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Processing and secretion in the neurohypophysis. Stability of isolated secretory vesicles and role of internal pH

机译:神经垂体的加工和分泌。分离的分泌小泡的稳定性和内部pH值的作用

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pA possible role of low pH in secretory vesicles for processing and secretion in the neurohypophysis was investigated. Subcellular fractionation of guinea-pig neural lobes revealed that a proton present in the membranes from this tissue could not be ascribed to secretory vesicles. However, a proton pump was found in coated microvesicles. Secretory vesicles isolated from rats and guinea pigs were stable under conditions known to lyse secretory vesicles from the adrenal medulla owing to the generation of a proton gradient. These results suggest that the internal pH of secretory vesicles from the neurohypophysis is closer to neutral than is the pH in chromaffin secretory vesicles. Processing of a neurophysin-glycopeptide intermediate from the biosynthesis of vasopressin in intact secretory vesicles incubated in vitro was activated by the addition of NH4Cl, known to increase the intravesicular pH. This activation of neurohormone processing was also apparent in isolated nerve endings incubated in the presence of NH4Cl, suggesting that NH4Cl can also be used to increase the intravesicular pH in intact nerve endings. However, NH4Cl did not affect the secretion of neurohormones, indicating that a low intravesicular pH is not important for exocytosis in the neurohypophysis. Our results indicate that a low pH generated during processing by mechanisms other than ATP-dependent proton transport may inhibit the processing enzymes, thereby preventing extensive breakdown of neurohormone precursors./p
机译:研究了低pH在分泌小泡中对神经垂体的加工和分泌的可能作用。豚鼠神经叶的亚细胞分级显示,来自该组织的膜中存在的质子不能归因于分泌性囊泡。但是,在包被的微囊泡中发现了质子泵。由于质子梯度的产生,从大鼠和豚鼠分离的分泌囊泡在已知可从肾上腺髓质溶解分泌囊泡的条件下是稳定的。这些结果表明,来自神经垂体的分泌性囊泡的内部pH值比嗜铬菌素分泌性囊泡的pH值更接近中性。在体外培养的完整分泌性囊泡中,通过血管加压素的生物合成来处理神经元-糖肽中间体的过程,是通过添加已知会增加囊泡内pH的NH4Cl来激活的。在存在NH4Cl的情况下孵育的离体神经末梢中,神经激素加工的这种激活也很明显,这表明NH4Cl也可用于增加完整神经末梢的囊内pH。但是,NH4Cl不会影响神经激素的分泌,这表明低的囊泡内pH对神经垂体的胞吐作用并不重要。我们的结果表明,在加工过程中通过除ATP依赖的质子转运以外的机制产生的低pH值可能会抑制加工酶,从而防止神经激素前体的大量分解。

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