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Biomedical subjects

M Nelson

Publications and source records attributed to M Nelson.

At least 343 records · Page 19Linked to original sources

Effects of CKS-17, a synthetic retroviral envelope peptide, on cell-mediated immunity in vivo: immunosuppression, immunogenicity, and relation to immunosuppressive tumor products.

CKS-17 is a heptadecapeptide corresponding to a region highly conserved in retroviral transmembrane proteins such as p15E. Because a relationship had previously been determined between p15E and immunosuppressive tumor cell products, we examined the effect of CKS-17, control peptides and conjugates thereof on the expression of cell-mediated immunity (delayed-type hypersensitivity, DTH) in mice. Conjugates of CKS-17 inhibited DTH reactions to sheep erythrocytes in the feet of mice. The degree of inhibition was dose-dependent. Unconjugated CKS-17 had almost no effect, and control peptide conjugates had no inhibitory effect. Immunization of mice with CKS-17 conjugates, but not with control conjugates, rendered them resistant to the depression of DTH reactions, not only by CKS-17 conjugates, but also by products of cultured tumor cells. CKS-17 conjugates, but not control conjugates, also depressed the cellular inflammatory reactions induced in mouse footpads by concanavalin A (ConA) and immunized mice against the depression of ConA reactions by products of cultured tumor cells. Injections of globulin from sera of mice immunized with CKS-17 conjugates conferred upon normal recipients resistance to the depression of footpad reactions to ConA by products of cultured tumor cells. Globulin from sera of normal mice or control immunized mice did not confer such resistance. Thus conjugates of a synthetic peptide not only mimic the immunosuppressive effects of tumor products in vivo, but can also immunize mice against those effects.

Animals↗

Between- and within-subject variation in nutrient intake from infancy to old age: estimating the number of days required to rank dietary intakes with desired precision.

In prospective studies of diet it is often necessary to know for how many days subjects should record food consumption in order to be able to rank subjects correctly according to their nutrient intakes. Data from six studies--of toddlers, families, schoolchildren, dietitians, pregnant women, and elderly subjects--were analyzed to estimate the number of recording days necessary for energy, 28 nutrients, and the ratio of polyunsaturated to saturated fatty acids (P:S). The most striking finding is that 7 d of diet record do not rank subjects with the degree of accuracy commonly assumed. For some nutrients, such as iron, zinc, nicotinic acid, and pyridoxine, it may be desirable to record diet over a number of short, separate periods to achieve the number of days required. For others, such as copper, retinol, carotene, vitamin B-12, polyunsaturated fatty acids, P:S, and alcohol, alternative methods of assessment based on dietary histories or questionnaires may be more appropriate.

Adolescent↗

Context affects nuclear protein localization in Saccharomyces cerevisiae.

Proteins destined for the nucleus contain nuclear localization sequences, short stretches of amino acids responsible for targeting them to the nucleus. We show that the first 29 amino acids of GAL4, a yeast DNA-binding protein, function efficiently as a nuclear localization sequence when fused to normally cytoplasmic invertase, but not when fused to Escherichia coli beta-galactosidase. Moreover, the nuclear localization sequence from simian virus 40 T antigen functions better when fused to invertase than when fused to beta-galactosidase. A single amino acid change in the T-antigen nuclear localization sequence inhibits the nuclear localization of simian virus 40-invertase and simian virus 40-beta-galactosidase in Saccharomyces cerevisiae. From these results, we conclude that the relative ability of a nuclear localization sequence to act depends on the protein to which it is linked.

Amino Acid Sequence↗

Seizures after intravenous contrast media for cranial computed tomography.

Patients who had contrast medium-induced seizures were reviewed retrospectively in a consecutive series of 15,226 contrast-enhanced head CT examinations. An incidence of 0.19% was found. There was a strong association with a history of spontaneous seizure and with the presence of a structural intracranial abnormality. The contrast medium-induced seizures were short-lived and self-limiting or readily controlled with small doses of intravenous diazepam. They were clinically benign.

Adolescent↗

Four fluorescence polarization immunoassays for therapeutic drug monitoring evaluated.

We evaluated four fluorescence polarization immunoassays--those for phenytoin, procainamide, N-acetylprocainamide (NAPA), and quinidine--from Roche Diagnostic Systems, done in the Cobas Bio FP centrifugal analyzer. The assays for phenytoin, NAPA, and quinidine demonstrated a linear response over the expected ranges of concentrations, and analytical recovery of test drug added to drug-free sera was greater than 90%. However, recovery in the procainamide assay was poor (69-82%) for samples containing greater than 8 mg/L, owing to nonlinearity. Results of method-comparison studies of the four assays paralleled the recovery studies, although the quinidine assay demonstrated a bias (1.0 mg/L higher) when compared with EMIT (Syva). The precision of the phenytoin assay was acceptable at all concentrations tested (total CV less than 7.0%). Imprecision of the other assays was significant at certain concentrations: total CV greater than 10.0% at subtherapeutic values for NAPA and quinidine, and greater than 9.0% for low (2.4 mg/L) and moderate concentrations (9.6 mg/L) of procainamide. Interferences were not significant for hemolyzed, icteric, or lipemic specimens or for specimens with added drug metabolites. The calibration curves for all four assays had good stability (greater than 60 days).

