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Biomedical subjects

M E Saunders

Publications and source records attributed to M E Saunders.

11 recordsLinked to original sources

Patterns of p53 gene mutations in head and neck cancer: full-length gene sequencing and results of primary radiotherapy.

p53 gene alterations are common in head and neck cancers, but their prognostic value has not been clearly established. Despite evidence in other cancers that sequencing of the entire p53 coding region provides prognostic information, full-length p53 gene sequencing has rarely been performed in head and neck cancers. In this study, p53 was assessed in a series of 42 pretreatment biopsies from patients with laryngeal carcinomas by full-length gene sequencing and by immunohistochemistry (IHC). Associations among p53 genotype, protein expression, and local recurrence were assessed in 35 irradiated patients followed for a minimum of 5 years. DNA was extracted from formalin-fixed, paraffin-embedded biopsies, and exons 2-11 of the p53 gene were individually amplified by PCR and then directly sequenced. IHC was performed to detect mutant and wild-type p53 protein using the DO7 monoclonal antibody. p21 protein expression was assessed using the EA1 monoclonal antibody. Twenty genetic alterations were observed in 42 tumors (48%). Four of these alterations (20%) occurred outside exons 5-8. There was a significant association between p53 gene and protein status (chi2 = 4.18, P = 0.04), although the correlation was weak (phi coefficient = -0.327). Although local relapse following radiation was significantly associated with nodal status, no correlations were observed between p53 status (gene or IHC) and local recurrence following radiation therapy, based on the Kaplan-Meier method. These results show that p53 mutations are common in laryngeal carcinomas and that a proportion occur outside traditionally examined regions. The lack of correlation between p53 status and local control suggests that this marker is not as powerful as traditional prognostic factors, such as lymph node status.

Aged

Cost effectiveness of low-molecular weight heparin versus warfarin following hip replacement surgery.

Little information is available on the efficacy of low-molecular-weight heparin (enoxaparin) versus warfarin for treatment of deep vein thrombosis and pulmonary embolism following hip replacement surgery. Still less is known of the comparative cost effectiveness of these two therapies. A retrospective study was done on 56 patients who underwent elective hip surgery at an urban medical center between 1991 and 1996. All patients received enoxaparin or warfarin for purposes of thromboprophylaxis. An analysis of medication cost, therapy, laboratory monitoring, and bleeding events of the two antithrombolytic agents was undertaken. Total savings with enoxaparin averaged $1253 per patient, or $137,886 over the study period. The incidence of deep vein thrombosis or pulmonary embolism was 0% with enoxaparin and 3% with warfarin. These data indicate that enoxaparin is a more cost-effective and efficacious regimen for thromboprophylaxis following hip replacement surgery than warfarin.

Black or African American

Interferon-regulated human 2-5A synthetase gene maps to chromosome 12.

The low-molecular-weight human 2-5A synthetase gene has been assigned to chromosome 12 using rodent-human somatic cell hybrids and filter hybridization analysis of cell hybrid DNA. A cDNA probe representing almost all the coding sequences of the 2-5A synthetase gene hybridizes to four fragments of human DNA digested with the restriction enzyme EcoR1. By correlating the presence of these fragments in somatic cell hybrid DNA with the human chromosome content of the hybrids, the 2-5A synthetase gene can be mapped to chromosome 12. This contrasts with a previous assignment of this gene to chromosome 11 using an enzyme activity assay. The reason for this discrepancy remains unclear.

Animals

Human 2-5A synthetase: characterization of a novel cDNA and corresponding gene structure.

