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D Kaplan

Publications and source records attributed to D Kaplan.

At least 37 records · Page 2Linked to original sources

Conformational transitions in model silk peptides.

Protein structural transitions and beta-sheet formation are a common problem both in vivo and in vitro and are of critical relevance in disparate areas such as protein processing and beta-amyloid and prion behavior. Silks provide a "databank" of well-characterized polymorphic sequences, acting as a window onto structural transitions. Peptides with conformationally polymorphic silk-like sequences, expected to exhibit an intractable beta-sheet form, were characterized using Fourier transform infrared spectroscopy, circular dichroism, and electron diffraction. Polymorphs resembling the silk I, silk II (beta-sheet), and silk III (threefold polyglycine II-like helix) crystal structures were identified for the peptide fibroin C (GAGAGS repetitive sequence). Two peptides based on silk amorphous sequences, fibroin A (GAGAGY) and fibroin V (GDVGGAGATGGS), crystallized as silk I under most conditions. Methanol treatment of fibroin A resulted in a gradual transition from silk I to silk II, with an intermediate state involving a high proportion of beta-turns. Attenuated total reflectance Fourier transform infrared spectroscopy has been used to observe conformational changes as the peptides adsorb from solution onto a hydrophobic surface. Fibroin C has a beta-strand structure in solution but adopts a silk I-like structure upon adsorption, which when dried on the ZnSe crystal contains silk III crystallites.

Amino Acid Sequence↗

Reciprocal actions of interleukin-6 and brain-derived neurotrophic factor on rat and mouse primary sensory neurons.

In low-density, serum-free cultures of neurons from embryonic rat dorsal root ganglia, interleukin-6 supports the survival of less than one third of the neurons yet virtually all of them bear interleukin-6 alpha-receptors. A finding that might explain this selectivity is that interleukin-6 acts on sensory neurons in culture through a mechanism requiring endogenous brain-derived neurotrophic factor. Antibodies or a trkB fusion protein that block the biological activity of brain-derived neurotrophic factor synthesized by dorsal root ganglion neurons also block the survival-promoting actions of interleukin-6 on these neurons. Two results indicate that interleukin-6 influences synthesis of brain-derived neurotrophic factor in adult dorsal root ganglion neurons. Intrathecal infusion of interleukin-6 in rats increases the concentration of brain-derived neurotrophic factor mRNA in rat lumbar dorsal root ganglia. The induction of brain-derived neurotrophic factor in dorsal root ganglion neurons that is seen after nerve injury in rats or wild-type mice is severely attenuated in mice with null mutation of the interleukin-6 gene. In brief, the ability of interleukin-6 to support the survival of embryonic sensory neurons in vitro depends upon the presence of endogenous brain-derived neurotrophic factor and the induction of brain-derived neurotrophic factor in injured adult sensory neurons depends upon the presence of endogenous interleukin-6.

Age Factors↗

Evidence for diet effects on the composition of silk proteins produced by spiders.

Silks are highly expressed, secreted proteins that represent a substantial metabolic cost to the insects and spiders that produce them. Female spiders in the superfamily Araneoidea (the orb-spinning spiders and their close relatives) spin six different kinds of silk (three fibroins and three fibrous protein glues) that differ in amino acid content and protein structure. In addition to this diversity in silks produced by different glands, we found that individual spiders of the same species can spin dragline silks (drawn from the spider's ampullate gland) that vary in content as well. Freely foraging ARGIOPE: argentata (Araneae: Araneoidea), collected from 13 Caribbean islands, produced dragline silk that showed an inverse relationship between the amount of serine and glycine they contained. X-ray microdiffraction of the silks localized these differences to the amorphous regions of the protein that are thought to lend silks their elasticity. The crystalline regions of the proteins, which lend silks their strength, were unaffected. Laboratory experiments with ARGIOPE: keyserlingi suggested that variation in silk composition reflects the type of prey the spiders were fed but not the total amount of prey they received. Hence, it may be that the amino acid content (and perhaps the mechanical properties) of dragline silk spun by ARGIOPE: directly reflect the spiders' diet. The ability to vary silk composition and, possibly, function is particularly important for organisms that disperse broadly, such as Argiope, and that occupy diverse habitats with diverse populations of prey.

