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Biomedical subjects

N Datta

Publications and source records attributed to N Datta.

At least 19 recordsLinked to original sources

The use of corticotropin releasing factor (CRE) for the treatment of post-operative cerebral edema. A preliminary study.

Synthetic corticotropin-releasing factor (CRF) was administered pre-operatively to five patients who underwent craniotomy for brain tumors, acute subdural and intracerebral hematomas. After craniotomy, an intraventricular catheter is placed in the ventricle, on the normal side of brain. This is for intracranial pressure monitoring. The data obtained were pooled and compared with the saline group (n = 6). The CRF group was found to have statistically significant difference (P less than 0.01). This preliminary study showed that CRF decreases postoperative edema.

Adult

Binding of a pea nuclear protein to promoters of certain photoregulated genes is modulated by phosphorylation.

There have been numerous recent reports documenting phosphorylation of DNA-binding proteins [Montminy and Bilezikjian (1987); Sorger, Lewis, and Pelham (1987); Hoeffler, Kovelman, and Roeder (1988); Jones et al. (1988); Prywes et al. (1988); Sorger and Pelham (1988); Yamamoto et al. (1988)], and the transcriptional regulatory activity of at least one of these proteins appears to be modulated by this modification [Montminy and Bilezikjian (1987); Yamamoto et al. (1988)]. We report here on a plant nuclear protein, the DNA-binding activity of which is strongly affected by phosphorylation. This protein, AT-1, binds to specific AT-rich elements (the AT-1 box) within promoters of certain nuclear genes encoding the small subunit of ribulose-1,5-bisphosphate carboxylase and the polypeptide components of the light-harvesting chlorophyll a/b protein complex. A consensus sequence of AATATTTTTATT was derived for the AT-1 box. We demonstrate that the DNA-binding ability of AT-1, from nuclear extracts of pea, can be reversibly modulated by phosphorylation. AT-1 is active in the nonphosphorylated form and loses all DNA-binding ability as a result of phosphorylation. The kinase that phosphorylates AT-1 uses both Mg-ATP and Mg-GTP as a substrate and is inhibited by heparin and spermine, indicative of an NII-type casein kinase.

Base Composition

Purification and partial characterization of a calmodulin-stimulated nucleoside triphosphatase from pea nuclei.

A nucleoside triphosphatase/deoxynucleoside triphosphatase associated with the chromatin fraction from a highly purified preparation of pea nuclei has been isolated and characterized. The purified enzyme has a molecular weight of 47,000 as checked by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and it has an isoelectric point of 6.6. In the presence of divalent cations (Mg2+ = Mn2+ greater than Ca2+), this enzyme hydrolyzes nucleoside triphosphates or deoxynucleoside triphosphates. Hydrolysis is optimal at pH 7.5 and is significantly inhibited by relatively low concentrations of quercetin, but is not sensitive to vanadate, nitrate, or oligomycin. The enzyme has a rather broad nucleotide substrate specificity and has a Km for MgATP2- of 0.6 mM. The enzyme activity is stimulated over 3-fold by Ca2+ and calmodulin, and the stimulation is blocked by the Ca2+ chelator EGTA and by the calmodulin antagonists compound 48/80 and chlorpromazine.

Adenosine Triphosphate

Application of case management to the control of acute respiratory infections in low-birth-weight infants: a feasibility study.

The feasibility of introducing a case management programme for acute respiratory infections among low-birth-weight infants at the primary health care level was investigated in 37 villages in the Indian state of Haryana. Twenty-one of the villages served as the intervention area, while the remaining 16 formed the control area. All low-birth-weight infants born in the two areas between January 1982 and September 1983 (199 in the intervention area and 211 in the control area) were included in the study. Primary health care workers were contacted in 38% of episodes of acute respiratory infections in the intervention area, in contrast to only 1% of episodes in the control area. Also, the mean duration of infections in the intervention area was significantly lower (P<0.01), while the case fatality was about 33% of that in the control area. The results indicate that the programme can be successfully incorporated into existing primary health care infrastructures.

Acute Disease

Recording of birth weight in a primary health care setting in India.

The feasibility of recording birth weights in two community development blocks in rural areas was tested for general application of the procedure in a Primary Health Care setting. During the four year study period, the birth weights were recorded in 1,919 babies in one block and 1,596 in the other with a success rate of 98%. Although the incidence was 22% in block A and 34% in block B, the mean birth weights were statistically similar (p = greater than 0.05). The mean birth weights and the weight ranges recorded by research staff and PHC workers were comparable. The adoption of a simple, technically feasible, inexpensive, culturally acceptable technique which is suitable for local conditions is recommended. This should be accomplished in a step-wise manner.

Attitude to Health

Zellweger syndrome: diagnostic assays, syndrome delineation, and potential therapy.

