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	<title>Dr. Long Jun Dai &#187; okadiac acid</title>
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		<title>Modulation of Na+/Ca2+ exchange in epithelial cells of porcine thick ascending limb</title>
		<link>http://jamesdai.com/longjundai/2009/09/modulation-of-naca2exchange-in-epithelial-cells-of-porcine-thick-ascending-limb/</link>
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		<pubDate>Sat, 12 Sep 2009 00:57:00 +0000</pubDate>
		<dc:creator>greedy</dc:creator>
				<category><![CDATA[Nephrology]]></category>
		<category><![CDATA[1996]]></category>
		<category><![CDATA[American Journal of Physiology]]></category>
		<category><![CDATA[calmidazolium]]></category>
		<category><![CDATA[intracellular calcium ion concentration]]></category>
		<category><![CDATA[intracellular sodium ion concentration]]></category>
		<category><![CDATA[microfluorescence]]></category>
		<category><![CDATA[okadiac acid]]></category>
		<category><![CDATA[phosphorylation]]></category>

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		<description><![CDATA[Dai LJ, Ritchie G, Bapty B, Auger V, and Quamme GA:  Modulation of Na+/Ca2+exchange in   epithelial cells of porcine thick ascending limb. American Journal of Physiology 270:F953-F959, 1996. Download paper Abstract Modulation of Nat/ Ca2+ exchange in epithelial cells of porcine thick ascending limb. Am. J. Physiol. 270 (Renal Fluid Electrolyte Physiol. 39): F953-F959, 1996.-We have provided functional and molecular [...]]]></description>
			<content:encoded><![CDATA[<p><a href="http://jamesdai.com/longjundai/">Dai LJ</a>, Ritchie G, Bapty B, Auger V, and Quamme GA:  <em>Modulation of Na<sup>+</sup>/Ca<sup>2+</sup>exchange in   epithelial cells of porcine thick ascending limb. </em> <strong><a href="http://ajpcon.physiology.org/" target="_blank">American Journal of Physiology</a> </strong>270:F953-F959, 1996.</p>
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<p style="text-align: left;"><strong>Abstract</strong> Modulation of Nat/ Ca2+ exchange in epithelial cells of porcine thick ascending limb. Am. J. Physiol. 270 (Renal Fluid Electrolyte Physiol. 39): F953-F959, 1996.-We have provided functional and molecular evidence for the presence of Na+/Ca2+ exchange in isolated porcine cortical thick ascending limb (CTAL) cells. The present studies were designed to show that this exchange activity may be modulated by phosphorylative processes. Control of intracellular Ca2+ concentration ( [Ca2+];) was determined in isolated CTAL cells with microfluorescence. CTAL cells were pretreated with ouabain to elevate intracellular Na+ concentration ([Na+]i) from 10 to 20 mM. These cells had normal basal [Ca2+]; (79 2 3 nM). Substitution of extracellular NaCl (50 mM) with KC1 resulted in the rapid elevation of [Ca2+]; to maximal levels of 795 t 60 nM (n = 17). The increments of [Ca2+]; were associated with [Na+]i. We next determined the modulation of Na+lCa2+ exchange activity with phosphorylative inhibitors. Pretreatment of cells with calmidazolium, a Ca2+- calmodulin inhibitor, resulted in a shift of the [Na+]i dependence curve to the right. Pretreatment with okadaic acid, a phosphatase 1 and 2A inhibitor, increased the Na+/Ca2+ exchanger activity resulting in halfmaximal [Ca2+]; increase near normal [Na+]i of 12 mM. Furthermore, in the presence of okadaic acid in normal CTAL cells, pretreatment with ouabain and the elevation of [Na+]i was not required to elicit increments in [Ca2+];. These data indicate that Na+/Ca2+ exchange is present in CTAL cells and the exchange activity appears to be modulated, directly or indirectly, by phosphorylation events.</p>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">Modulation of Nat/</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">Ca2+ exchange in epithelial cells of porcine thick ascending</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">limb. Am. J. Physiol. 270 (Renal Fluid Electrolyte Physiol.</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">39): F953-F959, 1996.-We have provided functional and</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">molecular evidence for the presence of Na+/Ca2+ exchange in</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">isolated porcine cortical thick ascending limb (CTAL) cells.</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">The present studies were designed to show that this exchange</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">activity may be modulated by phosphorylative processes.</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">Control of intracellular Ca2+ concentration ( [Ca2+];) was</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">determined in isolated CTAL cells with microfluorescence.</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">CTAL cells were pretreated with ouabain to elevate intracellular</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">Na+ concentration ([Na+]i) from 10 to 20 mM. These</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">cells had normal basal [Ca2+]; (79 2 3 nM). Substitution of</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">extracellular NaCl (50 mM) with KC1 resulted in the rapid</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">elevation of [Ca2+]; to maximal levels of 795 t 60 nM (n = 17).</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">The increments of [Ca2+]; were associated with [Na+]i. We</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">next determined the modulation of Na+lCa2+ exchange activity</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">with phosphorylative inhibitors. Pretreatment of cells</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">with calmidazolium, a Ca2+- calmodulin inhibitor, resulted in</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">a shift of the [Na+]i dependence curve to the right. Pretreatment</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">with okadaic acid, a phosphatase 1 and 2A inhibitor,</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">increased the Na+/Ca2+ exchanger activity resulting in halfmaximal</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">[Ca2+]; increase near normal [Na+]i of 12 mM.</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">Furthermore, in the presence of okadaic acid in normal CTAL</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">cells, pretreatment with ouabain and the elevation of [Na+]i</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">was not required to elicit increments in [Ca2+];. These data</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">indicate that Na+/Ca2+ exchange is present in CTAL cells and</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">the exchange activity appears to be modulated, directly or</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">indirectly, by phosphorylation events.</div>
<div id="_mcePaste" style="position: absolute; left: -10000px; top: 50px; width: 1px; height: 1px; overflow-x: hidden; overflow-y: hidden;">intracellular calcium ion concentration; intracellular sodium</div>
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