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Biomedical subjects

K Baker

Publications and source records attributed to K Baker.

At least 19 recordsLinked to original sources

Angiotensin II activates Stat5 through Jak2 kinase in cardiac myocytes.

Angiotensin II (Ang II) treatment was recently shown to activate Jak2, Stat1, and Stat3 proteins in cardiac myocytes. Angiotensin-converting enzyme (ACE) inhibitors have been shown to be an effective clinical treatment following myocardial infarction, implying that inhibition of Ang II production is beneficial in this pathological condition. Some of the effects of Ang II in cardiac myocytes may be mediated by the JAK-STAT signaling pathway. The AT1 receptor was the first G-protein-coupled-receptor reported to activate the JAK-STAT pathway. Recently, however, another G-protein-coupled-receptor (i.e. serotonin) was also shown to signal through the JaK2 and STAT proteins in myoblasts. We hypothesized that Ang II treatment might also activate Stat5 transcription factors in cardiac myocytes. In this study, we provide evidence that the G-protein-coupled, Ang II type I (AT1) receptor couples to activation of Stat5 through Jak2 kinase in neonatal rat ventricular myocytes. Angiotensin II induces a 1.5- to 10-fold increase in a Stat5 transcription complex, which binds to the prolactin-inducing element (PIE). By Western analysis, Stat5 protein levels were shown to be tyrosine phosphorylated two- to three-fold over control, following. Ang II treatment of cardiac myocytes. Phosphorylation of Stat5a and Stat5b proteins was rapid and sustained (30-60 min), and Jak2 kinase co-immunoprecipitated with activated Stat5 proteins. In cardiac myocytes, Stat5 proteins co-immunoprecipitated with the AT1 receptor. Selective inhibition of Jak2 kinase with AG-490 blocked formation of prolactin-inducing factor (PIF) complexes by Ang II, suggesting that Jak2 kinase was required for the tyrosine phosphorylation of Stat5 in cardiac myocytes.

Amino Acid Sequence

Synthetic combined superoxide dismutase/catalase mimetics are protective as a delayed treatment in a rat stroke model: a key role for reactive oxygen species in ischemic brain injury.

Stroke is a severe and prevalent syndrome for which there is a great need for treatment, including agents to block the cascade of brain injury that occurs in the hours after the onset of ischemia. Reactive oxygen species (ROS) have been implicated in this destructive process, but antioxidant enzymes such as superoxide dismutase (SOD) have been unsatisfactory in experimental stroke models. This study is an evaluation of the effectiveness of salen-manganese complexes, a class of synthetic SOD/catalase mimetics, in a rat focal ischemia model involving middle cerebral artery occlusion. We focus on EUK-134, a newly reported salen-manganese complex demonstrated here to have greater catalase and cytoprotective activities and equivalent SOD activity compared with the previously described prototype EUK-8. The administration of EUK-134 at 3 hr after middle cerebral artery occlusion significantly reduced brain infarct size, with the highest dose apparently preventing further infarct growth. EUK-8 was also protective but substantially less effective. These findings support a key role for ROS in the cascade of brain injury after stroke, even well after the onset of ischemia. The enhanced activity of EUK-134 suggests that, in particular, hydrogen peroxide contributes significantly to this injury. Overall, this study suggests that synthetic SOD/catalase mimetics might serve as novel, multifunctional therapeutic agents for stroke.

Animals

Control of TRAIL-induced apoptosis by a family of signaling and decoy receptors.

TRAIL (also called Apo2L) belongs to the tumor necrosis factor family, activates rapid apoptosis in tumor cells, and binds to the death-signaling receptor DR4. Two additional TRAIL receptors were identified. The receptor designated death receptor 5 (DR5) contained a cytoplasmic death domain and induced apoptosis much like DR4. The receptor designated decoy receptor 1 (DcR1) displayed properties of a glycophospholipid-anchored cell surface protein. DcR1 acted as a decoy receptor that inhibited TRAIL signaling. Thus, a cell surface mechanism exists for the regulation of cellular responsiveness to pro-apoptotic stimuli.