Amino Acids↗

Synaptic efficacy and the transmission of complex firing patterns between neurons.

In central neurons, the summation of inputs from presynaptic cells combined with the unreliability of synaptic transmission produces incessant variations of the membrane potential termed synaptic noise (SN). These fluctuations, which depend on both the unpredictable timing of afferent activities and quantal variations of postsynaptic potentials, have defied conventional analysis. We show here that, when applied to SN recorded from the Mauthner (M) cell of teleosts, a simple method of nonlinear analysis reveals previously undetected features of this signal including hidden periodic components. The phase relationship between these components is compatible with the notion that the temporal organization of events comprising this noise is deterministic rather than random and that it is generated by presynaptic interneurons behaving as coupled periodic oscillators. Furthermore a model of the presynaptic network shows how SN is shaped both by activities in incoming inputs and by the distribution of their synaptic weights expressed as mean quantal contents of the activated synapses. In confirmation we found experimentally that long-term tetanic potentiation (LTP), which selectively increases some of these synaptic weights, permits oscillating temporal patterns to be transmitted more effectively to the postsynaptic cell. Thus the probabilistic nature of transmitter release, which governs the strength of synapses, may be critical for the transfer of complex timing information within neuronal assemblies.

Animals↗

Financing adolescent health care: the role of Medicaid and CHIP.

Financing health care for adolescents involves a combination of public and private sources of payment and, in the public sector, a combination of insurance coverage and categorical programs. In recent years, the importance of health insurance coverage has increased along with the potential for insuring more adolescents. Medicaid and the new State Children's Health Insurance Program (CHIP) offer numerous options for reducing the proportion of uninsured adolescents and for increasing adolescents' access to necessary health care. This article explores the potential of Medicaid and CHIP for meeting adolescents' needs, the extent to which they have done so already, and the gaps or missing links that remain. It also reviews issues that cut across funding sources related to managed care, consent, and confidentiality.

Adolescent↗

Ras regulates sympathetic neuron survival by suppressing the p53-mediated cell death pathway.

In this report, we examine how the Ras protein regulates neuronal survival, focusing on sympathetic neurons. Adenovirus-expressed constitutively activated Ras (RasV12) enhanced survival and the phosphorylation of Akt (protein kinase B) and MAP kinase (MAPK), two targets of Ras activity. Functional inhibition of endogenous Ras by adenovirus-expressed dominant-inhibitory Ras (N17Ras) decreased nerve growth factor (NGF)-dependent survival and both Akt and MAPK phosphorylation as well. To determine the signaling pathways through which Ras mediates survival, we used Ras effector mutants and pharmacological inhibitors that selectively suppress phosphatidylinositol 3-kinase (PI3-K)/Akt or MAP kinase kinase (MEK)/MAPK pathways. The Ras effector mutant Ras(V12)Y40C, which selectively stimulates PI3-K and Akt, rescued survival in the absence of NGF, and the PI3-K inhibitor LY 294002 inhibited both Ras- and NGF-dependent survival. Ras(V12)T(35)S, which activates MEK/MAPK but not PI3-K/Akt, was less effective at rescuing survival, whereas the MEK inhibitor PD 098059 also partially suppressed Ras-dependent survival. To investigate the mechanisms by which Ras suppresses neuronal death, we examined whether Ras functions by inhibiting the proapoptotic p53 pathway (Jun-N-terminal kinase/p53/BAX) that is necessary for neuronal death after NGF withdrawal and p75NTR activation. We found that RasV12 suppressed c-jun, BAX, and p53 levels, whereas inhibition of NGF-induced Ras-survival activity via N17Ras increased the levels of these proteins. Furthermore, the E1B55K protein, which suppresses p53 activity, blocked N17Ras-induced neuronal death. Together, these results indicate that Ras is, in part, both necessary and sufficient for survival of sympathetic neurons and that this effect is mediated by activation of both the PI3-K- and MEK-signaling cascades, which in turn suppress a proapoptotic p53 pathway.

