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Biomedical subjects

S H Kidson

Publications and source records attributed to S H Kidson.

27 records · Page 2Linked to original sources

Cytokine-mediated inhibition of erythropoietin synthesis by dexamethasone.

The effect of inflammatory cytokines on the in-vitro synthesis of erythropoietin by HepG2 cells was evaluated. Monocyte-conditioned medium, and the cytokines interleukin-1 beta, interleukin-6 and tumour necrosis factor-alpha all reduced synthesis of erythropoietin. The steroidal anti-inflammatory drug, dexamethasone, did not affect cytokine-mediated erythropoietin inhibition. Dexamethasone did cause a reduction in the secretion of erythropoietin inhibitory cytokines from monocytes. These results point to a possible therapeutic approach in the treatment of anaemia caused by suppression of erythropoietin synthesis by monocytic cytokines.

Anti-Inflammatory Agents↗

An ultrastructural study of melanocytes and melanosomes in the skin and hair bulbs of rufous albinos.

We have examined hair bulb and skin melanocytes of rufous albinos from Southern Africa to further characterize this form of albinism. In the skin melanocytes we find both eumelanosomes and pheomelanosomes at various stages of melanization and, in addition, there appeared to be many aberrant incompletely melanized melanosomes. On average, rufous melanosomes are 30% smaller than normal black skin melanosomes. In the keratinocytes, the melanosomes are packaged into distinct aggregations, whereas in normal black skin, they occur singly. We suggest that the reddish skin color of these albinos is a consequence of an increase in the pheomelanin synthesis resulting in a raised pheomelanin/eumelanin ratio and that the aggregation of melanosomes results in a skin color slightly lighter than normal. In hair bulb melanocytes, only eumelanosomes were seen and these were mostly incompletely melanized. These findings correlate with our visual observations that the hair color of Southern African albinos is very pale (light brown or ginger). Based on our observations, we speculate on the possible cause of rufous albinism.

Albinism, Oculocutaneous↗

Terminal migration and early differentiation of melanocytes in embryonic chick skin.

The microenvironment is thought to play a key role in the control of neural crest cell diversification. To investigate its role in melanocyte differentiation we mapped the temporal and spatial distribution of pigmented melanocytes in embryonic chick skin and determined, by experimental means, the route taken by migrating melanocytes in the skin. We show that the New Hampshire Red/Black Australorp crossbreed exhibits melanization from 5 days of incubation (2 1/2 days earlier than is reported in other breeds). Contrary to previous reports our findings show that melanization is at first predominantly dermal. Both dermal and epidermal melanocyte numbers increase until Day 8, whereafter there is a dramatic decline in dermal melanocytes and by Day 10, melanocytes are almost exclusively located in the epidermis. Using homeotypic and heterotypic combinations of white and red/black dermis and epidermis we have demonstrated that premelanocytes arrive in the dermis of the trunk by Day 3 and begin to move into the epidermis from Day 4 onward. Results from these grafts and from tritium labeling studies strongly suggest that there is little or no reverse migration of premelanocytes from epidermis to dermis. Our findings indicate that overt melanocyte differentiation is not dependent on location in an epidermal environment, and that melanogenesis does not signify the end-stage in the migration process. Further, they suggest that the early dermal mesenchyme plays a key role in controlling melanogenesis.

Animals↗

Mirror polydactyly: pathogenesis based on a morphogen gradient theory.

We report on an infant with 7 toes of the left foot in a mirror configuration in association with ipsilateral duplication of the calcaneus and fibula, tibial aplasia, femoral hypoplasia, and a teratomatous sacrococcygeal tumour. The possible pathogenetic mechanisms leading to this limb abnormality are discussed with special emphasis on a field morphogen gradient hypothesis.

Female↗

Effect of thymidine analogs on tyrosinase activity and mRNA accumulation in mouse melanoma cells.

The thymidine analog 5-bromodeoxyuridine (BrdU) has been found to inhibit terminal differentiation of a variety of cell types without significantly affecting the growth of these cells. We have compared the effect of BrdU with two other thymidine analogs, 5-iododeoxyuridine and 5-fluorodeoxyuridine, on the growth, tyrosinase activity, and tyrosinase-mRNA accumulation in BL-6 mouse melanoma cells. We show that all three analogs inhibit growth and tyrosinase activity, but only BrdU significantly inhibits the accumulation of tyrosinase mRNA. We consider these results in the light of current understanding of BrdU action.

