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Biomedical subjects

R Rasmussen

Publications and source records attributed to R Rasmussen.

At least 19 recordsLinked to original sources

Reversal of multidrug resistance by two novel indole derivatives.

Two new fused indoles were found to overcome multidrug resistance in P388/Adr cells in vitro. These agents potentiated the cytotoxicity of the antitumor drugs Adriamycin, vinblastine, and vincristine in multidrug-resistant cells with no effect on drug-sensitive parent P388 cells. They significantly increased the ATP-dependent accumulation of [3H]-vinblastine and inhibited efflux of the labeled drug from resistant cells. These compounds also inhibited photoaffinity labeling of P-glycoprotein by [3H]azidopine in P388/Adr cells and membranes isolated from these cells. In addition, the calcium antagonist activity of these compounds was very weak compared with that of verapamil. These data suggest that the compounds reported here may specifically overcome multidrug resistance without the serious hypotensive effects associated with calcium antagonists and that this activity may be independent of their ability to block calcium transport.

ATP Binding Cassette Transporter, Subfamily B, Mem

Beta-adrenergic neuroeffector abnormalities in the failing human heart are produced by local rather than systemic mechanisms.

In order to investigate the general cause of beta-adrenergic receptor neuroeffector abnormalities in the failing human heart, we measured ventricular myocardial adrenergic receptors, adrenergic neurotransmitters, and beta-adrenergic receptor-effector responses in nonfailing and failing hearts taken from nonfailing organ donors, subjects with endstage biventricular failure due to idiopathic dilated cardiomyopathy (IDC), and subjects with primary pulmonary hypertension (PPH) who exhibited isolated right ventricular failure. Relative to nonfailing PPH left ventricles, failing PPH right ventricles exhibited (a) markedly decreased beta 1-adrenergic receptor density, (b) marked depletion of tissue norepinephrine and neuropeptide Y, (c) decreased adenylate cyclase stimulation in response to the beta agonists isoproterenol and zinterol, and (d) decreased adenylate cyclase stimulation in response to Gpp(NH)p and forskolin. These abnormalities were directionally similar to, but generally more pronounced than, corresponding findings in failing IDC right ventricles, whereas values for these parameters in nonfailing left ventricles of PPH subjects were similar to values in the nonfailing left ventricles of organ donors. Additionally, relative to paired nonfailing PPH left ventricles and nonfailing right ventricles from organ donors, failing right ventricles from PPH subjects exhibited decreased adenylate cyclase stimulation by MnCl2. These data indicate that: (a) Adrenergic neuroeffector abnormalities present in the failing human heart are due to local mechanisms; systemic processes do not produce beta-adrenergic neuroeffector abnormalities. (b) Pressure-overloaded failing right ventricles of PPH subjects exhibit decreased activity of the catalytic subunit of adenylate cyclase, an abnormality not previously described in the failing human heart.

Adenylyl Cyclases

X-ray scattering indicates that the leucine zipper is a coiled coil.

Dimerization of the bZIP class of eukaryotic transcriptional control proteins requires a sequence motif called the leucine zipper. We have grown two distinct crystal forms of a 33-amino acid peptide corresponding to the leucine zipper of the yeast transcriptional activator GCN4. This peptide is known to form a dimer of parallel helices in solution. X-ray scattering from both crystal forms shows reflections that are diagnostic of coiled coils. The most notable reflections occur at approximately 5.2 A resolution and correspond to the pitch of helices in coiled coils. There is no diffraction maximum near 5.4 A, the characteristic pitch of straight helices. Our results provide direct evidence that the leucine zipper of GCN4 is a coiled coil.

Amino Acid Sequence

Low-dose enoximone in subjects awaiting cardiac transplantation. Clinical results and effects on beta-adrenergic receptors.

