hybridization to protein-attached DNA from differentiating and undifferentiated HL60 cells). Both procedures yielded a high proportion of alphoid repetitive sequences, although slightly higher in the RDA sample than that of the other method (approximately 50% and approximately 30%, respectively). Plots of purine-pyrimidine composition showed that the alphoids recovered by both techniques were unusual and remarkably similar. Although the clones were related to each other, they differed more from the alphoid consensus than examples of alphoid sequences selected from data banks. There was also a contrast between the purine-pyrimidine composition plots of archetypal alphoid monomers and this subset. The principal difference observed related to two adjacent homopyrimidine tracts present in the archetypal monomers but altered in the subset. The possible significance of these differences is discussed with respect to the established roles of alphoid sequences and known/putative protein binding sites including that for the centromeric binding protein (CENB-P box) and response elements for retinoic acid receptors. Following induction of differentiation with retinoic acid, protein attachment (monitored by filter binding) was rapid, maximal at 40 minutes, and still elevated at 165 minutes. This was specific to the alphoid subset, and induced protein binding at a nonrepetitive site in DNA had different kinetics. Changing protein attachment at this subset of alphoid repetitive sequences contributes to differentiation-associated chromatin structural changes.

Base Composition↗

Nuclear thyroid hormone receptors in rabbit heart: reduced triiodothyronine binding in atrium compared with ventricle.

Radiolabeled triiodothyronine (T3) binding to isolated nuclei was measured to compare the binding characteristics of the nuclear receptors in rabbit ventricular and atrial muscle cells. Scatchard analysis of the binding data yielded a maximum binding capacity of 170 +/- 20 fmol per mg DNA and apparent dissociation constant of 525 +/- 100 pM for ventricular nuclei. The binding capacity and the dissociation constant for the atrial muscle cell nuclei were 55 +/- 10 fmol per mg DNA and 500 +/- 75 pM, respectively. The results suggest that the binding capacity for T3 receptor in the atrium is considerably lower than that found in the ventricle. The reduced binding capacity of the T3 receptor in the atrium might reflect differences in the nuclear T3 receptors between ventricle and atrium.

Animals↗

Cryoprotectant removal temperature as a factor in the survival of frozen rice and sugarcane cells.

Removal of cryoprotective additives through use of a room temperature (22 degrees C) washing step, instead of 0 degrees C, was found to improve the recovery of sugarcane suspension culture and rice callus tissues. Cultured cells were cryoprotected by gradual addition of a mixture of polyethylene glycol, glucose, and DMSO (PGD) to a final concentration of 10%-8%-10%, w/v, respectively, added at either 0 or 22 degrees C. After a programmed slow freezing of the cells, they were thawed rapidly and the cryoprotectants were gradually diluted and washed out using a 22 or 0 degree C washing medium. Viability of suspension cultured sugarcane cells protected with PGD was greatly diminished when a cold washing solution was used, whether the cells had been frozen (-23 degrees C) or not. Two mutant lines of rice callus when frozen to -196 degrees C in PGD and thawed showed less growth than unfrozen cells, but their growth was improved by washing the thawed cells with a 22 degrees C solution. With all cultures tested, the addition of PGD at 0 degrees C and post-thaw washing out at 22 degrees C gave improved survival. Particularly with the rice lines, optimizing the addition and washing procedures allowed culture survival of liquid nitrogen freezing not otherwise attained.

Cell Survival↗

Effects of cryogenic treatment on plantlet production from frozen and unfrozen date palm callus.

Embryogenic date palm (Phoenix dactylifera L. var. Medjool) callus cultures were treated with a cryoprotective mixture of polyethylene glycol (Carbowax 6000), glucose, and dimethylsulfoxide (10%/8%/10%, w/v); treated with the mixture, frozen to -196 degrees C, and then thawed; or left untreated. Growth subsequent to treatment was measured as fresh weight increase and as the number of embryos produced during 18 weeks of culture. The growth of calli that were frozen and thawed, compared to the other treatments, was greatly inhibited during the first 9 weeks of culture. This inhibition disappeared in subcultured tissue. In all treatments, cultures initiated plantlets after 9 weeks. Enzyme polymorphism, for five gene-associated enzyme systems including alcohol dehydrogenase, esterase, peroxidase, phosphoglucomutase, and phosphoglucoisomerase, was analyzed in leaves of regenerated plantlets by using starch gel electrophoresis for separation. Isozyme patterns were similar for all treatments.

Journal Article↗

Effects of cryoprotectants in combination on the survival of frozen sugarcane cells.

Cryoprotection of suspension cultures of sugarcane cells (Saccharum sp.) during freezing to various temperatures was tested using glucose, dimethylsulfoxide, and ethylene glycol at various concentrations, alone and in combinations. Viability of the thawed cells was assessed by triphenyltetrazolium chloride reduction, cell growth, and microscopic examination. Enhanced cryoprotection-as much as a doubling in viability value-was achieved by employing glucose and dimethylsulfoxide in mixtures, as compared with the lesser cryoprotective effect of either compound alone, at 1.9 molar total concentration in all cases; the mixture was most effective at a concentration of about 1.9 molar, with a molar ratio of the two components of about 1:3, respectively. Much of the increase in viability value arose from a decrease in toxic effect that came about through mixing the cryoprotective agents. Binary mixtures containing ethylene glycol and either glucose or dimethylsulfoxide were less effective and more toxic than comparable glucose-dimethylsulfoxide mixtures. Use of the optimized latter mixture allowed freezing of these tropical cells to -23 C with little decrease in survival, or to -40 C, still with the capability for delayed growth.

Journal Article↗

Transport of selenate and selenite into astragalus roots.

After incubation for 1 hr with (75)Se-selenate, excised roots of Astragalus crotalariae, a selenium-accumulating species, and A. lentiginosus, a nonaccumulator, had absorbed radioactivity to levels well over the external concentration. About 98% of the radioactivity was ethanol-soluble, and when analyzed by column and paper chromatography and by electrophoresis proved to be selenate. This and previous evidence shows an active transport for selenate. Considerably less radioactivity was absorbed when (75)Se-selenite was supplied to the excised roots, and levels of the ethanol-soluble radioactivity did not exceed the external concentration. A good deal of the radioactivity was ethanol-insoluble. Analysis of the soluble radioactivity from both species showed appreciable conversion of selenite to other forms.

Biological Transport, Active↗

Selenium absorption by excised Astragalus roots.

Absorption of selenate and selenite by excised roots of Astragalus Crotalariae, a selenium accumulator, and of A. lentiginosus, a non-accumulator, was favored by CaCl(2) and a pH of 4.0. The uptake of selenate and possibly selenite, is metabolically linked. Roots of a number of Astragalus species were examined, and in all cases selenate entered the roots much faster than selenite. In these short-term experiments there was no relation between uptake of the 2 ions and classification of a species as selenium-accumulator or non-accumulator.

Absorption↗