Animals↗

Synthesis and activity of Xenopus laevis oocyte tyrosinase.

This study investigates the mechanisms that control pigment synthesis in Xenopus laevis oocytes. Although we find the molecular weight of oocyte tyrosinase to be similar to that of amphibian skin, we were unable to increase its activity by proteases or detergents, as has been reported for skin tyrosinase. On the other hand, by measuring the activity of polysomal-bound enzyme, we were able to correlate increased tyrosinase activity with increased levels of enzyme synthesis. We therefore suggest that in oocytes, the activity of tyrosinase is primarily dependent on its synthesis, whereas in skin, the rate-limiting step is the post-translational activation of the enzyme. We speculate on these differences in relation to the functional role of melanin in skin and oocytes.

Animals↗

Closely linked early and late histone H2B genes are differentially expressed after microinjection into sea urchin zygotes.

An early and a late histone H2B gene from the sea urchin Stronglyocentrotus purpuratus were linked in a single plasmid and injected into the eggs of the sea urchin Lytechinus pictus. The levels of transcripts of injected early and late genes and of endogenous early genes were monitored during development by a ribonuclease protection assay. Transcripts of both the injected and endogenous early genes peaked during the blastula stage and decreased severalfold by the mesenchyme blastula stage. Transcripts of the injected late gene became detectable at the blastula stage and increased in amount subsequently, until at least the early gastrula stage, 28 hr after fertilization. Thus, the pattern of expression of the injected early and late H2B genes is similar to that of their endogenous counterparts. These results show that DNA sequences regulating the temporal pattern of early and late H2B gene expression must lie within the cloned DNA segments; i.e., within 600 base pairs of the early H2B gene and 3 kilobases of the late H2B gene.

Animals↗

Isolation of tyrosinase-mRNA by affinity chromatography of polysomes.

We present a method whereby some mRNAs which code for enzymes can be isolated by affinity chromatography of newly synthesized polypeptides bound to their polysome complexes. Using this method we have isolated tyrosinase-mRNA from Xenopus laevis oocytes and have analysed the translation products from the RNAs thus obtained. In vitro translation reveals the presence of two mRNAs coding for polypeptides of molecular weights of 20 000 and 32 000, respectively. The larger molecule corresponds to the molecular weight of nascent tyrosinase. Furthermore, microinjection of the mRNA into Xenopus oocytes results in the synthesis of active tyrosinase. Since this isolation method is dependent on the ability of nascent enzymes to bind to their substrate analogue, it is thought that this approach may be appropriate for obtaining mRNAs coding for other enzymes.

Animals↗

The effect of temperature on tyrosinase activity in Himalayan mouse skin.

The tyrosinase activity of Himalayan mouse skin homogenates was measured over a range of temperatures using two sensitive radiometric assay--namely, (1) the measurement of 14C-tyrosine incorporation into melanin, and (2) the measurement of 3HOH released as a by-product of 3H-tyrosine hydroxylation. Results show that Himalayan tyrosinase is maximally active at temperatures well below normal body temperature (15 degree C to 25 degree C). These results are in support of Danneel's visual observations ('41) that "ferment" activity of Himalayan rabbit skin is absent at temperatures above 25 degree C. Further results suggest the presence of a tyrosinase inhibitor in Himalayan mouse skin. First, removal of a low molecular weight fraction from Himalayan skin homogenates resulted in an increase in tyrosinase activity. Second, recombination of the low molecular weight fraction to the homogenate from which it was originally separated resulted in a decrease in tyrosinase activity when assayed at 37 degree C, but no decrease when assayed at 25 degree C. It is proposed that at the normal body temperature of 37 degree C, tyrosinase from Himalayan skin is strongly bound to an inhibitor. At lower body temperatures, the affinity of the enzyme for the inhibitor decreases, thus allowing the synthesis of melanin to increase. This change in affinity of the enzyme for the inhibitor could be regulated by temperature-induced conformational changes in either the enzyme or the inhibitor or both.

Animals↗