During a 3-year period we administered enoximone, a phosphodiesterase inhibitor with positive inotropic and vasodilator properties, to 73 pretransplantation patients with end-stage heart failure who exhibited a clinical requirement for additional inotropic support. The clinical course and myocardial beta-adrenergic receptor status in the explanted hearts of these 73 patients was compared with results in 113 concurrently listed pretransplantation patients not requiring additional inotropic support. Only three patients required cessation of enoximone because of adverse effects, all from exacerbation of ventricular arrhythmias. Sixty-six of 73 (90.4%) enoximone-treated patients ultimately underwent cardiac transplantation a mean of 39.2 +/- 6.6 days (range 1 to 221 days) after starting enoximone, whereas seven patients (9.6%) died awaiting cardiac transplantation. The respective 1-, 3-, and 6-month pretransplantation survival rates of patients treated with enoximone calculated from their time on the waiting list for transplantation were 88.0%, 82.5%, and 82.5% compared with 92.1%, 83.8%, and 76.2% in control patients not receiving enoximone (all p = not significant). In 25 patients who received enoximone, ventricular myocardial beta-adrenergic receptors were measured at the time of transplantation and compared with values in failing ventricles from 52 pretransplantation patients not exposed to enoximone. Compared with ventricular myocardium of patients not given enoximone or intravenous beta-adrenergic agonists, total beta-adrenergic receptor (beta 1 plus beta 2) density was not decreased in patients treated with enoximone or enoximone plus intravenous beta-adrenergic agonists, but was decreased by 31% (p less than 0.05) in patients given intravenous beta-adrenergic agonists alone. Additionally, patients treated with enoximone had higher myocardial beta 2-adrenergic receptor densities than respective subgroups treated without (28% higher, p less than 0.01) or with (65% higher, p less than 0.01) intravenous beta-adrenergic agonists. Finally, isoproterenol- or calcium-mediated contractile responses in isolated right ventricular preparations from 14 patients treated with enoximone were similar to values in control patients not exposed to enoximone or intravenous beta-adrenergic agonists, suggesting that enoximone-related beta-adrenergic subsensitivity or damage to the contractile apparatus does not occur.

Adult

Experience with subcutaneous erythropoietin in CAPD patients.

Experience in the use of subcutaneous erythropoietin in 18 CAPD patients is presented. The total and mean (SD) durations on CAPD were 419 and 23.3 (20.5) months, respectively. Eleven patients started treatment with normal or elevated iron stores, 7 had an initial iron saturation less than 20%. The initial hematocrit was 22.0 (3.1%). Eleven patients reached a steady state hematocrit (34.1 +/- 3.5%) by the end of the study period, and the mean percentage increase in hematocrit for all 18 patients was 47% over the initial hematocrit. All patients responded to EPO. The initial dose of EPO was 157.6 U/kg/wk, and all patients received oral iron supplements. There was no significant change in the means of any iron parameters. Transfusion requirements decreased from a mean of 0.42 transfusions per month per patient during the 12 months, prior to EPO, to 0.22 during the study. There were no significant changes in blood pressure or other measured parameters. Transient pain at the site of injection was noted infrequently.

Anemia

Beta-adrenergic pathways in nonfailing and failing human ventricular myocardium.

beta-Adrenergic pathways in the human ventricular myocardium mediate the powerful positive inotropic effects of released neurotransmitters (norepinephrine) and circulating hormones (epinephrine) and the response to therapeutically administered beta-agonists. Two genetically and pharmacologically distinct receptors, beta 1 and beta 2, mediate the contractile effects of catecholamines in a similar manner. The biologic signal produced by the occupancy of beta-adrenergic receptors by catecholamine agonists is transduced, amplified, and regulated by a family of guanine nucleotide-binding proteins (G proteins), which serve both stimulatory and inhibitory functions. Although the major biochemical effector of beta-adrenergic receptors is the enzyme protein--coupled directly to ion channels that regulate inotropic and electrophysiological effects. In human ventricular myocardium, heart failure produces changes in the beta-adrenergic receptor pathways that have the collective effect of reducing the degree of inotropic stimulation that may be produced by a given amount of beta-agonist. These changes include downregulation of beta 1-adrenergic receptors, uncoupling of beta 2-adrenergic receptors, and an increase in the functional activity of the inhibitory G protein. These effects in turn are probably caused by exposure to increased amounts of neurotransmitter resulting from a complex series of changes in the cardiac sympathetic nervous system. Finally, the components of the beta-receptor-G protein system may be both acutely and chronically modulated by certain kinds of pharmacological therapy. These observations underscore the importance of the adrenergic nervous system in heart failure, and they create the potential for the development of new interventional strategies designed to alter the natural history of heart muscle disease and heart failure.