The enzyme 2-5A synthetase is induced in cultured cells in response to interferon (IFN) treatment. A lambda gt10 cDNA library of mRNA from IFN-induced Daudi lymphoblastoid cells was screened with oligonucleotide probes. Several overlapping cDNAs were isolated and shown to be derived from the human synthetase gene using filter selection and oocyte microinjection assays. The nucleotide sequence of one of these, cDNA 8-2, extended the 2-5A synthetase sequence already described 72 bp in the 5' direction but was found to differ significantly in coding sequence at the 3' end. The longest cDNA isolated (6-2) was approximately 1.4 kb. By Northern hybridization analysis single mRNAs of 1.7 kb were detected in Daudi and T98G (glioblastoma) cells. However, in HeLa cells, four mRNAs ranging in size from 1.5 to 3.5 kb were found, one of which differed at the 3' end. Analysis of both phage and cosmid genomic clones and comparison with genomic DNA indicate that there is a single gene for 2-5A synthetase, comprising at least six exons and five introns, which can undergo a novel form of alternative RNA processing depending on cell type.

2',5'-Oligoadenylate Synthetase

Assignment of the alpha and beta chains of human propionyl-CoA carboxylase to genetic complementation groups.

Propionicacidemia is a metabolic disorder resulting from a deficiency of propionyl-CoA carboxylase activity. The enzyme is composed of two polypeptides: a 72,000-dalton alpha chain which contains the biotin ligand and a 56,000-dalton beta chain. It has been suggested that the two major complementation groups in this disorder, pccA and pccBC (with subgroups pccB and pccC), correspond to the genes encoding these two chains. To correlate gene product with complementation groups, 15 mutant and four normal human fibroblast strains were analyzed by [35S]methionine and [3H]biotin labeling. Immunoprecipitation and gel electrophoresis of the polypeptides revealed that alpha chains are synthesized by mutants of pccBC and both subgroups but not in four out of five pccA mutants. On the other hand, beta chains were detected only in pccB mutants. We suggest that pccA encodes the alpha chain of PCC while pccBC encodes the beta chain, and furthermore predict that the beta chain is unstable in the absence of the alpha chain.

Amino Acid Metabolism, Inborn Errors

Evidence for a defect of holocarboxylase synthetase activity in cultured lymphoblasts from a patient with biotin-responsive multiple carboxylase deficiency.

We report here the expression of biotin-responsive multiple carboxylase deficiency in cultured lymphoblasts of a patient whose fibroblasts belong to the bio genetic complementation group. Cultured lymphoblasts from the patient lost propionyl-CoA carboxylase (PCC) and beta-methylcrotonyl-CoA carboxylase (MCC) activities at a faster rate than normal cells when grown in biotin-deficient medium. Recovery of normal PCC and MCC activities, which was independent of protein synthesis, required a 2,500-fold higher biotin concentration than that required by normal lymphoblasts. Holocarboxylase synthetase activity was detected in cell-free extracts through the biotinylation of endogenous apo-PCC in the presence of ATP to form active holo-PCC. While the apo-PCC in extracts of normal biotin-starved lymphoblasts could be activated to 28% of maximal activity, extracts of patient lymphoblasts did not exhibit any ATP and biotin-dependent increase in PCC activity. A normal cell extract, cleared of apocarboxylases by immunoprecipitation, stimulated the PCC activity of a patient cell extract 20-fold. These results indicate that the apoenzyme in bio cells is normal and that the defect lies in the holocarboxylase synthetase.

Biotin

The neurotoxicity of misonidazole and its relationship to dose, half-life and concentration in the serum.

Misonidazole has been given to a total of 87 patients. Neurotoxicity has occurred--convulsions with the higher doses and peripheral neuropathy with the lowern ones. The data from 34 patients receiving 4--7 doses has been analysed. Peripheral neuropathy is related to the total tissue exposure. By monitoring serum levels and controlling the total dose given, convulsions are avoidable and peripheral neuropathy restricted to a low and acceptable level.

Drug Administration Schedule

Inhibition of a lymphocyte membrane enzyme by delta9-tetrahydrocannabinol in vitro.

Delta-9-tetrahydrocannabinol (delta9-THC) inhibited the activity of lysolecithin acyl transferase, a membrane-bound lymphocyte enzyme, at concentrations above 1.3 muM. Stimulation of acyl transferase activity by concanavalin A, an early response in lymphocyte activation, was entirely abolished in the presence of delta9-THC.

1-Acylglycerophosphocholine O-Acyltransferase