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Biomedical subjects

A Beall

Publications and source records attributed to A Beall.

At least 19 recordsLinked to original sources

Epidemiological features of a newly described serotype of Shigella boydii.

We report the clinical, microbiological, and epidemiological features of an emerging serotype, Shigella boydii 20. We interviewed patients about symptoms, and history of travel and visitors during the week before illness onset. Seventy-five per cent of the 56 patients were Hispanic. During the week before illness onset, 18 (32%) travelled abroad; 17 (94%) had visited Mexico. Eight (21%) out of 38 who had not travelled had foreign visitors. There were eight closely related patterns by PFGE with XbaI. S. boydii 20 may be related to travel to Mexico and Hispanic ethnicity. Prompt epidemiological investigation of clusters of S. boydii 20 infection may help identify specific vehicles and risk factors for infection.

Adolescent↗

Cellular stress inhibits vascular smooth muscle relaxation.

PURPOSE: Cellular stress has been shown to induce a group of proteins called heat shock proteins (HSPs). Recent evidence suggests that a group of small HSPs may modulate vascular smooth muscle contraction (HSP27) and/or relaxation (HSP20). In this investigation, we hypothesized that cellular stress would alter contraction and/or relaxation of intact vascular smooth muscles and would lead to changes in the induction and/or phosphorylation of the small HSPs. METHODS: Bovine carotid arteries were obtained from an abattoir, and physiologic contractile responses were determined in a muscle bath. Phosphorylation state-specific antibodies were produced and characterized against HSP27. Phosphorylation events were determined with phosphorylation state-specific antibodies or whole-cell phosphorylation and two-dimensional gel electrophoresis. RESULTS: Cellular stress induced by arsenite or heat shock did not alter basal tone or the magnitude of contractions induced by serotonin or high extracellular potassium chloride. However, cellular stress led to inhibition of forskolin and sodium nitroprusside-induced vasorelaxation. This impaired vasorelaxation was associated with increases in the phosphorylation of HSP27 and decreases in forskolin-induced phosphorylation of HSP20. CONCLUSION: Cellular stress, which leads to increases in the phosphorylation of HSP27, inhibits cyclic nucleotide-dependent vascular relaxation and cyclic nucleotide-dependent increases in the phosphorylation of HSP20.

Animals↗

Vascular smooth muscle mechanics in isolated perfused segments of carotid arteries.

BACKGROUND: We hypothesized that smooth muscle contraction and relaxation responses in a muscle bath (isometric tension) would be different than responses of intact vessels (isotonic tension). METHODS: Bovine carotid artery contractile responses to the catecholamine, norepinephrine, and smooth muscle relaxant, 3-isobutyl-1-methylxanthine, were examined in strips of vessels in a muscle bath and in intact whole vessels in an isolated perfused whole-vessel perfusion apparatus. RESULTS: The maximal tension in the muscle bath depended on the length of the strip. The responses of whole vessels to increasing pressure was curvilinear. The maximal decrease in vessel diameter in intact vessels in response to the catecholamine and norepinephrine occurred at low intraluminal pressures. The dose-response curve to norepinephrine was shifted to the left in intact vessels compared with strips of vessels in the muscle bath, which suggests that whole vessels were more sensitive to norepinephrine. The maximal increase in diameter to increasing intraluminal pressure occurred in the presence of the phosphodiesterase inhibitor, 3-isobutyl-1-methylxanthine, which suggests that there was significant intrinsic tone in the vascular smooth muscle. CONCLUSIONS: These results suggest that there are differences in the contractile properties of the vascular smooth muscle that are related to the ex vivo system used to examine smooth muscle responses. Responses obtained in isolated perfused whole vessels may more closely approximate in vivo responses.

1-Methyl-3-isobutylxanthine↗

The small heat shock-related protein, HSP20, is phosphorylated on serine 16 during cyclic nucleotide-dependent relaxation.

The small heat shock-related protein 20 (HSP20) is present in four isoforms in bovine carotid artery smooth muscles. Three of the isoforms are phosphorylated and one is not. Increases in the phosphorylation of two isoforms of HSP20 (isoform 3, pI 5.9; and 8, pI 5.7) are associated with cyclic nucleotide-dependent relaxation of bovine carotid artery smooth muscles. Increases in the phosphorylation of another isoform (isoform 4, pI 6.0) are associated with phorbol ester-induced contraction of bovine carotid artery smooth muscles. In this investigation we determined that isoforms 3 and 8 are phosphorylated on Ser16 of the HSP20 molecule during activation of cAMP-dependent signaling pathways. Phosphorylation state-specific antibodies produced against a peptide containing phosphorylated Ser16 recognized isoforms 3 and 8 but not isoform 4. In human vascular tissue, only isoform 3 is present. Incubation of transiently permeabilized strips of bovine carotid artery smooth muscle with synthetic peptides in which Ser16 is phosphorylated, inhibits contractile responses to high extracellular KCl and to serotonin. These data suggest that phosphorylation of HSP20 on Ser16 modulates cAMP-dependent vasorelaxation.