Adenylyl Cyclases

Incidence of CAPD peritonitis in patients using UVXD or O-set systems.

Eighty-one patients were placed either on the O-set (39) or the UVXD germicidal system (42). Total experience was 13.7 +/- 8.0 and 17.8 +/- 14.8 months, respectively. There were 48 and 85 new episodes of peritonitis in 24 and 28 patients, respectively, and an additional 11 and 28 episodes of relapse or probable relapse. The peritonitis rate was 1 episode each 11.14 and 8.83 patient months, which was not significantly different. There was no significant difference between the 2 groups in terms of the mean numbers of peritonitis-free days (393.7 versus 503.8) or in the mean time to the first episode of peritonitis (6.60 versus 6.54 months). The odds ratio of relative risk of peritonitis with the two systems was 1:1.17 (O-set:UVXD). There appears to be no difference in ability of the two systems to prevent peritonitis.

Adult

Structure and expression of elongation factor 1 alpha in tomato.

A full-length cDNA clone, LeEF-1, has been isolated from tomato for the alpha subunit of elongation factor 1 (EF-1 alpha), a polypeptide which plays a central role in protein synthesis. The 448 amino acid protein encoded by this cDNA appears highly homologous to other EF-1 alpha s having a high degree of similarity (75-78%) to EF1 alpha previously described from both lower eukaryotes and animals. Southern analysis indicated that EF-1 alpha belongs to a small multigene family of 4-8 members in tomato. The pattern of expression of EF-1 alpha mRNA in various tomato tissues was analyzed by Northern analysis, in vitro translation and in situ hybridization. EF-1 alpha mRNA is an abundant species and higher levels of mRNA were found in developing tissues such as young leaves and green fruit compared to the mRNA levels observed in older tissues. The increased levels of EF-1 alpha mRNA therefore appear to correlate with higher levels of protein synthesis in developing tissues.

Amino Acid Sequence

Isolation and characterization of a fruit-specific cDNA and the corresponding genomic clone from tomato.

Differential screening of a cDNA bank constructed from ripe tomato fruit mRNA allowed the isolation of cDNA clone 2A11 which is entirely fruit-specific, is expressed at steadily increasing levels from anthesis to breaker, and accounts for approximately 1% of the messenger RNA in mature tomato fruit. A genomic clone corresponding to the 2A11 cDNA was isolated from a tomato genomic library. Sequence comparison of the cDNA clone with the genomic clone shows they are identical over the shared region with the genomic clone possessing a single large intron near the 5' end of the message. The open reading frame of 2A11 would encode a sulfur-rich polypeptide 96 amino acids in length. The identity of the putative protein is unknown. In situ hybridization shows that the 2A11 message is found throughout the pericarp cells in a tomato fruit. In contrast, in situ hybridization of early ripening stages with a polygalacturonase probe shows higher mRNA levels in cells of the outer pericarp and cells surrounding the vascular regions of the pericarp.

Amino Acid Sequence

Beta 1- and beta 2-adrenergic receptor-mediated adenylate cyclase stimulation in nonfailing and failing human ventricular myocardium.

