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Biomedical subjects

H Rasmussen

Publications and source records attributed to H Rasmussen.

At least 181 records · Page 10Linked to original sources

TPA-induced contraction of isolated rabbit vascular smooth muscle.

Myosin light chain phosphorylation may not regulate the sustained phase of vascular smooth muscle contraction. Another, unidentified, calcium-dependent pathway may be involved in this process. TPA, an activator of C-kinase, at concentrations of 10 to 333 nM induces a calcium-dependent contraction of vascular smooth muscle which develops slowly but progressively to reach values of 50-300 mm Hg. Arteries exposed to the ionophore A23187, in a calcium-free medium, display a uniform series of contractile responses when exposed to 1.5 mM Ca2+ for 2 min once every 10 min. Exposure to 100 nM TPA as well as ionophore leads to a progressive enhancement of these calcium-induced, contractile responses. Arteries stimulated by brief (10 sec), repetitive (every 3 min) electrical pulses, respond with a series of comparable phase 1 responses. Prior exposure of vessels to 10 nM TPA, causes a progressive increase in the magnitude of these responses to repetitive electrical stimulation. Addition of 25 microM forskolin, an activator of adenylate cyclase, to TPA-treated, partially-contracted muscle leads to the immediate inhibition of the TPA-induced contraction. These data suggest that the activation of C-kinase plays a significant role in regulating vascular smooth muscle contraction.

Animals↗

Identification of a novel hepatic calcium binding protein.

Calcium binding activity in the 100,000 X g supernatant of bovine liver has been isolated by a procedure involving DEAE cellulose and Sephadex G-100 chromatography. In addition to calmodulin, two new high affinity calcium binding proteins have been identified. On gel filtration chromatography these proteins migrate with apparent molecular weights of 83,700 and 51,400; whereas by sodium dodecyl sulfate polyacrylamide gel electrophoresis, the two proteins migrate identically with Mr 63,000. In the presence of millimolar Mg2+, both proteins bind up to one mol Ca2+/mol protein. Half-maximal binding occurs at approximately 0.1 microM Ca2+. Amino acid compositional analysis reveals that both proteins are acidic, and contain about 40% glx and asx. Peptide mapping procedures suggest that these proteins may be highly homologous or multiple forms of a single protein. The results show the existence of calcium binding protein(s) other than calmodulin in hepatic cytosol.

Amino Acids↗

Insulin secretion: combined tolbutamide, forskolin and TPA mimic action of glucose.

We have proposed that the two phases of glucose-induced insulin secretion are regulated by two distinct branches of the calcium messenger system: the initial phase by a calmodulin branch, and the sustained phase by a C-kinase branch. To provide further support for this concept, we examined the separate and combined effects of tolbutamide, TPA, and forskolin upon insulin secretion from rat islets perifused in the absence of added fuels. Addition of 200 microM tolbutamide to the perfusate induces only a first phase of insulin secretion, addition of 200 nM TPA only a second phase, and addition of 10 microM forskolin only a small elevation in the basal rate of secretion. The combination of tolbutamide and TPA induces a biphasic secretory response qualitatively and quantitatively similar to that evoked by an increase in glucose concentration from 2.75 to 7 mM. The combination of TPA, tolbutamide, and forskolin evokes a biphasic pattern of insulin secretion qualitatively and quantitatively similar to that evoked by an increase in glucose concentration from 2.75 to 10 mM.

Animals↗

Dihydropyridine calcium agonist and antagonist effects on aldosterone secretion.

The effects of the dihydropyridine calcium antagonists nimodipine, nitrendipine, and nisoldipine were studied on K+-induced and angiotensin II (ANG II)-induced aldosterone secretion from isolated calf adrenal glomerulosa cells. These drugs were more effective inhibitors of K+-induced secretion than ANG II-induced secretion. However, when the ANG II-induced release of intracellular calcium was blocked by prior treatment of cells with dantrolene, then nitrendipine was equally as effective in blocking ANG II- as K+-induced secretion. On the other hand, the dihydropyridine agonist, BAY K8644, was found to enhance K+-induced secretion to a greater extent than ANG II-induced secretion when the latter was studied in either the absence or presence of dantrolene. It is concluded that K+ and ANG II mobilize calcium from different sources for stimulus-response coupling in these cells and that there is no difference in the sensitivity to nitrendipine of the plasma membrane calcium channels operated by these two different agonists.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Some recent pharmacological findings with nitrendipine.