Amino Acid Sequence↗

Cyclosporine-induced renal artery smooth muscle contraction is associated with increases in the phosphorylation of specific contractile regulatory proteins.

Cyclosporine A (CSA) is a type 2B phosphatase inhibitor which can induce contraction of renal artery smooth muscle. In this investigation, we examined the phosphorylation events associated with CSA-induced contraction of bovine renal artery smooth muscle. Contractile responses were determined in a muscle bath and the corresponding phosphorylation events were determined with whole cell phosphorylation and two-dimensional gel electrophoresis. CSA-induced contractions were associated with increases in the phosphorylation of the 20 kDa myosin light chains (MLC20) and different isoforms of the small heat shock protein, HSP27. Cyclic nucleotide-dependent relaxation of CSA-induced contractions was associated with increases in the phosphorylation of another small heat shock protein, HSP20, and decreases in the phosphorylation of the MLC20, and some isoforms of HSP27. These data suggest that CSA-induced contraction and relaxation of vascular smooth muscle is associated with increases in the phosphorylation of specific contractile regulatory proteins.

Animals↗

Endothelial-dependent vasodilation is associated with increases in the phosphorylation of a small heat shock protein (HSP20).

PURPOSE: Increases in the phosphorylation of a small heat shock protein (HSP20) are associated with cyclic nucleotide-dependent vasorelaxation. The effect of pressure and flow on vessel diameter was studied. We hypothesized that physiologic conditions that induce vasorelaxation would lead to increases in HSP20 phosphorylation. METHODS: Flow-dependent changes in vessel diameter, at different intraluminal pressures, were measured with a laser optical micrometer in intact bovine carotid arteries. Experiments were performed in the presence and absence of norepinephrine (10(-5) mol/L). Increases in the phosphorylation of HSP20 were determined with isoelectric focusing immunoblots. RESULTS: The increase in vessel diameter was most significant at low intraluminal pressures (20 mm Hg), high flow rates (200 mL/min), and in the presence of the vasoconstrictor norepinephrine (10(-5) mol/L). The addition of methylene blue (a guanylate cyclase inhibitor) completely inhibited flow-induced vasodilation. Under conditions in which maximal flow induced vasodilation occurred, there were significant increases in the phosphorylation of HSP20. CONCLUSION: Flow-dependent vasodilation in isolated perfused segments of bovine carotid arteries was maximal when the intraluminal pressures were low and when the vessels were precontracted with norepinephrine. Flow-dependent vasodilation was inhibited by methylene blue and was associated with increases in the phosphorylation of HSP20, suggesting that the vasodilation was mediated by endothelial production of nitric oxide.

Animals↗

Phosphorylation events associated with cyclic nucleotide-dependent inhibition of smooth muscle contraction.

Activation of cyclic nucleotide-dependent signaling pathways leads to relaxation of bovine carotid artery smooth muscle contractions and is associated with increased phosphorylation of the small heat shock-related protein (HSP20). Previous reports have shown that human umbilical artery smooth muscle is uniquely resistant to cyclic nucleotide-dependent relaxation, and HSP20 is not phosphorylated. In this investigation, we determined the phosphorylation events associated with cyclic nucleotide-dependent inhibition of smooth muscle contraction. In carotid artery, activation of cyclic nucleotide-dependent signaling pathways inhibited contractile responses to serotonin but did not inhibit myosin light chain phosphorylation or oxygen consumption. The inhibition of contraction was associated with increases in HSP20 phosphorylation. In umbilical artery, activation of cyclic nucleotide-dependent signaling pathways did not inhibit serotonin-induced contraction or myosin light chain phosphorylation. The lack of contractile inhibition in umbilical artery was not associated with significant increases in HSP20 phosphorylation. In conclusion, cyclic nucleotide-dependent contractile inhibition is independent of the inhibition of myosin light chain phosphorylation or oxygen consumption but does correlate with increased HSP20 phosphorylation.

Animals↗

Thrombin activates MAPKAP2 kinase in vascular smooth muscle.

