首页> 外文期刊>The Biochemical Journal >Maturation and secretion of rat hepatic lipase is inhibited by alpha1B-adrenergic stimulation through changes in Ca2+ homoeostasis: thapsigargin and EGTA both mimic the effect of adrenaline.
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Maturation and secretion of rat hepatic lipase is inhibited by alpha1B-adrenergic stimulation through changes in Ca2+ homoeostasis: thapsigargin and EGTA both mimic the effect of adrenaline.

机译:大鼠肝脏脂肪酶的成熟和分泌受到Ca2 +稳态的改变而受到alpha1B-肾上腺素能刺激的抑制:thapsigargin和EGTA都模仿肾上腺素的作用。

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摘要

In rats, the daily changes in hepatic lipase (HL) activity in the liver follow the diurnal rhythm of the catecholamines. To study the underlying mechanism, the effect of adrenaline on maturation and secretion of HL was determined in freshly isolated rat hepatocytes. Adrenaline (10 microM) acutely inhibited the secretion of HL. This effect was abolished by 0.1 microM prazosin, but not by 1 microM propranolol, indicating the involvement of the alpha1-adrenergic pathway. Prazosin was at least 1000-fold more potent than WB4101, a selective alpha1A-antagonist. Adrenaline had no effect on HL secretion in hepatocytes pretreated with chloroethylclonidine, an irreversible alpha1B-selective antagonist. Inhibition of HL was not induced by 10 microM methoxamine, a alpha1A-selective agonist. Thus, adrenaline inhibited HL secretion through activation of the alpha1-adrenoceptors subtype B, which have been shown to signal through Ca2+ as well as cAMP. A similar reduction in HL secretion was induced by the Ca2+-mobilizing hormones angiotensin II (100 nM) and vasopressin (12 nM), the Ca2+ ionophore A23187 (2 microM), and by thapsigargin (1 microM), which inhibits the ER Ca2+-ATPase pump. HL secretion was unaffected by elevating cAMP with 10 microM forskolin or 1 microM 8-Br-cAMP. These results suggest that the alpha1B-adrenergic effects on HL expression are mainly mediated through elevation of intracellular Ca2+. Chelation of extracellular Ca2+ and subsequent lowering of intracellular Ca2+ with EGTA also inhibited HL secretion. In pulse-chase experiments, adrenaline was shown to inhibit the maturation of HL from the 53 kDa, Endo H-sensitive precursor to the Endo H-resistant, catalytically active protein of 58 kDa. In addition, adrenaline induced intracellular degradation of newly synthesized HL. Similar post-translational effects, both qualitatively and quantitatively, were observed with A23187, thapsigargin and EGTA. We conclude that the inhibition of HL maturation and increase in intracellular degradation induced by catecholamines, A23187, thapsigargin and EGTA is evoked by changes in Ca2+ homoeostasis, possibly through lowering ER Ca2+.
机译:在大鼠中,肝脏中肝脂肪酶(HL)活性的每日变化遵循儿茶酚胺的昼夜节律。为了研究潜在的机制,在新鲜分离的大鼠肝细胞中确定了肾上腺素对HL的成熟和分泌的影响。肾上腺素(10 microM)急性抑制HL的分泌。 0.1 microM哌唑嗪取消了该作用,但1 microM普萘洛尔则没有,表明α1-肾上腺素途径参与了该作用。吡唑嗪的功效至少比选择性α1A拮抗剂WB4101强1000倍。肾上腺素对用不可逆的α1B选择性拮抗剂氯乙基可乐定预处理的肝细胞中的HL分泌没有影响。 10 microM甲氧胺(一种α1A选择性激动剂)未诱导HL的抑制。因此,肾上腺素通过激活α1肾上腺素受体B亚型抑制HL分泌,业已显示其通过Ca2 +和cAMP发出信号。 Ca2 +动员激素血管紧张素II(100 nM)和加压素(12 nM),Ca2 +离子载体A23187(2 microM)和毒胡萝卜素(1 microM)诱导HL分泌的类似减少,后者抑制ER Ca2 +- ATPase泵。通过用10 microM毛喉素或1 microM 8-Br-cAMP升高cAMP不会影响HL分泌。这些结果表明,α1B-肾上腺素对HL表达的影响主要是通过细胞内Ca2 +的升高介导的。 EGTA螯合细胞外Ca2 +和随后降低细胞内Ca2 +也会抑制HL分泌。在脉冲追踪实验中,肾上腺素显示可抑制HL从53 kDa(对Endo H敏感的前体)到58 kDa的对Endo H敏感的催化活性蛋白的成熟。另外,肾上腺素诱导新合成的HL的细胞内降解。使用A23187,毒胡萝卜素和EGTA可以观察到定性和定量的类似翻译后作用。我们得出的结论是,儿茶酚胺,A23187,毒胡萝卜素和EGTA诱导的HL成熟抑制和细胞内降解的增加是由Ca2 +稳态的改变引起的,可能是通过降低ER Ca2 +引起的。

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