Adenoviridae↗

Differential activity of soluble versus cellular Fas ligand: regulation by an accessory molecule.

Fas ligand induces apoptosis by binding to its receptor Fas. This process has been shown to be important for activation-induced cell death of T lymphocytes, homeostasis of T cell numbers, cytotoxicity, and the maintenance of immunological privilege. Fas ligand is a type II membrane protein that is cleaved by a metalloproteinase to produce an active, soluble molecule. It has been found that a variety of target cells are differentially sensitive to soluble and membrane-associated forms of Fas ligand. However, the explanation for this differential activity has not been determined. One proposed explanation for this differential activity is that membrane-associated Fas ligand is more efficiently aggregated than soluble Fas ligand. Another possibility that we have investigated is that accessory molecules may act to enhance the activity of cellular Fas ligand. We have transfected cells to express membrane-associated Fas ligand and have characterized clones of these transfected cells in terms of Fas ligand and ICAM-1 surface expression. Enhanced activity was associated with enhanced levels of both Fas ligand and ICAM-1. Moreover, inhibition of ICAM-1 modulated the activity of membrane-associated Fas ligand so that its cellular specificity was similar to that of soluble Fas ligand. Thus, ICAM-1 plays a significant role in regulating Fas ligand activity, and this role explains, at least in part, the different functional attributes of the soluble versus the cell-associated molecule.

Antigens, CD↗

Akt-dependent potentiation of L channels by insulin-like growth factor-1 is required for neuronal survival.

The insulin-like growth factor-1 (IGF-1)/receptor tyrosine kinase recently has been shown to mediate neuronal survival and potentiate the activity of specific calcium channel subtypes; survival requires Akt, a serine/threonine kinase. We demonstrate here that Akt mediates the IGF-1-induced potentiation of L channel currents, but not that of N channels. Transient expression of wild-type, dominant-negative, and constitutively active forms of Akt in cerebellar granule neurons causes, respectively, no change in IGF-1/L channel potentiation, complete inhibition of potentiation, and a dramatic increase in basal L currents accompanied by the loss of ability to induce further increases. In no case is the IGF-1 potentiation of N currents affected. We additionally find that IGF-1 partially mediates granule neuron survival via L channel activity and that Akt-dependent L channel modulation is a necessary component. Interestingly, very brief exposure (1 min) to IGF-1 triggers nearly complete survival and requires L channel activity. These results strongly suggest that neuronal receptor tyrosine kinases can control long-term calcium-dependent processes via the rapid control of voltage-sensitive channels.

Animals↗

Selective antipolysaccharide antibody deficiency associated with peripheral blood CD5+ B-cell predominance.

BACKGROUND: Primary humoral deficiencies vary from complete absence of B cells and/or serum immunoglobulin to lacunar deficits involving specific antibody responses to polysaccharides. OBJECTIVES: We compared the B-cell CD5 expression in patients with selective antipolysaccharide antibody deficiencies (SPADs), common variable immunodeficiency (CVID), and IgG subclass deficiency and in normal control subjects. METHODS: Five patient populations were evaluated: (1) patients with severe SPAD (no protective serologic postvaccine response to any of 12 polysaccharide antigens tested); (2) patients with intermediate SPAD (diminished response to polysaccharide antigens and adequate response to 1 to 3 of 12 serotypes tested); (3) patients with IgG subclass deficiency; (4) patients with CVID; and (5) age-matched control subjects. Blood was collected from all patients and evaluated by using flow cytometry. Results were compared by using the Student t test. RESULTS: Patients with severe SPAD deficiencies had a marked predominance of CD5+ B cells in the peripheral blood (93% to 97% of total B cells, n = 2). The intermediate SPAD group had a mean CD5+ B-cell percentage that was significantly higher than that of the age-matched control group (87. 4%, n = 7, vs 52.5%, n = 20; P =.007). Patients with CVID and IgG subclass deficiency had mean CD5+ B-cell percentages that were similar to those of the age-matched control subjects. CONCLUSIONS: Our studies demonstrate that patients with SPAD had a markedly increased percentage of CD5+ B cells in the peripheral blood as compared with age-matched control subjects and patients with other humoral deficiencies. This observation suggests that an association may be present between CD5+ B-cell predominance and SPAD.