PURPOSE: Thrombin mediates hemostasis by promoting thrombus development and vasospasm, which reduces the size of the arterial injury. Thrombin stimulation of vascular smooth muscle is associated with activation of mitogen-associated protein kinase. The purpose of this investigation was to determine the subsequent cellular signaling events in thrombin-stimulated vascular smooth muscle contraction. METHODS: Contractile responses of bovine carotid artery smooth muscle were determined in a muscle bath and compared with phosphorylation events with two-dimensional gel electrophoresis. The activity of a novel kinase, mitogen-activated protein kinase-activated protein-2 kinase (MAPKAP2 kinase), was determined by immunoprecipitation and a phosphotransferase assay. A small heat shock protein, HSP27, was identified with immunoblotting. RESULTS: Thrombin induces contraction of vascular smooth muscle and is associated with increased activity of MAPKAP2 kinase and increased phosphorylation of HSP27. Multiple isoforms of HSP27 are the predominant phosphoproteins in vascular smooth muscle, and peptide mapping suggests that the isoforms of HSP27 are structurally related and phosphorylated within similar peptide sequences. CONCLUSIONS: Activation of the MAPKAP2 kinase pathway and phosphorylation of HSP27 are associated with thrombin-induced contraction of vascular smooth muscle.

Animals↗

Heat shock protein expression in umbilical artery smooth muscle.

Postpartum vasospasm in the umbilical arteries may be due to impaired vasorelaxation secondary to alterations in the expression of heat shock proteins. The contractile responses of pre- and full-term bovine umbilical artery smooth muscles were determined in a muscle bath. Heat shock protein expression was determined in bovine and human arterial tissues using western blotting with specific antisera. Full-term bovine and human umbilical artery smooth muscle was refractory to relaxation induced by the nitric oxide donor, sodium nitroprusside. This impaired vasorelaxation was associated with the expression of the inducible form of the heat shock protein, HSP70i, and increases in the expression of the small heat shock protein, HSP27. Small heat shock proteins have been implicated in modulating contraction and relaxation responses in vascular smooth muscles. Thus, alterations in heat shock protein expression may play a role in umbilical artery vasospasm.

Analysis of Variance↗

Thrombin-induced vasospasm: cellular signaling mechanisms.

BACKGROUND: In the setting of arterial injury, thrombin contributes to the hemostatic process by activating the coagulation cascade and platelets. We hypothesized that thrombin also contributes to hemostasis by inducing vasospasm. The purpose of this investigation was to characterize the cellular signaling mechanisms that modulate thrombin-induced vascular smooth muscle contractions. METHODS: Contractile responses of intact bovine carotid artery smooth muscles were determined in a muscle bath. Contractile responses were correlated with phosphorylation events as determined with whole cell phosphorylation and two-dimensional gel electrophoresis and with immunoblotting of glycerol-urea or two-dimensional gels. RESULTS: Thrombin (1 to 1000 units/ml) induced sustained vascular smooth muscle contractions of similar magnitude as the potent contractile agonist, endothelin. Thrombin-induced contractions were associated with increases in the phosphorylation of the myosin light chains (MLC20) and in the tyrosine phosphorylation of mitogen-activated protein kinase. CONCLUSIONS: These data suggest that thrombin is a potent physiologic contractile agonist that may modulate some forms of vasospasm. Thrombin-induced contractions are associated with the activation of two cellular signaling pathways, the myosin light chain kinase and the mitogen-activated protein kinase pathways.

Animals↗

Cyclosporine, but not FK506, selectively induces renal and coronary artery smooth muscle contraction.

BACKGROUND: Cyclosporine immunosuppression for organ transplantation is associated with hypertension and nephrotoxicity. Because the effects of cyclosporine as an immunosuppressant are mediated by the effect of cyclosporine as a phosphatase inhibitor, and phosphatase inhibitors are potent vascular smooth muscle contractile agents, we hypothesized that cyclosporine might induce contraction of the renal artery vascular smooth muscle directly. METHODS: Strips of bovine renal, carotid, superior mesenteric, or coronary arteries were obtained fresh from an abattoir. The strips were equilibrated in a muscle bath, and the contractile responses to cyclosporine and FK506 were determined. RESULTS: Cyclosporine (50 to 5000 micrograms/ml), but not FK506, induced rapidly developing, sustained contractions of renal and coronary artery smooth muscle. The magnitude of the cyclosporine-induced contractions of carotid and superior mesenteric artery smooth muscles was significantly less. The magnitude of renal artery smooth muscle contractions induced by cyclosporine was enhanced in the presence of an intact endothelium. CONCLUSIONS: Although these effects occurred in vitro to relatively high doses of cyclosporine, these data suggest that cyclosporine may selectively induce renal artery smooth muscle contraction through activation of the Ca(2+)-dependent phosphatase (calcineurin) in the smooth muscle, and these contractions may be enhanced by the release of endothelial-derived contracting factors.

Animals↗

The impact of balloon embolectomy on the function and morphology of the endothelium.

