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首页> 外文期刊>American Journal of Physiology >Overexpression of PKC-betaI and -delta contributes to higher PKC activity in the proximal tubules of old Fischer 344 rats.
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Overexpression of PKC-betaI and -delta contributes to higher PKC activity in the proximal tubules of old Fischer 344 rats.

机译:PKC-βI和-δ的过度表达有助于老Fischer 344大鼠近端小管的PKC活性更高。

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摘要

Previously, we reported that natriuretic and diuretic response to dopamine is diminished in old Fischer 344 rats, which is due to higher basal protein kinase C (PKC) activity and hyperphosphorylation of Na-K-ATPase in the proximal tubules (PTs) of old rats. The present study was conducted to determine whether higher PKC activity could be due to altered expression of some of the PKC isoforms in the superficial cortex (rich in PTs) of old rats. Fluorimetric measurement showed almost twofold increase in the PKC activities in homogenates and membranes of old (24 mo) compared with adult (6 mo) rats. Interestingly, in the basal state PKC-betaI was overexpressed in the membranes, whereas PKC-delta expression was increased in the cytosol of old compared with adult rats. Treatment of the cortical slices with either SKF-38393, a D1-like agonist, or PDBu, a direct activator of PKC, caused translocation of PKC-betaI from cytosol to membranes in adult but not in old rats. Both of these drugs caused translocation ofPKC-delta from membranes to cytosol in adult but not in old rats. These drugs had no effect on translocation of PKC-zeta in both adult and old rats. Both PKC-betaI and -delta co-immunoprecipitated with alpha1-subunit of Na-K-ATPase in adult and old rats. These observations suggest that both SKF-38393 and PDBu differentially regulate PKC-betaI and -delta in adult but not in old rats. Also, PKC-betaI and -delta seem to interact with Na-K-ATPase in these animals. The overexpression of both PKC-betaI and -delta in old rats could be responsible for a higher basal PKC activity, which causes the hyperphosphorylation of Na-K-ATPase and contributes to the diminished inhibition of Na-K-ATPase activity by dopamine in old rats.
机译:以前,我们报道说,老费休344大鼠对多巴胺的利尿和利尿反应减弱,这是由于老大鼠近端肾小管(PTs)中较高的基础蛋白激酶C(PKC)活性和Na-K-ATPase过度磷酸化所致。进行本研究以确定较高的PKC活性是否可能是由于老大鼠浅表皮层(富含PT)中某些PKC亚型的表达改变所致。荧光测定显示,与成年大鼠(6 mo)相比,成年大鼠(24 mo)的匀浆和膜中PKC活性几乎增加了两倍。有趣的是,与成年大鼠相比,在基础状态下PKC-betaI在膜中过度表达,而PKC-δ表达则在老年细胞质中增加。用SKF-38393(一种D1样激动剂)或PDBu(一种PKC的直接激活剂)处理皮层片,可导致成年小鼠PKC-βI从细胞溶质向膜移位,但在成年大鼠中则不会。这两种药物在成年小鼠中都引起PKC-δ从膜向细胞质的移位,而在成年大鼠中则没有。这些药物对成年和成年大鼠的PKC-zeta移位均无影响。在成年和成年大鼠中,PKC-betaI和-delta与Na-K-ATPase的α1亚基共同免疫沉淀。这些观察结果表明,SKF-38393和PDBu均在成年大鼠中而不是在成年大鼠中差异地调节PKC-βI和δ。同样,在这些动物中,PKC-betaI和-δ似乎与Na-K-ATPase相互作用。老龄大鼠中PKC-βI和-δ的过度表达可能是基础PKC活性较高的原因,这会导致Na-K-ATPase的过度磷酸化,并导致多巴胺对Na-K-ATPase活性的抑制作用减弱。大鼠。

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