Acecainide↗

Enhanced interferon-gamma (IFN) production by lymph node cells from autoimmune (MRL/1, MRL/n) mice.

Interferons (IFNs) have been implicated in the aetiopathogenesis of the autoimmune disease systemic lupus erythematosus (SLE). The ability of unstimulated and Sepharose-bound concanavalin A (ConA) stimulated spleen or lymph node (LN) cells from normal CBA/T6 mice and histocompatible autoimmune strains (MRL/1, MRL/n) of various ages to produce IFN-gamma was measured. Levels of IFN-gamma produced by ConA-stimulated spleen cells from CBA/T6, MRL/1 and MRL/n mice at 6 weeks of age were not statistically different (mean +/- SEM: 786 +/- 182, 1147 +/- 282, 1024 +/- 146 IU/ml, respectively). At this age only stimulated LN cells from MRL/l mice produced detectable IFN-gamma (538 +/- 44 IU/ml) and these levels remained constant up to 6 months. IFN production by stimulated LN cells from young MRL/n mice (66 +/- 21 IU/ml at 3 months, 44 +/- 41 IU/ml at 6 months) increased at 1 year (463 +/- 97 IU/ml) corresponding to the age of disease onset. The failure of stimulated CBA/T6 LN cells to produce IFN-gamma was not due to cell-cell suppression, defective IL-2 production or the generation of soluble inhibitors. Stimulated LN cells from other normal inbred (C57Bl/6, Balb/c, A/J) outbred and FI hybrid mouse strains (Swiss, [Swiss x Balb/c] F1, (CBA/T65 x C57Bl/6]FI) produced undetectable or low levels of IFN compared to MRL/1 and MRL/n mice. These results show that autoimmune mouse LNs generate more IFN compared to normal controls and that the increase in IFN levels (at least in MRL/n) corresponds to the age of disease onset.

Animals↗

The 5'-GGATCC-3' cleavage specificity of BamHI is increased to 5'-CCGGATCCGG-3' by sequential double methylation with M.HpaII and M.BamHI.

Site-specific DNA methylation is known to block cleavage by a number of restriction endonucleases. We show that methylation at 'non-canonical' DNA modification sites can also block methylation by five of 13 DNA methyltransferases (MTases) tested. Furthermore, MTases and endonucleases that recognize the same nucleotide sequence can differ in their sensitivity to non-canonical methylation. In particular, BamHI endonuclease can cut 5'-GGATCm5C efficiently, whereas M.BamHI cannot methylate this modified sequence. Methyltransferase/endonuclease pairs which differ in their sensitivity to non-canonical methylation can be exploited to generate rare DNA cleavage sites. For example, we show that M.HpaII, M.BamHI, and BamHI can be used sequentially in a three-step procedure to specifically cleave DNA at the 10-bp sequence 5'-CCGGATCCGG. Several highly selective DNA cutting strategies are made possible by these sequential double methylation-blocking reactions.

Bacterial Proteins↗

Characterization of two different human cytomegalovirus glycoproteins which are targets for virus neutralizing antibody.

In previous studies we have identified two viral polypeptides detected by murine monoclonal antibodies which neutralize the infectivity of human cytomegalovirus (CMV) AD169. One is an 86,000-Da polypeptide (p86) and the second is a complex of two major coimmunoprecipitating polypeptides of 130,000 and 55,000 Da (p130/55). In this study we have shown that the two viral polypeptides are immunologically unrelated and have distinct peptide cleavage patterns. We have characterized these polypeptides as glycoproteins and studied their biosynthesis in human embryonic lung cells. The oligosaccharides found on both the p86 and the p130/55 were characterized by endoglycosidase digestion as N-linked high-mannose carbohydrates. Inhibitors of glycosylation were used to further characterize the oligosaccharides. Tunicamycin, which inhibits the biosynthesis of N-linked oligosaccharides on the endoplasmic reticulum, inhibited both the infectivity and biosynthesis of the p86 and p130/55. The underglycosylated forms in tunicamycin-treated cultures could be detected only under conditions of pulse-labeling with L-[35S]methionine. Monensin, which inhibits the modification of glycoproteins from simple to complex forms in the Golgi, reduced viral infectivity at concentrations which had no effect on viral protein synthesis, but did not alter the apparent molecular weight of either the p86 or the p130/55. The oligosaccharides were critical for the in vitro immunologic reactivity of the p86 in immunoblots. However, endoglycosidase F-treated p86 was comparable to the native form in inducing virus neutralizing antibody in guinea pigs. Endoglycosidase F-treated p130/55 retained its ability to bind antibody in Western blots.

Antibodies, Monoclonal↗