The available evidence indicates that nitrendipine and other dihydropyridines with a similar pharmacological action exert their therapeutic effects by inhibiting Ca2+ channels. In our recent experiments, nitrendipine was shown to block K+-stimulated 45Ca2+ uptake and K+-induced contractions of isolated rabbit aortic rings. Its IC50 were 4.7 and 8.9 nM for inhibition of Ca2+ uptake and of contractions, respectively. There was no statistically significant difference between the two values. At higher concentrations, nitrendipine also reduced norepinephrine-induced 45Ca2+ uptake and norepinephrine-induced contractions of rabbit aortic strips. The norepinephrine-induced contractions were only slightly (21%) reduced by nitrendipine at 10 microM. Nitrendipine at 10 nM and higher concentrations inhibited K+- or angiotensin-II-(AII) induced release of aldosterone from isolated bovine adrenal glomerulosa cells. The drug was more potent and more effective in inhibiting K+- than AII-induced aldosterone release. Dantrolene, 25 microM, enhanced the inhibitory activity of nitrendipine on AII-stimulated aldosterone release. Acute renal failure produced by either glycerol or gentamicin in rats was antagonized by nitrendipine at oral doses of 15-25 mg/kg/day. Our studies confirmed previously reported observations that the usefulness of nitrendipine in the treatment of hypertension may be determined not only by its vasodilator action. We demonstrated that nitrendipine has a direct inhibitory effect on the release of aldosterone from adrenal glomerular cells. In addition to a previously described diuretic action, nitrendipine was shown to have renal cytoprotective activity.

Acute Kidney Injury↗

Calcium as intracellular messenger: sensitivity modulation, C-kinase pathway, and sustained cellular response.

A model of information flow in the calcium messenger system is presented. When Ca2+ serves as an intracellular messenger in cells exhibiting a sustained response to an extracellular messenger, there are two branches by which information flows from cell surface to cell interior: One operates via amplitude modulation of calmodulin-regulated reactions and the other via sensitivity modulation of the calcium-sensitive, phospholipid-dependent protein kinase, C-kinase. It is postulated that the calmodulin branch is largely responsible for initiating, and the C-kinase branch for sustaining, cellular response in cells displaying sustained responses. The role of the C-kinase branch in the calcium messenger system provides a type of gain control in the process of cell activation. It is but one element of several which provides a considerable degree of plasticity in the operation of this cellular control system. Both cAMP and the biologically active intermediates of arachidonic acid metabolism--prostaglandins, thromboxanes, prostacyclin, and leukotrienes--provide additional inputs into this messenger system and a means of extending its adaptability to specific control needs. In particular, in some cell types it is possible that the cAMP messenger system provides the means of achieving gain control in the calcium messenger system either as an alternative to the C-kinase branch of the calcium messenger system or as a supplemental pathway to it.

Animals↗

Insulin secretion: combined effects of phorbol ester and A23187.

The effect of the ionophore, A23187, and/or the phorbol ester, 12-O-tetradecanoyl-phorbol-13-acetate (TPA), on insulin secretion were compared with those of glucose. Glucose induces a biphasic pattern of insulin secretion; A23187 a comparable initial spike but no second phase; and TPA a slowly progressive increase. Combined A23187 and TPA evoke a pattern similar to that induced by glucose. Forskolin enhances both phases of glucose- induced and of TPA-A23187-induced insulin secretion. These results are interpreted in terms of a model of cell activation in which two branches of the calcium messenger system, the calmodulin branch and the C-kinase branch, control, respectively, the initial and sustained phases of insulin secretion.

Animals↗

Identification of novel calcium binding proteins of heart and brain 100,000 x g supernatant.

The chelex competitive calcium binding assay has been used to assay the calcium binding activity of the 100,000 X g supernatant of bovine heart and brain. Chromatography of brain 100,000 X g supernatant on diethylamino-ethyl (DEAE) cellulose reveals the presence of two peaks of calcium binding activity, peak I eluting at about 0.05 M NaCl and peak II at about 0.18 M NaCl. Chromatography of peak I on Sephadex G-150 resolves a major and a minor peak of calcium binding activity, at Mr 40,000 and Mr 150,000. Chromatography of peak II (0.18 M NaCl) on Sepharose 6B produces two peaks of calcium binding activity, a broad peak of calcium binding activity composed of two molecular weight species of Mr 230,000 and Mr 420,000, and a sharp peak of calcium binding activity with Mr 75,000. Chromatography of the 100,000 X g supernatant of bovine heart on DEAE Cellulose reveals two peaks of calcium binding activity. Chromatography of the lower ionic strength peak on Sephadex G-150 resolved major and minor peaks of calcium binding activity at Mr 65,000 and 150,000, respectively. The results of this study suggest the presence of several calcium binding proteins, other than calmodulin, in these tissues.

