P-wave charmed mesons in e+e- annihilation.
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Biomedical subjects
Publications and source records attributed to R Fulton.
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The GM1 strain of feline leukaemia virus (FeLV) was isolated from a naturally occurring case of myeloid leukaemia and induces severe haematopoietic abnormalities, including myeloblastic leukaemia, on inoculation into cats. Molecular clones of FeLV-GM1 proviruses were obtained and studied by restriction enzyme mapping, blot hybridization and partial DNA sequence analysis. Two types of clone were isolated; the first was a replication-competent FeLV of subgroup A, resembling other low or minimally pathogenic FeLV-A isolates; the second was replication-defective with extensive deletions and mutations in gag and pol, although it has an intact env gene of subgroup B phenotype. Large segments of the defective proviruses, from the 5' leader sequence upstream of the gag gene to the 5' half of the env gene, show structural hallmarks of endogenous FeLV-related proviruses. Infectious FeLV-GM1 viruses recovered after transfection were tested for their leukaemogenic potential in newborn cats. Early polyclonal myeloproliferative changes were observed in cats inoculated with FeLV-A/GM1 alone, although these were more pronounced in animals receiving the full FeLV-AB/GM1 complex reconstituted by cotransfection of the defective virus FeLV-B with its FeLV-A helper. Analysis of viruses in the bone marrow showed that replication of the subgroup B component is delayed and restricted to a proportion of cats. Most of the infected cats developed persistent abnormalities of haematopoiesis and one progressed to disseminated myeloid leukaemia. The defective recombinant FeLV-B/GM1 appears to play an indirect but important role in myeloid leukaemogenesis.
The long terminal repeat U3 sequences were determined for multiple feline leukemia virus proviruses isolated from naturally occurring T-cell tumors. Heterogeneity was evident, even among proviruses cloned from individual tumors. Proviruses with one, two, or three repeats of the long terminal repeat enhancer sequences coexisted in one tumor, while two proviruses with distinct direct repeats were found in another. The enhancer repeats are characteristic of retrovirus variants with accelerated leukemogenic potential and occur between -155 and -244 base pairs relative to the RNA cap site. The termini of the repeats occur at or near sequence features which have been recognized at other retrovirus recombinational junctions. In vitro footprint analysis of the feline leukemia virus enhancer revealed three major nuclear protein binding sites, located at consensus sequences for the simian virus 40 core enhancer, the nuclear factor 1 binding site, and an indirect repeat which is homologous to the PEA2 binding site in the polyomavirus enhancer. Only the simian virus 40 core enhancer sequence is present in all of the enhancer repeats. Cell type differences in binding activities to the three motifs may underlie the selective process which leads to outgrowth of viruses with specific sequence duplications.
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The discovery of the first example of retroviral transduction of an immunological effector molecule has led us to reconsider the possible importance of cell surface receptors of the immune system in leukaemia development. Antigen receptors on lymphoid cells not only bind external ligands but are crucial in the control of cellular proliferation. The concept of autocrine stimulation in oncogenesis is already well established and we see no reason to exclude the possibility of analogous mechanism operating through antigen receptors. At present, we are investigating the oncogenic function of the retrovirus (FeLV-T17) carrying a T-cell receptor gene (v-tcr). In addressing the general concept of oncogenesis by ligand/receptor interactions in the immune system we face the problem of the diversity and, for T-cell antigen receptors, the complex nature of receptor-ligand interaction. Nevertheless, the implications of the model encourage us to continue to search for new experimental tools and approaches to the question.
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Kyrle's disease is a chronic, genetically determined, hyperkeratotic disorder occurring in the middle forties. We report fourteen cases of this disorder in a population of 1.5 million over a period of 15 years. We observed a female/male ratio of 6:1. Straw-colored keratotic plugs and flat scale show a marked predisposition for the calf, the tibial region, and the posterior part of the thigh. They vary in size from 1 to 4 mm, and there is occasional plaque formation. No koebnerization or pruritus was noted, and no statistically significant association with hepatic, renal, or diabetic disorders could be demonstrated. Microscopic features showed a consistent pattern of keratotic plug formation, with the plug sitting in an invaginated atrophic epidermis, and underlying dermal histiocyte and lymphocyte aggregation. All lesions contained orthokeratosis and parakeratosis, with some sections showing abnormal keratinization. Sodium dodecylsulfate gel electrophoresis did not demonstrate the presence of abnormal keratin bands.
We have investigated the mechanisms whereby glucocorticoids control the expression of specific genes in the livers of adult male rats. Construction and differential screening of a cDNA library representing normal rat liver polysomal poly(A)+ RNAs allowed selection of probes for hormonally regulated genes. The mechanism of this regulation was analysed by studying the changes in relative abundance of the RNA sequences homologous to four selected recombinants in RNA from subcellular fractions of liver, and comparing them with that of albumin mRNA. The relative abundance of these four RNA sequences increased to varying degrees in the nucleus, whilst that of three of them was concomitantly depleted in polysomal RNA when circulating levels of glucocorticoids were negligible, i.e. 14 days after adrenalectomy. One of the sequences was identified as alpha 2U-globulin mRNA. Within 2 hours of injecting Dexamethasone (a synthetic glucocorticoid) into rats that had been adrenalectomised 14 days previously, the relative abundances of alpha 2U-globulin RNA in nuclear and polysomal RNA returned to those found in normal rat liver. The data indicate that reduced glucocorticoid levels lead to sequence specific retention of RNA in the nucleus and that the RNA retained is released to the cytoplasm following glucocorticoid injection. Our results provide an example, for the first time, of glucocorticoid regulation of gene expression at the post-transcriptional level of nucleo-cytoplasmic transport.
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