Prenalterol (beta 1-agonist), denopamine (beta 1-agonist), and zinterol (beta 2-agonist) were partial agonists of adenylate cyclase (AC) stimulation in human ventricular myocardium obtained from nonfailing chambers whose beta 1/beta 2 receptor subtype ratio was approximately 80/20. At a concentration less than its low affinity (beta 2) Kl, betaxolol, a highly selective beta 1-antagonist, inhibited isoproterenol (non-selective agonist), denopamine, and prenalterol stimulation of AC, indicating that isoproterenol, denopamine, and prenalterol are all capable of stimulating AC through beta 1-receptor activation. At a concentration less than its low affinity (beta 1) Kl, ICI 118,551, a highly selective beta 2-agonist, inhibited both isoproterenol and zinterol stimulation of AC, indicating that isoproterenol and zinterol stimulate AC through beta 2-receptors. Zinterol stimulation of AC was mediated entirely by beta 2-receptors, inasmuch as 10(-7) M betaxolol had no effect on the zinterol dose-response curve and ICI 118,551 produced a degree of blockade (KB = 5.2 +/- 1.6 X 10(-9) M), consistent with the beta 2-receptor Kl of the latter (2.0 +/- .4 X 10(-9) M, p, not significant). In nonfailing myocardium, analysis of beta 1 versus beta 2 stimulation by the nonselective agonist isoproterenol revealed that the numerically small (19% of the total) beta 2 fraction accounted for the majority of the total adenylate cyclase stimulation. In failing ventricular chambers with a beta 1/beta 2 receptor subtype ratio reduced from 82/19 (nonfailing) to 64/36 (p less than 0.001) and a beta 1-receptor density reduced by 61% (p less than 0.001), maximal denopamine stimulation was reduced by 49% (p less than 0.001). Moreover, in preparations from failing heart, the component of denopamine stimulation that was inhibited by 10(-7) M betaxolol (beta 1 component) was reduced by 77% (p less than 0.05). Finally, in preparations derived from failing ventricular myocardium, beta 2-receptor density was not significantly decreased, but zinterol stimulation of AC was reduced by 32% (p less than 0.05). We conclude that heart failure results in subsensitivity to both selective beta 1 and beta 2 stimulation of adenylate cyclase, with beta 1 subsensitivity due to selective beta 1 receptor down-regulation and beta 2 subsensitivity due to partial uncoupling of beta 2 receptors from subsequent events in the beta 2-adrenergic pathway.

Adenylyl Cyclases

T cell-dependent hapten-specific and polyclonal B cell responses require release of interleukin 5.

CD4+ T cells in the mouse have recently been subdivided into two major subpopulations which differ in their functional activities and in the lymphokines they produce. Although cloned T cells lines representative of both sets will activate B cells in polyclonal responses, only the subset producing interleukin 4 (IL-4) will activate antigen-specific B cells in linked recognition assays. This suggested that IL-4 was essential for such responses. In the present experiments, the requirements were compared for B cell activation in specific as opposed to polyclonal antibody responses by T cell clones of the helper (IL-4 producing) subset. It was found that specific responses involve primarily small B cells, whereas polyclonal responses activate exclusively the large B cells. Second, polyclonal B cell responses can proceed in the absence of T:B contact, whereas specific responses require physical interaction of the two cells. Third, it was found that interleukin 5 (IL-5, formerly known as T cell replacing factor/B cell growth factor II) is essential for these polyclonal responses by inhibition of such responses with monoclonal anti-IL-5 antibody. Anti-IL-5 also inhibits specific antibody responses involving direct T:B interaction. Thus, IL-5 is clearly a critical mediator of differentiation to immunoglobulin secretion of activated B cells, whether such B cells are obtained as large B cells from freshly isolated spleen cells or are initially activated in an IL-4-dependent fashion by cognate interaction by a helper T cell clone.

Animals

Alpha-1 adrenergic receptors in the nonfailing and failing human heart.

We examined alpha-1 adrenergic receptor density in ventricular myocardium from nonfailing and failing human hearts, utilizing the alpha-1 radioligand [125I]IBE2254. The alpha-1 receptor population comprised a relatively small portion of the total adrenergic receptors, 14.6 +/- 1.9%. However, in failing human ventricular myocardium the alpha-1 adrenergic receptor population constituted a much greater portion, 27.3 +/- 2.1% (P less than .01). The reason for the increased proportion of alpha-1 adrenergic receptors was not that the total concentration of alpha-1 receptors was increased, but instead was due to selective down-regulation of the beta-1 adrenergic receptor population. Beta-2 adrenergic receptors behaved similarly to alpha-1 adrenergic receptors in the failing human heart, and were increased in proportion and unchanged in total number. Additionally, the ability of alpha-1 stimulation to increase the incorporation of label from [3H]inositol into inositol phosphates was examined in tissue homogenates. Maximal doses of norepinephrine produced only marginal stimulation of phosphatidylinositol hydrolysis, in contrast to a more substantial response produced by muscarinic stimulation. We conclude that human ventricular myocardium contains alpha-1 adrenergic receptors that 1) are of relatively low density, 2) are unchanged in density by heart failure and 3) mediate relatively low-level stimulation of phosphatidylinositol hydrolysis.

Carbachol