首页> 美国卫生研究院文献>Biochemical Journal >Post-translational processing of progastrin: inhibition of cleavage phosphorylation and sulphation by brefeldin A.
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Post-translational processing of progastrin: inhibition of cleavage phosphorylation and sulphation by brefeldin A.

机译:前胃泌素的翻译后加工:布雷菲德菌素A抑制切割磷酸化和硫酸化。

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摘要

The precursor for the acid-stimulating hormone gastrin provides a useful model for studies of post-translational processing because defined sites of cleavage, amidation, sulphation and phosphorylation occur within a dodecapeptide sequence. The factors determining these post-translational processing events are still poorly understood. We have used brefeldin A, which disrupts transport from rough endoplasmic reticulum to the Golgi complex, to examine the mechanisms of cleavage, phosphorylation and sulphation of rat progastrin-derived peptides. Biosynthetic products were detected after immunoprecipitation using antibodies specific for the extreme C-terminus of progastrin, followed by reversed-phase and ion-exchange h.p.l.c. Gastrin cells incorporated [3H]tyrosine, [32P]phosphate and [35S]sulphate into both progastrin and its extreme C-terminal tryptic (nona-) peptide. Ion-exchange chromatography resolved four forms of the C-terminal tryptic fragment of progastrin which differed in whether they were phosphorylated at Ser96, sulphated at Tyr103, both or neither. The specific activity of [3H]tyrosine in the peak that was both phosphorylated and sulphated was higher than in the others. Brefeldin A inhibited the appearance of [3H]tyrosine-labelled C-terminal tryptic fragment but there was an accumulation of labelled progastrin and a peptide corresponding to the C-terminal 46 residues of progastrin. Brefeldin A also inhibited incorporation of 32P and 35S into both progastrin and its C-terminal fragment. Thus phosphorylation of Ser96, sulphation of Tyr103 and cleavage at Arg94-Arg95 depend on passage of newly synthesized progastrin along the secretory pathway; as brefeldin A is thought to act proximal to the trans-Golgi, these processing steps would appear to occur distal to this point. The data also indicate that the stores of unphosphorylated C-terminal tryptic fragment are not available for phosphorylation, implying that this modification occurs proximal to the secretory granule; cleavage is known to occur in the secretory granule which suggests that it occurs after phosphorylation.
机译:酸刺激激素胃泌素的前体为翻译后加工的研究提供了有用的模型,因为在十二肽序列内发生了确定的切割,酰胺化,硫酸化和磷酸化位点。决定这些翻译后加工事件的因素仍然知之甚少。我们已经使用了布雷菲德菌素A(它可以破坏从粗糙的内质网到高尔基体的运输)来检查大鼠前胃泌素衍生肽的裂解,磷酸化和硫酸化的机制。免疫沉淀后,使用对前胃泌素的极端C末端具有特异性的抗体检测生物合成产物,然后进行反相和离子交换h.p.l.c.胃泌素细胞将[3H]酪氨酸,[32P]磷酸和[35S]硫酸盐掺入胃泌素及其极端C末端胰蛋白酶(nona-)肽中。离子交换色谱分离了四种形式的前胃泌素C末端胰蛋白酶片段,不同之处在于它们在Ser96处被磷酸化,在Tyr103处被硫酸化还是两者都不存在。磷酸化和硫酸化的峰中[3H]酪氨酸的比活均高于其他峰。布雷菲德菌素A抑制[3H]酪氨酸标记的C末端胰蛋白酶片段的出现,但是存在标记的前胃泌素和对应于前胃泌素的C末端46个残基的肽的积累。布雷菲德菌素A还抑制32P和35S掺入前胃泌素及其C末端片段中。因此,Ser96的磷酸化,Tyr103的硫酸化和在Arg94-Arg95处的切割取决于新合成的前胃泌素沿分泌途径的通过。由于布雷菲德菌素A被认为在反式高尔基体附近起作用,因此这些加工步骤似乎发生在这一点的远端。数据还表明,未磷酸化的C末端胰蛋白酶片段不能用于磷酸化,这表明这种修饰发生在分泌颗粒的近端。已知切割在分泌颗粒中发生,这表明它在磷酸化后发生。

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