PURPOSE: Intravascular interventions such as balloon embolectomy lead to endothelial injury. The extent and functional consequences of this endothelial injury are not known. METHODS: Segments of bovine carotid artery were equilibrated in a vasomotor perfusion apparatus (VPA). Smooth muscle function was determined by the contractile responses to 10(-5) M norepinephrine (NE). Endothelial function was evaluated by the extent of vasorelaxation to the subsequent addition of 10(-5) M acetylcholine (ACh). To determine the pattern of injury throughout the length of the vessel, strips of artery from along the vessel length were also evaluated in a muscle bath. Morphology was examined by scanning electron microscopy (SEM). RESULTS: No significant differences were noted in the contractile response to NE after embolectomy. Balloon embolectomy significantly decreased the relaxation response to ACh from 97 +/- 1% before embolectomy to 89 +/- 1% after embolectomy (n = 5 vessels, P < 0.01, ANOVA). In the muscle bath, the vasorelaxation of strips precontracted with NE was variable throughout the length of the vessel suggesting that endothelial injury was diffuse. The relaxation response to ACh was inhibited by L-NMMA. SEM revealed patchy areas of endothelial denudation. CONCLUSION: Embolectomy produces no change in smooth muscle function and partial injury to the endothelium in intact vessels. However, there remains sufficient endothelial function after balloon embolectomy to produce NO-dependent vasorelaxation and modulate vasomotor tone.

Acetylcholine↗

Cellular mechanisms of cyclic nucleotide-induced vasorelaxation.

PURPOSE: Endothelial-derived vasorelaxants such as prostacyclin and nitric oxide (NO) induce vascular smooth muscle relaxation through activation of cyclic nucleotide-dependent cellular signalling pathways. However, the specific events that lead to dissociation of actin and myosin and relaxation are not known. The purpose of this investigation was to determine the late phase signaling events that modulate vascular smooth muscle relaxation. METHODS: Fresh bovine carotid artery smooth muscle (BCASM) contractile responses were determined in a muscle bath under Ca(2+)-containing and Ca(2+)-free conditions. Physiologic responses were correlated with phosphorylation events using whole cell phosphorylation and two-dimensional gel electrophoresis. RESULTS: Cyclic nucleotide-dependent vasorelaxation can occur without detectable changes in intracellular Ca2+ concentrations. However, vascular smooth muscles that had been precontracted with the phosphatase inhibitor calyculin were refractory to relaxation. Vascular smooth muscle relaxation was associated with an increase in the phosphorylation of two 20 kDa proteins under Ca(2+)-containing and Ca(2+)-free conditions. CONCLUSIONS: These results suggest that Ca(2+)-independent mechanisms may also modulate vascular smooth muscle relaxation. Two possible late phase signaling mechanisms include phosphatase activation and an increase in the phosphorylation of two 20 kDa phosphoproteins.

Animals↗

Small heat shock proteins and vasospasm in human umbilical artery smooth muscle.

Human umbilical artery smooth muscle is uniquely refractory to cyclic nucleotide-dependent vasorelaxation. Small heat shock proteins (HSPs) have been implicated as contractile regulatory proteins. Thus, we hypothesized that alterations in the phosphorylation of small HSPs may contribute to human umbilical artery smooth muscle vasospasm. Physiologic contractile responses were determined in a muscle bath and compared with phosphorylation events determined with whole-cell phosphorylation and 2-dimensional gel electrophoresis. Precontraction of bovine carotid artery smooth muscle with serotonin followed by relaxation with forskolin was associated with increases in the phosphorylation of HSP27 and HSP20. Precontraction of umbilical artery with serotonin followed by forskolin treatment led to increases in the phosphorylation of HSP27. However, the umbilical artery smooth muscle did not relax, nor was there an increase in the phosphorylation of HSP20 with forskolin treatment. These data suggest that impaired cyclic nucleotide-dependent relaxation of umbilical artery smooth muscle is associated with a lack of phosphorylation of HSP20.

Colforsin↗

Toxic axonal degeneration occurs independent of neurofilament accumulation.

Alteration of neurofilament (NF) proteins is considered a critical component and a causative factor for a number of neuropathologies, especially certain neurotoxicities. Correlative observations have supported this hypothesis; the current study tests this relationship by exposure of neurotoxicants to crayfish, a species lacking NFs. Morphological and immunological tests verified the absence of NFs in crayfish peripheral nerve axons. Tail injections of acrylamide (ACR), 2,5-hexanedione (2,5-HD), or 3,4-dimethyl-2,5-HD (3,4-DMHD) produced ataxia and paralysis. Morphological expression of axonal degeneration in a spatial and temporal pattern of progression comparable to mammalian species possessing NFs was observed. With gamma-diketones, time to onset was slower than observed in mammals but relative potency between neurotoxic analogues was maintained. Non-neurotoxic analogues failed to produce any functional signs of neurotoxicity. These data are consistent with the conclusion that NF accumulations are not cause-effect related to axonal degeneration in these models of neurotoxicity and raise questions as to the relationship between accumulation of NF proteins and axonal degeneration in other neuropathological conditions.

Acrylamides↗