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Stimulation of secretion in permeabilized PC12 cells by adenosine 5′-[γ-thio]triphosphate: possible involvement of nucleoside diphosphate kinase

机译:5'-[γ-硫代]三磷酸腺苷刺激透化的PC12细胞分泌:核苷二磷酸激酶可能参与其中

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pThe addition of Ca2+, adenosine 5′-[gamma-thio]triphosphate (ATP[S]) or guanosine 5′-[gamma-thio]triphosphate (GTP[S]) to digitonin-permeabilized PC12 cells stimulates noradrenaline secretion. Both ATP[S] and GTP[S] stimulate release in the absence of Ca2+. Whereas ADP and adenosine 5′-[beta gamma-imido]triphosphate inhibited ATP[S]-stimulated release, they did not inhibit Ca(2+)-stimulated release even in the absence of added ATP. This suggests that the kinase which uses ATP[S] to induce secretion may not play an essential role in Ca(2+)-stimulated release. As GTP[S]-stimulated and ATP[S]-stimulated secretions were not additive, it seemed possible that stimulation by ATP[S] might in part result from the thiophosphorylation of GDP by nucleoside-diphosphate (NDP) kinase to form GTP[S]. The following results are consistent with this possibility. (1) A low concentration of GDP increased ATP[S]-stimulated secretion, but not GTP[S]-stimulated or Ca(2+)-stimulated secretion. (2) A variety of ribo- and deoxyribo-nucleoside di- and tri-phosphates inhibited ATP[S]-stimulated secretion, but not GTP[S]-stimulated or Ca(2+)-stimulated secretion. Thus, like NDP kinase, the kinase which uses ATP[S] to cause noradrenaline release appears to have a very low specificity for ATP. (3) Incubation of permeabilized cells in a sucrose-containing buffer resulted in the preferential loss of ATP[S]-stimulated secretion and a decrease in the level of NDP kinase. The addition of rat liver NDP kinase to those depleted cells partially restored ATP[S]-stimulated secretion./p
机译:>向洋白蛋白透化的PC12细胞中添加Ca2 +,腺苷5'-[γ-硫代]三磷酸(ATP [S])或鸟苷5'-[γ-硫代]三磷酸(GTP [S])刺激去甲肾上腺素分泌。在不存在Ca2 +的情况下,ATP [S]和GTP [S]均可刺激释放。尽管ADP和5'-βγ-亚氨基三磷酸腺苷抑制ATP [S]刺激的释放,但即使在不添加ATP的情况下,它们也不抑制Ca(2+)刺激的释放。这表明使用ATP [S]诱导分泌的激酶可能不会在Ca(2+)刺激的释放中发挥重要作用。由于GTP [S]刺激的和ATP [S]刺激的分泌物不是累加的,因此ATP [S]的刺激似乎可能部分是由于核苷二磷酸(NDP)激酶将GDP的硫代磷酸化而形成GTP [ S]。以下结果与这种可能性一致。 (1)GDP浓度低会增加ATP [S]刺激的分泌,但不会增加GTP [S]刺激或Ca(2+)刺激的分泌。 (2)多种核糖和脱氧核糖核苷二磷酸和三磷酸抑制ATP [S]刺激的分泌,但不抑制GTP [S]刺激或Ca(2+)刺激的分泌。因此,与NDP激酶一样,使用ATP [S]引起去甲肾上腺素释放的激酶似乎对ATP的特异性非常低。 (3)在含蔗糖的缓冲液中培养透化细胞会导致ATP [S]刺激的分泌物优先丢失,NDP激酶水平降低。在耗尽的细胞中添加大鼠肝脏NDP激酶可部分恢复ATP [S]刺激的分泌。

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