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Biomedical subjects

S Kaufman

Publications and source records attributed to S Kaufman.

At least 73 records · Page 4Linked to original sources

Interaction of phosphorylated tryptophan hydroxylase with 14-3-3 proteins.

Rabbit brain tryptophan hydroxylase (TPH) has been expressed in insect cells (Spodoptera frugiperda) as a histidine-tagged enzyme. The specific activity of the purified fusion enzyme is 80 nmol of 5-hydroxytryptophan/min/mg. Multifunctional regulatory 14-3-3 proteins were purified from fresh bovine brain. Phosphorylation and 14-3-3 proteins play important roles in the regulation of TPH activity. We have found that phosphorylation of TPH by cAMP-dependent protein kinase increased the activity of the hydroxylase by 25-30% and that 14-3-3 proteins increased the hydroxylase activity of phosphorylated TPH by approximately 45%. Under these conditions, the 14-3-3 proteins were not phosphorylated, and unphosphorylated TPH was not activated by 14-3-3 proteins. Surface plasmon resonance analysis demonstrated that 14-3-3 proteins bind to phosphorylated TPH with an affinity constant (Ka) of 4.5 x 10(7) M-1. Binding studies using affinity chromatography also showed that 14-3-3 proteins interact with phosphorylated TPH. The dephosphorylation of TPH by protein phosphatase-1 was inhibited by 14-3-3 proteins. Our results demonstrate that 14-3-3 proteins form a complex with phosphorylated brain TPH, thereby increasing its enzymatic activity and inhibiting its dephosphorylation.

14-3-3 Proteins↗

Expression of 4alpha-carbinolamine dehydratase in human epidermal keratinocytes.

4alpha-Carbinolamine dehydratase is a bifunctional protein involved in the regeneration of tetrahydrobiopterin during the hydroxylation of the aromatic amino acids. It is also a dimerization cofactor of HNF1 and therefore is believed to function as part of the hepatic gene transcription system. In view of the recent discoveries that the distribution and developmental pattern of the dehydratase do not correlate strictly with those of the aromatic amino acid hydroxylases and HNF1, the hypothesis that the dehydratase may have other unknown functions has been put forward. In the present paper, we demonstrate unambiguously that human epidermal keratinocytes express detectable levels of this protein as indicated by enzyme assay, immunoprecipitation, Western blot, and RT-PCR. Its complete coding sequence has been cloned and was found to be identical with the human liver counterpart. The possible function of the dehydratase in skin is discussed.

Blotting, Western↗

The role of phenylalanine in structure-function relationships of phenylalanine hydroxylase revealed by radiation target analysis.

The activity of rat liver phenylalanine hydroxylase (PAH; phenylalanine 4-monooxygenase, EC 1.14.16.1) is regulated by interaction with its substrate, phenylalanine, and its coenzyme, BH4 [tetrahydrobiopterin (6R-dihydroxypropyl-L-erythro-5,6,7,8-tetrahydropterin)]. The structural changes accompanying these interactions have been studied by radiation target analysis. PAH purified from rat liver was incubated with 2 mM phenylalanine to achieve complete activation of the enzyme. Frozen samples were irradiated with various doses of high energy electrons; samples were subsequently thawed, and several surviving properties of the enzyme were determined. Each parameter decreased as a single exponential function of radiation dose. Radiation target analysis of enzymatic activity yielded a dimeric target size. Similar radiation effects on subunit monomers and on tetrameric structure were observed. Together with results from unactivated enzyme, these data show that phenylalanine increases the interactions between the subunits in a dimer and weakens the interactions between dimers in a tetramer. These alterations prevent the natural cofactor, a tetrahydrobiopterin, from exerting a negative effect on activity.

Animals↗

Osteoblast precursor cells are found in CD34+ cells from human bone marrow.

