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首页> 外文期刊>Cellular microbiology >A cyclic AMP protein kinase A-dependent mechanism by which rotavirus impairs the expression and enzyme activity of brush border-associated sucrase-isomaltase in differentiated intestinal Caco-2 cells
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A cyclic AMP protein kinase A-dependent mechanism by which rotavirus impairs the expression and enzyme activity of brush border-associated sucrase-isomaltase in differentiated intestinal Caco-2 cells

机译:轮状病毒损害分化的肠道Caco-2细胞中刷状缘相关的蔗糖酶-异麦芽糖酶的表达和酶活性的环状AMP蛋白激酶A依赖性机制

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We undertook a study of the mechanism by which rhesus monkey rotavirus (RRV) impairs the expression and enzyme activity of brush border-associated sucrase isomaltase (SI) in cultured, human, fully differentiated, intestinal Caco-2 cells. We provide evidence that the RRV-induced defects in the expression and enzyme activity of SI are not related to the previously observed, RRV-induced, Ca2+-dependent, disassembly of the F-actin cytoskeleton. This conclusion is based on the facts that: (i) the intracellular Ca2+ blocker, BAPTA/AM, which antagonizes the RRV-induced increase in [Ca2+](i), fails to inhibit the RRV-induced decrease in SI expression and enzyme activity; and (ii) Jasplakinolide (JAS) treatment, known to stabilize actin filaments, had no effect on the RRV-induced decrease in SI expression. Results reported here demonstrate that the RRV-induced impairment in the expression and enzyme activity of brush border-associated SI results from a hitherto unknown mechanism involving PKA signalling. This conclusion is based on the observations that (i) intracellular cAMP was increased in RRV-infected cells and (ii) treatment of RRV-infected cells with PKA blockers resulted in the reappearance of apical SI expression, accompanied by the restoration of the enzyme activity at the brush border. In addition, in RRV-infected cells a twofold increase of phosphorylated form of cytokeratin 18 was observed after immunopurification and Western Blot analysis, which was antagonized by exposing the RRV-infected cells to the PKA blockers.
机译:我们进行了一种机制的研究,恒河猴轮状病毒(RRV)损害刷状边界相关的蔗糖酶异麦芽糖酶(SI)的表达和酶活性在培养的人的完全分化的肠道Caco-2细胞中的表达。我们提供的证据表明,RRV诱导的SI表达和酶活性缺陷与F-actin细胞骨架的先前观察到的,RRV诱导的,Ca2 +依赖的拆卸无关。该结论基于以下事实:(i)拮抗RRV诱导的[Ca2 +](i)升高的细胞内Ca2 +阻滞剂BAPTA / AM无法抑制RRV诱导的SI表达和酶活性下降。 ; (ii)已知可以稳定肌动蛋白丝的Jasplakinolide(JAS)处理对RRV诱导的SI表达下降没有影响。此处报道的结果表明,RRV诱导的与刷缘相关的SI的表达和酶活性受到损害,是由迄今为止未知的涉及PKA信号传导的机制导致的。该结论基于以下观察结果:(i)RRV感染的细胞中细胞内cAMP升高,(ii)用PKA阻断剂处理RRV感染的细胞导致根尖SI表达重新出现,同时酶活性得以恢复在画笔边框。另外,在RRV感染的细胞中,免疫纯化和Western Blot分析后观察到细胞角蛋白18的磷酸化形式增加了两倍,这是通过将RRV感染的细胞暴露于PKA阻断剂来拮抗的。

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