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Cytosolic biosynthesis of GTP and ATP in normal rat pancreatic islets

机译:正常大鼠胰岛中GTP和ATP的胞质生物合成

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GTP and ATP are necessary for glucose-induced insulin secretion; however, the biosynthetic pathways of purine nucleotides have not been studied in pancreatic islets. The present work examines the cytosolic pathways of purine nucleotide synthesis using intact rat islets cultured overnight in RPMI 1640 medium containing either [14C]glycine (to label the de novo pathway) or [3H]hypoxanthine (to mark the salvage pathway), with or without mycophenolic acid or -alanosine (selective inhibitors of cytosolic GTP and ATP synthesis, respectively). Addition of mycophenolic acid decreased total GTP content (mass) by 73–81%; although the incorporation of labeled hypoxanthine into GTP also fell by 87%, the incorporation of glycine did not change. Similarly, -alanosine decreased ATP mass by 26–33% in the presence of either label; whereas the incorporation of hypoxanthine into ATP fell 59%, the incorporation of glycine was again not significantly decreased. Thus, both the de novo and salvage purine nucleotide biosynthetic pathways are present in rat islets; however, the salvage pathway appears to be quantitatively the more important source of nucleotides. This conclusion was supported by additional studies of the effects on nucleotide content and insulin secretion of various site-specific inhibitors of purine synthesis. These findings have potential relevance to the processes of mitogenesis, cell proliferation and differentiation of islet cells, as well as for the control of insulin secretion.
机译:GTP和ATP是葡萄糖诱导的胰岛素分泌所必需的;然而,尚未在胰岛中研究嘌呤核苷酸的生物合成途径。本工作使用完整大鼠胰岛在含有[14C]甘氨酸(用于标记从头途径)或[3H]次黄嘌呤(用于标记挽救途径)的RPMI 1640培养基中过夜培养,研究嘌呤核苷酸合成的胞质途径。不含麦考酚酸或-丙氨酸(分别为胞质GTP和ATP合成的选择性抑制剂)。麦考酚酸的添加使总GTP含量(质量)降低了73–81%。尽管标记的次黄嘌呤在GTP中的掺入量也下降了87%,但甘氨酸的掺入量却没有变化。同样,在任一标记物存在下,-丙氨酸都使ATP质量降低26-33%。次黄嘌呤在ATP中的含量下降了59%,而甘氨酸的含量再次没有显着下降。因此,从头和挽救嘌呤核苷酸的生物合成途径都存在于大鼠胰岛中。然而,挽救途径在数量上似乎是更重要的核苷酸来源。这一结论得到了嘌呤合成各种位点特异性抑制剂对核苷酸含量和胰岛素分泌影响的进一步研究的支持。这些发现与有丝分裂发生,胰岛细胞的细胞增殖和分化以及胰岛素分泌的控制具有潜在的相关性。

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