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地塞米松和蛙皮素对无血清培养的胰腺腺泡AR4-2J细胞淀粉酶和糜蛋白酶原表达的调控。葡萄糖的影响。

Regulation of amylase and chymotrypsinogen expression by dexamethasone and caerulein in serum-free-cultured pancreatic acinar AR4-2J cells. Influence of glucose.

作者信息

Estival A, Pradel P, Wicker-Planquart C, Vaysse N, Puigserver A, Clemente F

机构信息

Groupe de Recherches de Biologie et Pathologie Digestive (INSERM U151), CHU Rangueil, Toulouse, France.

出版信息

Biochem J. 1991 Oct 1;279 ( Pt 1)(Pt 1):197-201. doi: 10.1042/bj2790197.

Abstract

The direct effects of dexamethasone and caerulein on two pancreatic enzymes, amylase and chymotrypsin, were determined in AR4-2J cells cultured under serum-free conditions at two glucose concentrations (1.0 and 4.5 g/l). In the absence of any hormone, the higher glucose concentration resulted in a 1.6-1.8-fold increase in the basal levels of amylase and chymotrypsinogen. Dexamethasone (50 nM) increased the biosynthesis and mRNA levels of both enzymes at both glucose concentrations. However, dexamethasone had a more pronounced effect on amylase biosynthesis (5-fold induction) than on chymotrypsinogen biosynthesis (1.8-fold induction). The parallel increases in mRNA and protein indicated the existence of pre-translational regulation. This is in contrast with what was observed in serum-containing media, where a translational regulation of amylase biosynthesis took place, probably under the control of both glucose and some serum factors. By contrast, caerulein (10 nM) exerted a more specific action on chymotrypsinogen. The increases in chymotrypsinogen mRNA were 2.2- and 2.1-fold, and increases in chymotrypsin activity were 1.6- and 2.9-fold at 1.0 and 4.5 g of glucose/litre respectively. Thus the regulation by caerulein occurred mainly through the enhancement of chymotrypsinogen transcription and/or mRNA stabilization.

摘要

在无血清条件下,于两种葡萄糖浓度(1.0和4.5 g/l)培养的AR4-2J细胞中,测定了地塞米松和蛙皮素对两种胰腺酶(淀粉酶和胰凝乳蛋白酶)的直接影响。在没有任何激素的情况下,较高的葡萄糖浓度导致淀粉酶和胰凝乳蛋白酶原的基础水平增加1.6至1.8倍。地塞米松(50 nM)在两种葡萄糖浓度下均增加了这两种酶的生物合成及mRNA水平。然而,地塞米松对淀粉酶生物合成的影响(5倍诱导)比对胰凝乳蛋白酶原生物合成的影响(1.8倍诱导)更为显著。mRNA和蛋白质的平行增加表明存在翻译前调控。这与在含血清培养基中观察到的情况相反,在含血清培养基中,淀粉酶生物合成存在翻译调控,可能受葡萄糖和某些血清因子的共同控制。相比之下,蛙皮素(10 nM)对胰凝乳蛋白酶原发挥了更具特异性的作用。在葡萄糖浓度为1.0和4.5 g/l时,胰凝乳蛋白酶原mRNA的增加分别为2.2倍和2.1倍,胰凝乳蛋白酶活性的增加分别为1.6倍和2.9倍。因此,蛙皮素的调节主要通过增强胰凝乳蛋白酶原转录和/或mRNA稳定性来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b528/1151566/82ea562d5625/biochemj00150-0195-a.jpg

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