Amino Acid Sequence

Defective "pacemaker" current (Ih) in a zebrafish mutant with a slow heart rate.

At a cellular level, cardiac pacemaking, which sets the rate and rhythm of the heartbeat, is produced by the slow membrane depolarization that occurs between action potentials. Several ionic currents could account for this pacemaker potential, but their relative prominence is controversial, and it is not known which ones actually play a pacemaking role in vivo. To correlate currents in individual heart cells with the rhythmic properties of the intact heart, we have examined slow mo (smo), a recessive mutation we discovered in the zebrafish Danio rerio. This mutation causes a reduced heart rate in the embryo, a property we can quantitate because the embryo is transparent. We developed methods for culture of cardiocytes from zebrafish embryos and found that, even in culture, cells from smo continue to beat relatively slowly. By patch-clamp analysis, we discovered that a large repertoire of cardiac currents noted in other species are present in these cultured cells, including sodium, T-type, and L-type calcium and several potassium currents, all of which appear normal in the mutant. The only abnormality appears to be in a hyperpolarization-activated inward current with the properties of Ih, a current described previously in the nervous system, pacemaker, and other cardiac tissue. smo cardiomyocytes have a reduction in Ih that appears to result from severe diminution of one kinetic component of the Ih current. This provides strong evidence that Ih is an important contributor to the pacemaking behavior of the intact heart.

Animals

Correction of the Bloom syndrome cellular phenotypes.

Bloom syndrome (BLM) is a genetic disorder associated with predisposition to cancer and chromosome instability. However, the most readily recognized clinical feature of the syndrome is growth retardation. Introduction of the previously cloned BLM gene into BLM cells yielded correction of the chromosome instability and slow growth phenotypes. Additionally, asynchronous cultures of complemented clones revealed a lower percentage of cells in S-phase than uncomplemented BLM cells. These results support the notion that BLM is a defect in which short stature, chromosome instability and cancer predisposition are all associated with an error in DNA replication.

Adenosine Triphosphatases

Merger motorway. Giving staff the tools to reengineer.

Mergers and health care agencies' response to mergers dominate current conversations in this evolving managed care environment. Hospitals are rapidly learning to adjust to declining occupancy rates and deceased utilization of resources. A business model to guide mergers was adapted to assist staff with the people, structural, cultural and political issues of organizational change. Creating successful new work environments, moving from a "We-they" mentality to unity and decreasing use of resources are outcomes described in this article.

Adaptation, Psychological

Comparison of actual and recommended ENT endoscope disinfection practices, by geographical regions in the United States.

Endoscopy of the aerodigestive tract, a commonly performed procedure in ENT practice, is not without risk of disease transmission. Review of the nursing literature reveals concern regarding endoscopy of the GI tract, but little has been published regarding disease transmission from ENT endoscopy. The ENT nursing literature does not offer specific practice guidelines for high level disinfection (HLD) of ENT endoscopes. This lack of practice guidelines and recognized confusion regarding clinical practice led to the need for a national survey of ENT nurses to examine what reprocessing practices are being performed. Questionnaires were sent to 150 nurse members of the Society of Otorhinolaryngology-Head and Neck Nurses (SOHN) to gather information about actual endoscope cleaning practices and whether there were any regional differences. Eighty completed forms were returned. The results were tabulated and compared to the AORN recommended method of achieving HLD by glutaraldehyde soak. Results indicate SOHN nurses use a variety of methods to clean and disinfect endoscopes; some nurses use methods not recommended for HLD; results do not demonstrate a universal understanding of the requirements to achieve HLD; regional differences were not obvious; and SOHN nurses may benefit from use of a professionally endorsed disinfection protocol.

Disinfection

Unexplained hepatitis C virus antibody seroconversion in established blood donors.