It is known that osteoblast precursor cells are found in the low-density mononuclear (LDMN) fraction of human bone marrow (BM) aspirates. The purpose of this study was to investigate whether CD34, a hematopoietic progenitor cell marker, is present on osteoblast progenitor cells. LDMN, CD34+, and CD34- cells were cultured under conditions that promote growth and differentiation of mineral-secreting osteoblasts in a limiting dilution manner. With LDMN cells, osteoblast progenitor cells were found at an average frequency of 1/36,000 cells. With CD34- cells, osteoblast progenitor frequency remained at an average of 1/33,000, similar to LDMN cells. With CD34+ selected cells, osteoblast progenitor frequency increased to an average of 1/5,000. This osteoblast progenitor frequency is maintained in sorted CD34+/CD38+ cells. The osteoblasts generated from CD34+ cells were morphologically normal, and expression of skeletal-specific alkaline phosphatase and osteonectin increased upon differentiation induced by dexamethasone (DEX) treatment. Ultrastructurally, these CD34+ cell-derived osteoblasts displayed osteoblast-specific features. Functionally, these CD34+ cell-derived osteoblasts differentiated with DEX treatment, increased the level of cyclic adenosine monophosphate in response to parathyroid hormone stimulation, increased the level of alkaline phosphatase activity, and increased mineral secretion. These results demonstrate that osteoblast progenitor cells are enriched in the CD34+ cell population from BM and that these progenitor cells can differentiate into functional osteoblasts in culture.

ADP-ribosyl Cyclase↗

Does a hypertonic saline load predict fluid retention in pacing induced heart failure?

OBJECTIVE: We examined the response to hypertonic saline challenge (SC) as a potential predictor of fluid retention during heart failure induced by rapid ventricular pacing. METHODS: Twelve dogs (22 +/- 4 kg) were given an intra-arterial bolus of 30 ml of 20% saline after establishing baseline fluid intake and urine output (24 h). Dogs were classified according to whether they drank more (Group A) or less (Group B) than the amount required to dilute the s.c. to isotonicity. Fluid retention was then assessed during heart failure after rapid ventricular pacing according to a graded ordinal scale and correlated with the responses to s.c.. RESULTS: No difference was noted in baseline fluid intake (1112 +/- 236 ml in Group A vs. 809 +/- 129 ml in Group B). Five hours after s.c. cumulative water intake was significantly greater in Group A than in Group B (1018 +/- 136 vs. 591 +/- 17 ml) (P < 0.01). Urine sodium concentration was 113 +/- 11 and 124 +/- 28 mmol/l at baseline in Group A and B, respectively; increased to 190 +/- 21 and 295 +/- 59 mmol/l at 5 h and remained elevated 24 h after s.c., 177 +/- 60 and 274 +/- 55 mmol/l (both P < 0.01 for within-group comparisons vs. baseline). Urine sodium concentration was less in Group A than in Group B at 5 and 24 h (P < 0.05). The fluid retention score was greater in Group A (3.6 +/- 0.5) than in Group B (0.8 +/- 0.4) (P < 0.01). Fluid retention in heart failure correlated with water intake after the pre-pacing s.c. (r = 0.68, P < 0.025) and inversely with urine concentrating ability (r = -0.58, P < 0.05). Furthermore, water intake and urine concentrating ability following the s.c. were inversely related (r = -0.67, P < 0.02). CONCLUSIONS: We conclude that normal dogs may be classified according to their fluid intake after s.c.. Those dogs that drank excessively and produced a dilute urine were more likely to retain fluid during pacing-induced heart failure. Hence, fluid intake and the ability to excrete a concentrated urine after a saline challenge may be useful variables to predict fluid retention in pacing-induced heart failure.

Animals↗

Argentinian collaborative study on prevalence of erythromycin and penicillin susceptibility in Streptococcus pyogenes. The Argentinian Streptococcus Study Group.

Two monthly studies on the prevalence of penicillin and erythromycin susceptibility of Streptococcus pyogenes were performed in May and October of 1994 in Argentina. A total of 58 centers from 27 cities participated in these studies. A total of 1072 isolates were tested by a diffusion method, although 595 isolates were tested both by the diffusion and an agar dilution method (n = 1767 isolates). No penicillin-resistant streptococci were found in our study (MIC100 = 0.03 microgram/ml). Only four isolates were confirmed as erythromycin resistant S. pyogenes (prevalence 0.14 and 0.28% in May and October 1994, respectively). Resistance in three isolates was due to an inducible mechanism, although in one strain a different phenotype was observed.

Anti-Bacterial Agents↗

Resistance of TNF/LT alpha double deficient mice to bleomycin-induced fibrosis.

