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首页> 外文期刊>American Journal of Physiology >PKC isoforms and other signaling proteins involved in surfactant secretion in developing rat type II cells.
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PKC isoforms and other signaling proteins involved in surfactant secretion in developing rat type II cells.

机译:发育中的大鼠II型细胞中参与表面活性剂分泌的PKC亚型和其他信号蛋白。

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摘要

We previously reported that there is a developmental increase in surfactant secretion in response to P2Y2 purinoceptor agonists. UTP does not stimulate secretion in type II cells from 1- or 2-day-old rats; there is a small response to UTP in cells from 4-day-old animals, and the response increases with increasing age thereafter. Second messenger formation in response to P2Y2 agonists has a similar developmental pattern. We have investigated whether the failure to respond to P2Y2 agonists is due to a deficiency in the P2Y2 receptor or in downstream signaling factors. We compared type II cells from adult and 1- to 2-day-old rats with respect to expression of the P2Y2 receptor gene and the levels of phospholipase C-beta (PLC-beta) and protein kinase C (PKC) isomers and of the alpha-subunit of the GTP-binding protein Gq. We measured gene expression by reverse transcriptase-polymerase chain reaction and protein levels by immunoblotting. We identified PKC-alpha, -betaI, -betaII, -delta, -eta, -zeta, -theta, and -mu, PLC-beta3, and Gqalpha in adult and newborn type II cells. PKC-epsilon, -gamma, and -lambda and PLC-beta1, -beta2, and -beta4 were not present in adult or newborn type II cells. Expression of the P2Y2 receptor gene was essentially the same in newborn and adult cells. However, the levels of PKC-alpha, -betaI, -betaII, and -zeta in newborn type II cells were only 43-57% those of adult cells. The level of PKC-theta also tended to be lower in the newborn cells. There was little difference between newborn and adult type II cells in the levels of PKC-delta, -eta, and -mu, PLC-beta3, and Gqalpha. These data suggest that the lack of response of early newborn type II cells to P2Y2 agonists is not due to a lack of expression of the receptor gene but possibly to insufficient amounts of one or more of the alpha, betaI, betaII, or zeta PKC isoforms.
机译:我们以前报道过,响应P2Y2嘌呤受体激动剂,表面活性剂的分泌正在增加。 UTP不会刺激1日龄或2日龄大鼠的II型细胞分泌。在4天大的动物的细胞中,对UTP的反应很小,此后反应随着年龄的增长而增加。响应P2Y2激动剂的第二信使形成具有相似的发育模式。我们调查了对P2Y2激动剂反应失败的原因是否是由于P2Y2受体或下游信号传导因子的缺乏所致。我们比较了成年和1至2日龄大鼠的II型细胞的P2Y2受体基因的表达以及磷脂酶C-beta(PLC-beta)和蛋白激酶C(PKC)异构体以及GTP结合蛋白Gq的alpha亚基。我们通过逆转录聚合酶链反应测量基因表达,并通过免疫印迹测量蛋白质水平。我们在成年和新生儿II型细胞中鉴定出PKC-alpha,-betaI,-betaII,-delta,-eta,-zeta,-theta和-mu,PLC-beta3和Gqalpha。在成年或新生儿II型细胞中不存在PKC-ε,-γ和-λ和PLC-beta1,-beta2和-beta4。 P2Y2受体基因在新生和成年细胞中的表达基本相同。然而,新生II型细胞中PKC-α,-βI,-βII和-ζ的水平仅为成年细胞的43-57%。新生细胞中PKC-θ的水平也趋于降低。在新生和成年II型细胞之间,PKC-δ,-eta和-mu,PLC-beta3和Gqalpha的水平几乎没有差异。这些数据表明,早期的II型初生细胞对P2Y2激动剂的反应缺乏,并不是由于缺乏受体基因的表达,而是由于α,betaI,betaII或zeta PKC亚型中一种或多种的数量不足所致。 。

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