Animals↗

Aldosterone secretion: effect of phorbol ester and A23187.

The effects of the divalent ionophore, A23187, the phorbol ester, and/or 12-0-tetradecanoyl-phorbol-13-acetate on aldosterone secretion from adrenal glomerulosa cells were compared to those of angiotensin II (AII). AII causes a prompt and sustained increase in secretion. A23187 causes an initial increase followed by a gradual decline to values less than 25 percent of those seen with AII. TPA causes no initial increase but a slowly progressive rise in secretion rate to a less than maximal value. When TPA and A23187 act together, there is a prompt and sustained increase in aldosterone production rate similar to that seen after AII addition. The effect of TPA is dependent on the free Ca2+ concentration of the cell cytosol. These results are interpreted in terms of a model of cell activation in which two branches of the calcium messenger system operate to control respectively the initial and sustained phases of the secretory response. The first phase occurs as a consequence of amplitude modulation of the calmodulin branch of the system by a rise in [Ca2+]c, and the second phase as a consequence of the sensitivity modulation of the C-kinase branch by diacylglycerol.

Adrenal Medulla↗

Evidence that the erythrocyte calcium pump catalyzes a Ca2+:nH+ exchange.

Treatment of whole erythrocytes with 4,4'-diisothiocyano-2,2'-disulfonic acid stilbene (DIDS) results in inhibition of ATP and phosphate-dependent Ca2+ transport in subsequently prepared inside-out vesicles (IOV). Accumulation of phosphate into IOV in the presence of Ca2+ is virtually abolished by prior DIDS treatment, consistent with the presumed inhibition of the band III anion-exchange protein by this agent. No inhibition of Ca2+-activatable ATP hydrolysis is observed following DIDS treatment when open membranes are used to prevent development of ion gradients. This indicates that DIDS does not affect the inherent ATPase activity of the calcium pump (Waisman, D. M., Smallwood, J., Lafreniere, D., and Rasmussen, H. (1982) FEBS Lett. 145, 337-340). In IOV prepared from untreated cells, ATP-dependent Ca2+ uptake is stimulated by phosphate, sulfate, or chloride. Rates of Ca2+ uptake into DIDS-IOV are not increased by these anions. Lipid-permeable organic acids such as acetate, however, do promote Ca2+ transport in DIDS-IOV. Lipophilic anions incapable of transporting protons into the vesicle interior (nitrate and thiocyanate) support sustained uptake only when the protonophore carbonyl cyanide p-trifluoromethoxyphenylhydrazone is also added. These results support a model of the (Ca2+-Mg2+)-ATPase as a pump exchanging Ca2+ for protons, not transporting Ca2+ alone. Band III protein appears to promote Ca2+ transport in the presence of phosphate, sulfate, or chloride by exchanging external anion for the accumulating OH- (or HCO3-) produced by the calcium pump.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

The effect of essential fatty acid deficiency on the stimulation of intestinal calcium transport by 1,25-dihydroxyvitamin D3.

The effect of altering the lipid composition of the brush-border membrane on the ability of 1,25-dihydroxyvitamin D3 (1,25-(OH)2D3) to stimulate calcium transport across the intestinal mucosa was examined by raising chicks on a vitamin D, essential fatty acid-deficient diet (-DEFAD) and measuring calcium absorption from duodenal sacs in situ and calcium uptake into brush-border membrane vesicles in vitro. Administration of 1,25-(OH)2D3 to -DEFAD and to -D control chicks led to the same increase in calcium transport in situ, whereas calcium transport in isolated brush-border membrane vesicles was not stimulated in the EFAD group, but responded normally in the control group. When the incubation temperature was increased to 34 degrees C, brush-border membrane vesicles from 1,25-(OH)2D3-treated essential fatty acid-deficient (+DE-FAD) chicks accumulated calcium at a faster rate than did vesicles from -DEFAD chicks. There was a marked decrease in the linoleic acid content and an increase in the oleic acid content of both the total lipid extract of the brush-border membrane as well as the phosphatidylcholine and phosphatidylethanolamine fractions, which could explain the temperature sensitivity of the in vitro system. When the diet of the EFAD chicks was supplemented with linoleic acid, the rate of calcium uptake into subsequently isolated vesicles from +DE-FAD chicks correlated with the amount of linoleic acid in the brush-border membranes. These results support the concept that the action of 1,25-(OH)2D3 on membrane lipid turnover and structure plays a critically important role in the 1,25-(OH)2D3-mediated cellular transport responses.