In order to evaluate the role and mode of action of TNF in bleomycin-induced lung fibrosis, mice deficient for TNF and LT alpha (delta TNF/LT alpha) were examined at 2 months of age and after 3 weekly i.v. injections of bleomycin. The body weight of the delta TNF/LT alpha mice was 88 +/- 11% of that of the wild type littermates. Lung collagen, evaluated by its hydroxyproline content, was also lower (81 +/- 9%) in mutant than in wild type littermates. Bleomycin induced a diffuse alveolitis with focal areas of alveolar remodelling in wild type but not in delta TNF/LT alpha, mice. Lymphoid infiltration was also prominent in wild type, but absent from delta TNF/LT alpha, mice. Bleomycin injections increased collagen deposition, as evaluated by the lung hydroxyproline content, more markedly in wild type, than in delta TNF/LT alpha, mice. Cell trapping in the alveolar capillaries was evaluated by semi-quantitative electron microscopy. Bleomycin markedly increased platelet trapping in the alveolar capillaries of wild type, but not of delta TNF/LT alpha, mice. This study indicates that the expression of TNF/LT alpha genes increases the deposition of collagen in both untreated and inflamed lung and that these genes may act, at least in part, by promoting platelet trapping.

Animals↗

Disseminated histoplasmosis with orofacial involvement in HIV-I-infected patients with AIDS: manifestations and treatment.

INTRODUCTION: Histoplasmosis is a deep mycosis which is increasingly seen in HIV disease. It has emerged as a relatively common infection in Argentina, mainly in HIV-infected and other immunocompromised persons, and is often disseminated (DH). OBJECTIVE: The aim of this study was to describe 32 HIV-I-seropositive patients with AIDS who had DH, 21 of whom presented orofacial manifestations, and their treatment. SUBJECTS AND METHODS: A retrospective study of 876 HIV-seropositive patients revealed 32 with a clinical diagnosis of DH confirmed by special stains on histopathologic specimens, or by culture. RESULTS: Thirty-two HIV-infected patients had DH. Two-thirds (21 patients) had oral lesions of histoplasmosis, of which six presented with oral cavity (OC) lesions as the sole orofacial manifestation of disease, nine patients presented oral and facial (OF) lesions and six presented facial lesions only. A unique case of submandibular histoplasmosis is also reported. Antifungal therapy cleared more than 90% of the orofacial and disseminated lesions of histoplasmosis. Over the 7-year period there was a mortality of 85%. CONCLUSION: DH should be considered as a possible diagnosis in HIV patients with chronic ulcerative or nodular orofacial or oral lesions. Itraconazole is an effective and acceptable therapy.

AIDS-Related Opportunistic Infections↗

Serologic survey for infectious pathogens in free-ranging American bison.

From November 1991 through March 1992, we evaluated 101 free-ranging American bison (Bison bison) from Yellowstone National Park, Wyoming (USA) for exposure to infectious organisms that commonly infect cattle. No titers were detected for bluetongue virus, bovine leukemia virus, or Campylobacter fetus in these 101 bison. Detectable antibodies occurred against Anaplasma marginale (eight of 76, 11%), bovine respiratory syncytial virus (31 of 101, 31%), bovine viral diarrhea (31 of 101, 31%), bovine herpesvirus 1 (29 of 76, 38%), Leptospira interrogans icterohaemorrhagiae (four of 101, 4%), L interrogans hardjo (seven of 101, 7%), L interrogans autumnalis (one of 101, 1%), L interrogans bratislava (seven of 101, 7%), L interrogans australis (one of 101, 1%), and parainfluenza 3 virus (27 of 75, 36%). The low antibody titers and the lack of gross lesions are evidence that while previous exposure to infectious organisms may have occurred, none appeared to have active infections.

Anaplasma↗

New interface metaphors for complex information space visualization: an ECG monitor object prototype.

Wearable augmented reality medical (WARM) interfaces could provide ubiquitous point-of-care decision support and enhance the quality and efficiency of clinicians' efforts. Creation of such systems involves the design and evaluation of new information displays that leverage the representational and presentational capabilities of three-dimensional AR environments. We describe our first efforts in this process: the implementation of interface objects for display of real-time electrocardiographic monitoring information and an evaluation methodology using a simulated clinical environment. Our pilot data confirm the utility of presentation modes that place simultaneous information tasks in close proximity, and highlight issues encountered in designing new representations of medical information.

Analysis of Variance↗

Morphologic and molecular changes induced by recombinant human leptin in the white and brown adipose tissues of C57BL/6 mice.