Antibodies, Bacterial↗

Mycobacterial cervical lymphadenitis: the histological features of non-tuberculous mycobacterial infection.

AIMS: The distinction between nontuberculous mycobacterial (NTM) lymphadenitis and other causes of cervical lymphadenitis is critical, as different entities call for different treatments. Despite modern diagnostic techniques for NTM infections their prompt and accurate diagnosis is still difficult. We assessed the value of different histological features in diagnosing clinically suggestive NTM cervical lymphadenitis in cases of granulomatous cervical lymphadenitis. METHODS AND RESULTS: A retrospective study of 30 patients with a clinical diagnosis of NTM cervical lymphadenitis was carried out. The patients were divided into three subgroups and several histological parameters were examined in each subgroup. A comparison was made with cases of proven tuberculous lymphadenitis. Four histological features (presence of microabscesses, ill-defined granulomas, noncaseating granulomas and a small number of giant cells) were found with significant statistical difference when comparison was made between the NTM group and the tuberculosis group. CONCLUSIONS: A rapid and accurate diagnostic procedure for NTM lymphadenitis is not yet available. Therefore, in the presence of a suggestive clinical picture for NTM lymphadenitis, we propose four histological features which support this diagnosis, thus allowing prompt therapeutic intervention.

Adult↗

Reexamining the value of hematuria testing in patients with acute flank pain.

PURPOSE: Hematuria testing is routinely performed in patients with acute flank pain to screen for ureterolithiasis and to help determine the need for excretory urography. Unenhanced helical computerized tomography (CT) has recently been shown to be superior to excretory urography in diagnosing ureteral obstruction and can evaluate many other causes of flank pain. Given the speed, accuracy and safety of CT the value of hematuria testing for acute flank pain should be reexamined. MATERIALS AND METHODS: We reviewed the medical records of 267 consecutive patients with acute flank pain referred for unenhanced helical CT. Microscopic and dipstick urinalysis data were obtained in 195 patients. Using helical CT as the gold standard, we calculated the sensitivity, specificity, predictive value and accuracy of hematuria for diagnosing ureterolithiasis. RESULTS: Of the patients with ureterolithiasis 33% had 5 or less, 19% had 1 or less and 11% had no red blood cells (RBCs) per high power field. Of the patients without ureterolithiasis 24% had greater than 5 and 51% had greater than 1 RBC per high power field. Of the patients with ureterolithiasis 14% had a negative dipstick test and 1 RBC or less per high power field. There were 25 patients without ureterolithiasis who had CT abnormalities unrelated to the urinary tract, of whom 8 had greater than 1 RBC per high power field. CONCLUSIONS: Absence of hematuria in the setting of acute flank pain cannot exclude a diagnosis of ureterolithiasis and should not obviate other diagnostic testing. Even when strongly positive on microscopy, hematuria has insufficient positive predictive value for diagnosing ureterolithiasis and may be misleading as other serious conditions resulting in acute flank pain may yield a positive test.

Acute Disease↗

The role of sarcoplasmic reticulum in the protective effect of class III drugs against Ca2+ overload.