BACKGROUND: Understanding of the epidemiology and natural history of hepatitis C virus (HCV) infection is incomplete without reference to the early phase of infection. The prevalence of HCV infection is well documented in numerous reports. The seroconversion pattern in previously antibody-negative blood donors provides a model for the study of the incidence and transmission of HCV infection. STUDY DESIGN AND METHODS: Records of HCV antibody tests at the West Midlands Blood Transfusion Centre were reviewed to determine the seroconversion rate in 1994 among previously anti-HCV-negative blood donors. Seroconverting donors were counseled to investigate the possible routes of infection. RESULTS: In 1994, blood donations (n = 256,935) were collected from 149,370 donors; 24 donors (0.016%; 1/6224) were positive in the screening enzyme-linked immunosorbent assay (ELISA) and the third-generation recombinant immunoblot assay (RIBA-3). Two donors previously negative for HCV antibody in ELISA were positive in both tests in 1994. Four donors positive in ELISA and indeterminate in RIBA-3 in 1993 reacted positively in both tests in 1994. One donor negative for HCV antibody on previous screening reacted positively in ELISA and was indeterminate in RIBA-3 in 1994 and has become positive in both tests in 1995. A further 43 donors negative for HCV antibody on previous screening reacted positively in ELISA and were indeterminate in RIBA-3 in 1994. CONCLUSION: Documented seroconversion can take place in the absence of exposure to recognizable risk factors for the infection. The index donation or the donation immediately preceding seroconversion may be positive for HCV RNA in the polymerase chain reaction.

Blood Donors

Inhibition of cysteine proteinases by Carica papaya cystatin produced in Escherichia coli.

A papaya cystatin (Cst)-encoding cDNA clone was isolated from a papaya leaf cDNA library and the active protein produced in Escherichia coli. The amino-acid sequence reveals a protein of 11,262 Da with over 40% identity to other published plant Cst. Unique features of the papaya Cst include a single Cys residue, variation in the papain-binding region, and the first reported inhibition of papaya proteinase IV by a Cst.

Base Sequence

Comparison of experimental and theoretical parameters of the Moolgavkar-Venzon-Knudson incidence function for the stages of initiation and promotion in rat hepatocarcinogenesis.

Mathematical descriptions of complex biological phenomena, such as cancer, require an experimental format that faithfully recapitulates the biological process. In addition, the biological process must dictate the parameters in the mathematical formula. Evidence from the epidemiology of several human cancers and from experimental carcinogenesis in several organ systems indicates that cancer is a multistage process. The initiation-promotion-progression format of experimental carcinogenesis mimics the development of cancer in humans and other animals. In rats, the altered hepatic focus model of hepatocarcinogenesis has been well characterized and, coupled with the method of quantitative stereology, permits accurate determination of the number and the volume fraction of such altered foci per liver. The placental isozyme of glutathione S-transferase (PGST) is reportedly the best single marker of preneoplasia in the rat liver. Recently, single hepatocytes expressing PGST have been proposed as putatively initiated cells. Quantitation of individual hepatic cells and altered hepatic foci expressing PGST in the livers of rats subjected to an initiation-promotion protocol permits determination of the congruence of the Moolgavkar-Venzon-Knudson (MVK) model with experimental data. The best fit of the MVK model for the preneoplastic stages of hepatocarcinogenesis assumes that all hepatocytes are susceptible and that single hepatocytes expressing PGST are the initiated cell population for the focal lesions that express PGST. Further refinement of the initiation-promotion-progression model to permit accurate quantitation of early malignant conversion should allow a more complete analysis of the congruence of the MVK model for human cancer risk determination. In addition, the MVK model may be extended to other model systems and to human cancers in which early preneoplasia can be quantitated. Furthermore, the use of a more biologically based risk-assessment protocol, such as the MVK model rather than the stochastic one-hit model presently used, would permit incorporation of the present knowledge on the pathogenesis of cancer. To apply experimental data to a mathematical model that reflects the biological processes underlying human cancer development will require integration of the cell kinetics and experimental data to a mathematical model that reflects the biological processes underlying human cancer development including the pharmacokinetic and pharmacodynamic properties of the treatment chemicals.

