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胰岛素、肾上腺素及二丁酰环磷酸腺苷对脂肪细胞蛋白质磷酸化的作用。环磷酸腺苷依赖性及非依赖性机制。

Actions of insulin, epinephrine, and dibutyryl cyclic adenosine 5'-monophosphate on fat cell protein phosphorylations. Cyclic adenosine 5'-monophosphate dependent and independent mechanisms.

作者信息

Benjamin W B, Singer I

出版信息

Biochemistry. 1975 Jul 29;14(15):3301-9. doi: 10.1021/bi00686a003.

Abstract

Endogenous and hormone-induced protein (polypeptide) phosphorylations were studied in isolated rat fat cells, in fat pads, and in subcellular fractions obtained from fat tissue under different physiological conditions. Insulin (25-100 muU/ml) increased the incorporation of 32P into two proteins: insulin-phosphorylated proteins (IPP 140 and IPP 50; similar to 140,000 and 50,000 daltons, respectively). Epinephrine (10(-7)-10(-6) M) increased the incorporation of 32P into another protein: epinephrine-phosphorylated protein (EPP 60-65; similar to 60,000-65,000 daltons). Endogenous IPP 140 phosphorylation in fat cells obtained from fasted and refed rats was similar to that of insulin in normal cells. Studies of insulin and epinephrine interactions showed that insulin increased IPP 140 phosphorylation even in the presence of epinephrine or lithium (25 mM times 10(-3) M). dibutyryl cyclic AMP (5 times 10(-4) M) markedly stimulated EPP 60-65 phosphorylation, but neither epinephrine (10(-7)-10(-6) M) nor dibutyryl cyclic AMP reproduced insulin's phosphorylation of APP 140. Lithium inhibited both endogenous and epinephrine-stimulate EPP 60-65 phosphorylation, but did not inhibit that induced by dibutyryl cyclic AMP. These findings suggest that insulin stimulated a specific, cyclic AMP independent protein kinase for IPP 140 phosphorylation. Cell-free extracts from insulin-treated fat tissue catalyzed the specific transfer of 32P from ATP to IPP 140 more rapidly than control extracts. No differences in the total receptor protein or total protein kinase activity using [gamma(-32P]ATP were noted between insulin-treated and control preparations. IPP 140 may be either (a) an insulin-sensitive protein kinase (phosphotransferase) or (b) a protein whose function is regulated by an insulin-sensitive protein kinase or phosphatase.

摘要

在不同生理条件下,对分离的大鼠脂肪细胞、脂肪垫以及从脂肪组织获得的亚细胞组分中的内源性和激素诱导的蛋白质(多肽)磷酸化进行了研究。胰岛素(25 - 100微单位/毫升)使32P掺入两种蛋白质中:胰岛素磷酸化蛋白(IPP 140和IPP 50;分别类似于140,000和50,000道尔顿)。肾上腺素(10(-7) - 10(-6) M)使32P掺入另一种蛋白质中:肾上腺素磷酸化蛋白(EPP 60 - 65;类似于60,000 - 65,000道尔顿)。从禁食和再喂食大鼠获得的脂肪细胞中的内源性IPP 140磷酸化与正常细胞中胰岛素诱导的相似。胰岛素和肾上腺素相互作用的研究表明,即使存在肾上腺素或锂(25 mM×10(-3) M),胰岛素仍能增加IPP 140磷酸化。二丁酰环磷腺苷(5×10(-4) M)显著刺激EPP 60 - 65磷酸化,但肾上腺素(10(-7) - 10(-6) M)和二丁酰环磷腺苷均不能重现胰岛素对APP 140的磷酸化作用。锂抑制内源性和肾上腺素刺激的EPP 60 - 65磷酸化,但不抑制二丁酰环磷腺苷诱导的磷酸化。这些发现表明,胰岛素刺激了一种特异性的、不依赖环磷腺苷的蛋白激酶来进行IPP 140磷酸化。胰岛素处理的脂肪组织的无细胞提取物比对照提取物更快速地催化32P从ATP特异性转移至IPP 140。在胰岛素处理组和对照组制剂之间,使用[γ(-32P]ATP时,总受体蛋白或总蛋白激酶活性未发现差异。IPP 140可能是(a)一种胰岛素敏感的蛋白激酶(磷酸转移酶),或者(b)一种其功能受胰岛素敏感的蛋白激酶或磷酸酶调节的蛋白质。

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