UNLABELLED: Various studies on humans and experimental mammals showed that d-sotalol and tedisamil (class III antiarrhythmic drugs with positive inotropic effect) facilitate spontaneous ventricular defibrillation. Following our previous results, we summarized that spontaneous ventricular defibrillation requires high level of intercellular coupling and synchronization, both of which depends on intracellular free Ca2+ concentration. We hypothesized that any antiarrhythmic compound that facilitates spontaneous defibrillation, including d-sotalol and tedisamil, should prevent intracellular free Ca2+ overload most likely by elevating cAMP level and enhancing cAMP-related Ca2+ uptake of the sarcoplasmic reticulum (SR). The aim of the present study was to examine the role of the SR uptake function in their effect against Ca2+ overload. METHODS: The effect of d-sotalol, tedisamil and dbcAMP on increased intracellular Ca2+ level were examined in cultured rat cardiomyocytes during blockade of SR Ca2+ uptake by administration of thapsigargin (TG), a selective inhibitor of Ca2+-ATPase. RESULTS: Administration of 3 x 10(-6) mol/l TG, prior to d-sotalol, tedisamil and dbcAMP, significantly increased intracellular free Ca2+ concentration and prevented the effect of d-sotalol, tedisamil or dbcAMP to decrease intracellular Ca2+ level to its beseline, while 10(-6) mol/l TG prevented it only partially. Administration of either d-sotalol or tedisamil (at concentration of 10(-5) mol/l) before the administration of 10(-6) mol/l TG prevent the TG induced elevation of [Ca2+]i. CONCLUSION: These results support our hypothesis that d-sotalol and tedisamil prevent Ca2+ overload by the cAMP dependent SR Ca2+ uptake.

Animals↗

Expression of a recombinant Fab antibody fragment against cruzipain, the major cysteine proteinase of Trypanosoma cruzi.

Cruzipain, the major proteinase of Trypanosoma cruzi, plays an important role in the biology of this parasite. This study reports the development of a recombinant Fab antibody, using RNA isolated from the anti-Ag163B6 hybridoma against cruzipain. This procedure involves the use of cDNAs obtained with the aid of a specific set of primers complementary to the complete light kappa chain (L kappa) and the first two domains of the IgG1 heavy chain (VH/CH1). These products were subsequently cloned in the pComb3 system, from which the gIII gene had been removed, and expressed in Escherichia coli cells. The recombinant Fab molecule recognized cruzipain by ELISA, in a fashion similar to the original mAb anti-Ag163B6. Nucleotide sequence analysis of the recombinant molecule, together with its immunological recognition by specific anti-mouse IgG (Fab)2, indicated the immunoglobulin nature of the recombinant product. Moreover, both the mAb anti-Ag163B6 and the soluble Fab fragment described here react similarly with the intact parasite surface, as observed in an indirect immunofluorescence assay. In conclusion, our recombinant Fab anti-Ag 163B6 allows the possible use of this molecule for diagnosis, antigen purification, and eventually treatment of Chagas-afflicted individuals.

Animals↗

Technical note: Aberrant detection of cell surface Fas ligand with anti-peptide antibodies.

Polyclonal rabbit Abs raised against peptides from the C-terminal region (the extracellular domain) of human Fas ligand were produced for the detection of the molecule in Western blot analysis and immunohistochemistry. These Abs have been used by several groups of investigators to assess cell surface Fas ligand via flow cytometry, but we show that these polyclonal rabbit Abs do not detect cell surface Fas ligand by that technique.

Animals↗

Purification and characterization of recombinant spider silk expressed in Escherichia coli.

A partial cDNA clone, from the 3' end of the dragline silk gene was isolated from Nephila clavipes major ampullate glands. This clone contains a 1.7-kb insert, consisting of a repetitive coding region of 1.4-kb and a 0.3-kb nonrepetitive coding region; 1.5-kb of the 1.7-kb fragment was cloned into Escherichia coli and a 43-kDa recombinant silk protein was expressed. Characterization of the purified protein by Western blot, amino acid composition analysis, and matrix-assisted laser desorption ionization/time-of-flight mass spectrometry confirms it to be spider dragline silk.

Amino Acid Sequence↗