Animals↗

A reexamination of the chelex competitive calcium binding assay.

The chelex competitive calcium binding assay has been examined as a tool for the analysis of the kinetic parameters of calcium binding substances. Scatchard analysis of calcium binding demonstrates that chelex binds calcium with apparent negative cooperativity or with more than one class of calcium binding sites, and therefore, cannot be used to provide accurate estimations of the dissociation constant or total number of binding sites on an unknown ligand. Results presented in this study indicate that the chelex assay can be effectively used for the qualitative detection of calcium binding substances in tissue extracts or biological fluids.

Animals↗

Angiotensin-mediated calcium efflux from adrenal glomerulosa cells.

The effects of angiotensin II on efflux of radiocalcium and production of aldosterone from dispersed bovine adrenal glomerulosa cells were studied using a flow-through system. Concentrations of angiotensin II between 1.25 X 10(-10) and 1.25 X 10(-8) M were found to stimulate both radiocalcium efflux and the rate of aldosterone production. The increase in radiocalcium efflux occurred within 1.5-2.5 min after angiotensin addition, reached a peak in 3.0-4.5 min, and then declined to a value slightly greater than control. The initial increase in aldosterone production occurred 3-5 min after the peak of calcium efflux. In cells preloaded with [45Ca] and then perfused for 1 h with a medium containing no calcium, the basal rate of aldosterone production fell to zero. Angiotensin II (1.25 X 10(-8) M) caused no increase in aldosterone secretion rate but still caused an efflux of radiocalcium. Exposure of cells to 5 X 10(-5) M verapamil blocked the effect of 1.25 X 10(-10) M angiotensin on both radiocalcium efflux and aldosterone production, but only partially blocked the effects of 1.25 X 10(-8) M angiotensin. In addition to stimulating calcium uptake into adrenal glomerulosa cells, angiotensin II stimulates the mobilization of calcium from an intracellular pool. The precise location of this pool is not known.

Adrenal Glands↗

Cellular calcium metabolism.

Recent developments in our knowledge of cellular calcium metabolism are reviewed. Changes in the Ca2+ concentration in the cell cytosol are a nearly universal means of coupling stimulus with response in both neural and endocrine cells. In particular, Ca2+ serves as an important intracellular messenger in the regulation of cardiac and smooth muscle function, the regulation of aldosterone secretion by K+ and angiotensin II, and the secretion of renin. Several points about the messenger role of Ca2+ are emphasized: small changes in Ca2+ concentration bring about large changes in cell response; the regulation of calcium fluxes across the plasma membrane are critical to proper cell function; and excessive calcium is a cellular toxin. An attempt is made to integrate our knowledge of the function and properties of intracellular Ca2+ receptor proteins with our knowledge of cellular calcium homeostasis, and relate this to the pathogenesis of hypertension.

Calcium↗

Studies of the Ca2+ transport mechanism of human erythrocyte inside-out membrane vesicles. Evidence for the development of a positive interior membrane potential.

Previous observations on the effects of permeant anions on ATP-dependent calcium transport in inside-out vesicles prepared from human erythrocytes suggested that the calcium pump is electrogenic, generating a positive interior membrane potential. The present work demonstrates the development of a positive interior membrane potential across inside-out vesicle membranes during calcium transport in the absence of permeant anions. Several membrane potential probes, 1-anilino-8-naphthalenesulfonate, 3,3'-dipropylthiodicarbocyanine iodide, and an electron paramagnetic resonant triphenylphosphonium derivative, provide qualitative evidence for the development of a membrane potential. Moreover, a number of parallels are observed between the changes in the membrane potential measured by the probes and calcium transport. These include enhancement by calmodulin, time course of change, similar kinetic properties, and the requirement for intact vesicle membranes. Quantitative measurements of the membrane potential shows a positive interior membrane potential of 26-37 mV using radiolabeled permeant anion distribution and 38-57 mV using 3,3'-dipropylthiodicarbocyanine iodide fluorescence changes. These membrane potentials are of a similar magnitude to those reported for the sarcoplasmic reticulum calcium pump (Zimniak, P., and Racker, E. (1978). J. Biol. Chem. 253, 4631-4637).

Anilino Naphthalenesulfonates↗