Animals

Enzymatic synthesis and purification of uridine diphosphate [14C]galacturonic acid: a substrate for pectin biosynthesis.

Pectins are complex polysaccharides that contain 1,4-linked alpha-D-galactosyluronic acid residues found in the primary wall of all higher plant cells. The pectic polysaccharides play critical roles in cell wall structure and in plant growth and development. As a first step in studying pectin biosynthesis a method was developed to routinely generate and purify UDP-[U-14C]galacturonic acid (UDP-[14C]GalA), the nucleotide sugar substrate for homogalacturonan biosynthesis. UDP-[14C]GalA was enzymatically synthesized by 4-epimerization of commercially available UDP-[U-14C]glucuronic acid (UDP-[14C]GlcA) using a particulate preparation from radish roots. The resulting mixture of UDP-[14C]GalA and UDP-[14C]GlcA was separated by high-performance anion-exchange chromatography using a Dionex CarboPac PA1 anion-exchange column. The UDP-sugars were detected by their absorbance at 262 nm or by pulsed amperometric detection following postcolumn addition of NaOH. The yield of UDP-[14C]GalA obtained using this procedure was 16% of the starting UDP-[14C]GlcA. Establishment of a reliable method to synthesize and purify UDP-[14C]GalA will facilitate the identification and purification of the galacturonosyltransferase(s) involved in pectin biosynthesis.

Anions

Effects of K+ on the binding of Ca2+ to the Ca(2+)-ATPase of sarcoplasmic reticulum.

Equilibrium and kinetic fluorescence methods have been used to characterize the interactions between K+ and the Ca(2+)-ATPase of skeletal-muscle sarcoplasmic reticulum. K+ shifts the E2-E1 equilibrium of the ATPase towards E1 and increases the rate of Ca2+ binding to the ATPase, as detected by changes in tryptophan fluorescence intensity, suggesting that K+ increases the rate of the E2-E1 transition. The data are consistent with binding of K+ at the inner Ca(2+)-binding site on the ATPase in competition with H+ and Mg2+, with a higher affinity in the E1 than in the E2 conformation. K+ has no effect on the affinity for Mg2+, as detected by changes in tryptophan fluorescence intensity; since it has been proposed that the changes in tryptophan fluorescence follow from binding to Mg2+ at the outer Ca(2+)-binding site, this suggests that K+ is unable to bind at the outer Ca(2+)-binding site. K+ increases the rate of dissociation of Ca2+ from the Ca(2+)-bound ATPase and reduces the effect of Mg2+ on the fluorescence intensity of the ATPase labelled with 4-(bromomethyl)-6,7-dimethoxycoumarin. It is suggested that these effects of K+ are the result of binding at a 'gating' site on the ATPase, in competition with binding of H+. Binding of K+ at the inner Ca(2+)-binding site and at the gating site account for the observed effects of K+ on the affinity of the ATPase for Ca2+.

Animals

Serotonin and alcohol-related brain damage.

Preliminary results from the immunohistochemical examination of the brainstems of chronic alcoholics, suggest that alcohol may have a role in damage to the principal serotonergic (5HT) nuclei. This view is reinforced by evidence from previous animal experiments which demonstrated a reduction in 5HT neurons in the brains of alcohol-preferring rats and selective neurotoxicity to 5HT neurons following 5,6-dihydroxytryptamine-induced increased ethanol intake. It is speculated that, like other neurotoxins, alcohol or its metabolites cause degeneration of 5HT axons and axon terminals. It is possible that if axonal damage is sufficiently severe and chronic, the eventual consequence is cell death. This could be due to insufficient opportunity for repair and regrowth under repeated and sustained insults of high alcohol consumption.

5,6-Dihydroxytryptamine