Leptin is a 16-kd protein synthesized and secreted by adipose tissue, which regulates adiposity and body weight. To investigate the peripheral effects of recombinant human leptin, lean C57BL/6 mice were treated with subcutaneous injections of vehicle or 20 mg/kg/day leptin for 1 to 14 days. Groups of animals were killed on Days 1, 2, 3, 4, 7, or 8 and 15 to evaluate the time course of clinical chemistry, morphologic, and molecular changes in white (WAT) and brown adipose tissue (BAT) depots. There was a progressive daily reduction in the body weight of mice receiving leptin. By Day 15, the body weight of leptin-treated groups decreased by 6% to 8% relative to base-line weight. Clinical chemistry changes in treated mice included decreased cholesterol and triglyceride levels. At necropsy, the mice had rapidly progressive atrophy of subcutaneous, intra-abdominal, and retroperitoneal WAT and interscapular BAT depots, with complete depletion of fat stores by Days 3 to 4 in most females and by Days 7 to 14 in male mice. Histologically, white and brown adipocytes underwent marked atrophy with loss of lipid droplets and activation of BAT cells in WAT depots. Ultrastructurally, white and brown adipocytes contained numerous, enlarged mitochondria. Molecular analysis of key adipose tissue genes in brown and white fat depots revealed a rapid, selective increase in the mRNA expression of thermogenic proteins and lipolytic enzymes, including uncoupling proteins 1 and 2, lipoprotein lipase, and hormone-sensitive lipase, with decreases in the lipogenic enzyme fatty acid synthase, endogenous leptin, and cytochrome c oxidase. These data suggest that the peripheral effects of leptin include increased thermogenesis and lipid oxidation in brown fat coupled with increased lipolysis and decreased fat synthesis in white and brown fat, which lead to a rapid reduction in the body weight and adiposity of mice.

Adipose Tissue↗

Comparison of ondansetron, metoclopramide, and placebo in the prevention of postoperative emesis in children undergoing ophthalmic surgery.

A common and distressing adverse effect following general anesthesia is nausea and vomiting. Pediatric ophthalmic surgery is associated with a high (50%-80%) incidence of postoperative emesis. Vomiting postoperatively may cause a prolonged hospital stay, and if it is persistent, may lead to unanticipated hospital admission after ambulatory surgery. The purpose of the present study was to compare the effectiveness of prophylactic antiemetic treatment with ondansetron, metoclopramide, and placebo in a study population of pediatric patients scheduled to undergo ophthalmic surgery. One hundred and one patients were included in this double-blinded study. The incidence of emesis and adverse effects were observed in the postanesthesia care unit and documented for 24 hours postoperatively. Analysis of variance showed that ondansetron significantly decreased (P = .05) the incidence of emesis in the postanesthesia care unit and during the first 24 hours postoperatively (P = .049). Additionally, parents of children in the ondansetron group reported a high degree (94%) of satisfaction with the experience.

Adolescent↗

Recombinant human phenylalanine hydroxylase: novel regulatory and structural properties.

Recombinant human liver phenylalanine hydroxylase (PAH) expressed in Escherichia coli has been purified to homogeneity. The recombinant enzyme exists in solution as a mixture of 80% tetramers and 20% dimers. A study of the kinetic properties of the enzyme indicates that compared to the recombinant and the native rat liver enzymes, the recombinant human enzyme is in an activated state. This conclusion is supported by the finding that its catalytic activity is only marginally stimulated by incubation with either phenylalanine or lysolecithin. In contrast, the native and the recombinant rat liver enzymes are activated 8- to 25-fold, respectively, when preincubated with phenylalanine or lysolecithin. In the absence of activators, the ratio of the hydroxylase activity in the presence of 6-methyl-5,6,7,8-tetrahydropterin compared to the activity in the presence of (6R)-5,6,7,8-tetrahydrobiopterin (BH4), which is an index of the state of activation of the enzyme, is 4 for the human recombinant PAH compared to a value of 12 for the recombinant rat liver enzyme. Furthermore, the Km for phenylalanine in the presence of BH4 is 0.050 mM, a value that is one-fifth that of the recombinant rat liver enzyme. Covalent modification of the human enzyme by phosphorylation with protein kinase A provides further evidence that the human enzyme is in a substantially activated state. Phosphorylation, which results in the incorporation of 0.6 mol of phosphate/mol of subunit, leads to only a modest activation of 1.5-fold compared to about a 3-fold activation seen after phosphorylation of the native and the recombinant rat liver enzymes. Moreover, the recombinant human liver enzyme is less sensitive than the rat liver enzyme to stimulation by lysolecithin when tryptophan is the substrate. Just as is true for the rat liver enzyme, the apparent Km values for tryptophan and pheylalanine vary with the pterin cofactor employed. The ability of 7-tetrahydrobiopterin (7-BH4) to substitute for the natural cofactor tetrahydrobiopterin has been studied in vitro. The apparent Km for 7-BH4 for the recombinant human enzyme is 0.2 mM and the Km for phenylalanine is 0.05 mM. The hydroxylase reaction is severely inhibited by 7-BH4 in the presence of physiological concentrations of BH4. This inhibition can be overcome by a decrease in the concentration of phenylalanine. The implications of these novel properties of human PAH for phenylalanine homoestasis in man are discussed.

