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L Bolis

Publications and source records attributed to L Bolis.

At least 19 recordsLinked to original sources

Activation of the JAK/STAT pathway leads to proliferation of ST14A central nervous system progenitor cells.

We were interested in whether central nervous system progenitor cells possess the signal transduction machinery necessary to mediate cytokine functions and whether this machinery can become activated upon stable expression of a particular cytokine receptor. For this purpose we utilized a previously obtained conditionally immortalized striatum-derived nestin-positive cell line (ST14A). We found that ST14A cells express Jak2, but not Jak1 or Tyk2. An identical pattern of expression was found in embryonic striatal tissue. To evaluate the susceptibility of these cytokine specific cytoplasmic transducers to activation, ST14A cells were stably transfected with the alpha and beta (AIC2A) chains of the murine interleukin-3 receptor. Four independent lines expressing both the alpha and beta receptor subunits were obtained. We found that cells from each of these lines were induced to proliferate upon exposure to interleukin-3. Dose response curve, antibody blocking experiments and binding studies revealed that the response was mediated by the reconstituted high affinity interleukin-3 receptor. Immunoprecipitation studies on these cells showed that Jak2 and Stat5 were being phosphorylated after stimulation of the reconstituted receptor. These results indicate that members of the JAK/STAT family of proteins are expressed in central nervous system progenitor cells and are susceptible to activation through stimulation of an exogenously expressed cytokine receptor, ultimately leading to cell proliferation.

Biomarkers↗

Calcium induced potassium efflux in erythrocytes of marine teleosts.

The effect of the calcium-ionophore A23187+ Ca++ on the K+ transport in the intact erythrocytes of sea-water fishes was investigated. A23187+ Ca++ induced a significant increase in the cell-membrane permeability for potassium ion, while A23187+ Mg++ was ineffective. Addition of EGTA to the medium blocked the ionophore+ Ca++ effect. Quinidine inhibited the A23187+ Ca++-induced K+ transport in the nucleated fish red cell. Propranolol is effective in the fish RBC in presence of Ca++ and EGTA. The relationship of the calcium-induced alkali cation transport in nucleated red cell to that in human red cell is discussed.

Animals↗

Calcitonin, a major gill hormone.

Isolated salmon gills, under simulated in vivo conditions, transported calcium ion into the ambient seawater when perfused with Ringer's solution containing salmon calcitonin. Similar enhancement of phosphate efflux was observed. Calcitonin caused simultaneous decreases in perfusate flow rates. The effects act synergistically to diminish net plasma calcium concentrations.

Animals↗

Calcitonin: Its hormonal action on the gill.

When isolated salmon gills were perfused under simulated in vivo conditions, norepinephrine increased and calcitonin decreased the rate of flow of perfusate and the influx of calcium and phosphate through the gill. Only the increased water flow was mediated by beta-adrenergic receptors. Differences in sensitivity to both hormones were observed with gills from prespawning and postspawning salmon; gills from freshwater-adapted fish were less sensitive to norepinephrine and more sensitive to calcitonin, suggesting a decreased production of this hormone in the late stage of the life cycle. The antagonistic effects of calcitonin and norepinephrine on the gill strongly implicate their regulatory role for calcium homeostasis in vivo; the major process being regulated is the influx of calcium into the gill. In fish, calcitonin performs an important role in regulating gill function.

Journal Article↗