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Heat shock protein 90-eNOS interactions mature with postnatal age in the pulmonary circulation of the piglet

机译:仔猪肺循环中热休克蛋白90-eNOS的相互作用随着出生年龄的增长而成熟

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摘要

Binding of endothelial nitric oxide synthase (eNOS) to the chaperone protein, Hsp90, promotes coupled eNOS synthetic activity. Using resistance level pulmonary arteries (PRA) from 2-day-, 5- to 7-day-, and 12-day-old piglets, we tested the hypothesis that Hsp90-eNOS interactions are developmentally regulated in the early neonatal period. PRA were isolated for coimmunoprecipitation and immunoblot analyses or cannulated for continuous diameter measurements using the pressurized myography technique. NOS inhibition caused less constriction in PRA from 2-day- compared with 5- to 7-day- and 12-day-old piglets. No age-related differences were found in dilation responses to an NO donor or in protein expression of Hsp90, phospho-eNOS (Ser1177), Akt, phospho-Akt, or caveolin-1. Compared with the older animals, PRA from 2-day-old piglets had higher total eNOS expression but displayed less binding of eNOS to Hsp90 and Akt. Hsp90 antagonism with radicicol induced greatest constriction in PRA from 12-day-old piglets. ACh stimulation caused dilation in PRA from 5- to 7-day- and 12-day-old but not 2-day-old animals, despite rapid and equivalent ACh-mediated eNOS phosphorylation (Ser1177) in all three age groups. Hsp90 inhibition abolished ACh-mediated dilation in PRA from the older piglets. ACh failed to stimulate Hsp90-eNOS binding in 2-day-old but induced a significant increase in Hsp90-eNOS coimmunoprecipitation in PRA from the older age groups, which was blocked by Hsp90 antagonism. We conclude that physical interactions between Hsp90 and eNOS mature over the first weeks of life, likely contributing to the postnatal fall in pulmonary vascular resistance and changes in agonist-induced pulmonary vascular responses characteristic of the early neonatal period.
机译:内皮一氧化氮合酶(eNOS)与伴侣蛋白Hsp90的结合可促进偶联的eNOS合成活性。使用2天,5天至7天和12天大的仔猪的肺动脉阻力水平(PRA),我们测试了Hsp90-eNOS相互作用在新生儿早期受到发育调节的假设。分离PRA进行共免疫沉淀和免疫印迹分析,或使用加压肌成像技术通过插管进行连续直径测量。与5至7天和12天大的仔猪相比,从2天开始,NOS抑制引起的PRA收缩减少。在对NO供体的扩张反应或Hsp90,磷酸化eNOS(Ser 1177 ),Akt,磷酸化Akt或Caveolin-1的蛋白质表达中,未发现与年龄相关的差异。与年龄较大的动物相比,来自两日龄仔猪的PRA具有更高的总eNOS表达,但显示出更少的eNOS与Hsp90和Akt的结合。 Hsp90与紫杉醇的拮​​抗作用可导致12天大的仔猪PRA收缩最大。尽管在体内ACh介导的eNOS磷酸化迅速且相当,但ACh刺激引起5至7日龄和12日龄但不包括2日龄动物的PRA扩张。三个年龄段。 Hsp90抑制消除了老龄仔猪PRA中ACh介导的扩张。 ACh未能刺激2天大的Hsp90-eNOS结合,但导致PRA的Hsp90-eNOS免疫共沉淀显着增加,这是由Hsp90拮抗作用阻止的。我们得出的结论是,Hsp90和eNOS之间的物理相互作用在生命的最初几周内已经成熟,这可能导致出生后肺血管阻力下降以及激动剂诱导的新生儿早期肺血管反应特性的改变。

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