Animals↗

Systemic hematologic effects of PEG-rHuMGDF-induced megakaryocyte hyperplasia in mice.

PEG-rHuMGDF injected daily in normal mice causes a rapid dose-dependent increase in megakaryocytes and platelets. At the same time that platelet numbers are increased, the mean platelet volume (MPV) and platelet distribution width (PDW) can be either decreased, normal, or increased depending on the dose and time after administration. Thus, PEG-rHuMGDF at a low dose causes decreases in MPV and PDW, MGDF at an intermediate dose causes an initial increase followed by a decrease in MPV and PDW, and PEG-rHuMGDF at higher doses causes an increase in MPV and PDW followed by a gradual normalization of these platelet indices. In addition to the expected thrombocytosis after 7 to 10 days of daily injection of high doses of PEG-rHuMGDF, a transient decrease in peripheral red blood cell numbers and hemoglobin is noted accompanied in the bone marrow by megakaryocytic hyperplasia, myeloid hyperplasia, erythroid and lymphoid hypoplasia, and deposition of a fine network of reticulin fibers. Splenomegaly, an increase in splenic megakaryocytes, and extramedullary hematopoiesis accompany the hematologic changes in the peripheral blood and marrow to complete a spectrum of pathologic features similar to those reported in patients with myelofibrosis and megakaryocyte hyperplasia. However, all the PEG-rHuMGDF-initiated hematopathology including the increase in marrow reticulin is completely and rapidly reversible upon the cessation of administration of PEG-rHuMGDF. Thus, transient hyperplastic proliferation of megakaryocytes does not cause irreversible tissue injury. Furthermore, PEG-rHuMGDF completely ameliorates carboplatin-induced thrombocytopenia at a low-dose that does not cause the hematopathology associated with myelofibrosis.

Anemia↗

Reduction of quinonoid dihydrobiopterin to tetrahydrobiopterin by nitric oxide synthase.

Rat cerebellar nitric oxide synthase (NOS) purified from transfected human kidney cells catalyzes an NADPHdependent reduction of quinonoid dihydrobiopterin (qBH2) to tetrahydrobiopterin (BH4). Reduction of qBH2 at 25 microM proceeds at a rate that is comparable with that of the overall reaction (citrulline synthesis) and requires calcium ions and calmodulin for optimal activity; NADH has only 10% of the activity of NADPH. The reduction rate with the quinonoid form of 6-methyldihydropterin is approximately twice that with qBH2. 7,8-Dihydrobiopterin had negligible activity. Neither 7,8-dihydrobiopterin nor BH4 affected the rate of qBH2 reduction. Reduction is inhibited by the flavoprotein inhibitor diphenyleneiodonium, whereas inhibitors of electron transfer through heme (7-nitroindazole and N-nitroarginine) stimulated the rate to a small extent. Methotrexate, which inhibits a variety of enzymes catalyzing dihydrobiopterin reduction, did not inhibit. These studies provide the first demonstration of the reduction of qBH2 to BH4 by NOS and indicate that the reduction is catalyzed by the flavoprotein "diaphorase" activity of NOS. This activity is located on the reductase (C-terminal) domain, whereas the high affinity BH4 site involved in NOS activation is located on the oxygenase (N-terminal) domain. The possible significance of this reduction of qBH2 to the essential role of BH4 in NOS is discussed.

Animals↗