Patients with the cerebrohepatorenal syndrome of Zellweger lack peroxisomes and certain peroxisomal enzymes such as dihydroxyacetone phosphate acyltransferase in their tissues. Deficiency of this enzyme, which is necessary for glycerol ether lipid synthesis, provides a biochemical method for recognizing patients with subtle manifestations of Zellweger syndrome and suggests the utility of exogenous ether lipid precursors as a therapeutic strategy for these children. We describe the results of glycerol ether lipid supplementation to two children, one with classic Zellweger syndrome and 9% of control fibroblast dihydroxyacetone phosphate acyltransferase activity, and one with mild facial manifestations, wide sutures, hypotonia, developmental delay, hepatomegaly, peripheral retinal pigmentation, and 50% of control fibroblast dihydroxyacetone phosphate acyltransferase activity. An increase in erythrocyte plasmalogen levels following therapy was clearly demonstrated in the milder patient, and neither patient showed evidence of toxicity. Evaluation of therapy by comparison to the usual clinical course of Zellweger syndrome was not helpful because of the variability and incomplete documentation of 90 previously reported cases. The literature survey did provide criteria for classic Zellweger syndrome, which include hypotonia with or without deformation of limbs, large fontanels and split sutures, prominent forehead, flattened facial profile with hypoplastic supraorbital ridges, anteverted nares, highly arched palate, cryptorchidism or labial hypoplasia, hepatomegaly or elevated liver enzymes, peripheral pigmentation of the retina, renal cortical cysts, and characteristic neuropathology involving decreased myelinization, abnormal neuronal migration, and sudanophilic macrophages. Less severe patients, as exemplified by our case 2 and others from the literature, will not have all the classic features and can be recognized only by a growing panel of biochemical indicators. Our patient studies illustrate the complexity of designing comprehensive therapy for Zellweger-like conditions, suggest other diseases that may involve peroxisomal alterations, and emphasize the need for multicenter, collaborative studies to evaluate biochemical heterogeneity and therapy of peroxisomal disorders.

Adrenoleukodystrophy

Phytochrome and calcium stimulation of protein phosphorylation in isolated pea nuclei.

The phosphorylation of several proteins in pea nuclei was promoted by Ca2+ and by red light. The red light-induced stimulation was reversed by far-red light, indicating that the photoreceptor modulating this response was the photochromic pigment, phytochrome. Both the red light and the Ca2+-promoted enhancement of phosphorylation were inhibited by the calcium chelator, ethylene glycol bis(beta-aminoethyl ether) N, N'-tetraacetic acid, and by the calmodulin inhibitors, chlorpromazine and compound 48/80.

Calcium

Characterization of monoclonal antibodies to oat phytochrome by competitive radioimmunoassays and comparative immunoblots of phytochrome peptides.

A library of 50 hybridomas which make antibodies to oat phytochrome was produced from the fusion of spleen cells from immunized Balb/c mice with P3x63Ag8 myeloma cells. Hybridomas were selected in a medium containing hypoxanthine, aminopterin, and thymidine, and specific hybridomas were screened for production of antibodies to phytochrome using a solid-phase enzyme-linked immunoadsorbent assay which was antigen specific. Positive cultures were cloned three times by limit dilution to assure monoclonal growth and stability. Specificity toward phytochrome was established by Western blot analysis and immunoprecipitation. Epitope specificity of nine monoclonal antibodies was determined by competitive inhibition radioimmunoassays and/or comparative immunoblots of tryptic peptides of phytochrome.

Animals

Escherichia coli as a genetic tool.

The study of Escherichia coli and its plasmids and bacteriophages has provided a vast body of genetical information, much of it relevant to the whole of biology. This was true even before the development of the new techniques, for cloning and analysing DNA, that have revolutionized biological research during the past decade. Thousands of millions of dollars are now invested in industrial uses of these techniques, which all depend on discoveries made in the course of academic research on E. coli. Much of the background of knowledge necessary for the cloning and expression of genetically engineered information, as well as the techniques themselves, came from work with this organism.

Cloning, Molecular

Bacterial resistance to antibiotics.

Effective antibacterial drugs have been available for nearly 50 years. After the introduction of each new such drug, whether chemically synthesized or a naturally occurring antibiotic, bacterial resistance to it has emerged. The genetic mechanisms by which bacteria have acquired resistance were quite unexpected; a new evolutionary pathways has been revealed. Although some antibiotic resistance has resulted from mutational changes in structural proteins--targets for the drugs' action--most has resulted from the acquisition of new, ready-made genes from an external source--that is, from another bacterium. Vectors of the resistance genes are plasmids--heritable DNA molecules that are transmissible between bacterial cells. Plasmids without antibiotic-resistance genes are common in all kinds of bacteria. Resistance plasmids have resulted from the insertion of new DNA sequences into previously existing plasmids. Thus, the spread of antibiotic resistance is at three levels: bacteria between people or animals; plasmids between bacteria; and transposable genes between plasmids.

Anti-Bacterial Agents