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哺乳动物内分泌细胞的嗜铬粒蛋白A、B和C免疫反应性。分布、与共储存激素/激素原的区分以及与分泌颗粒嗜银成分的关系。

Chromogranin A, B and C immunoreactivities of mammalian endocrine cells. Distribution, distinction from costored hormones/prohormones and relationship with the argyrophil component of secretory granules.

作者信息

Rindi G, Buffa R, Sessa F, Tortora O, Solcia E

出版信息

Histochemistry. 1986;85(1):19-28. doi: 10.1007/BF00508649.

Abstract

Antibodies specific for chromogranin A, B or C have been used to detect immunohistochemically these three anionic proteins. Pancreatic A, B and PP cells, gut argentaffin EC, argyrophil ECL and gastrin G cells, thyroid C cells, parathyroid cells, adrenal medullary cells, pituitary TSH, FSH and LH cells as well as some axons of visceral nerves have been found to react with chromogranin A antibodies. Pancreatic A, gut EC and G, adrenal medullary and pituitary cells as well as some gut nerve fibers showed chromogranin B immunoreactivity. Chromogranin C immunoreactivity has been detected in pancreatic A, pyloric D1, intestinal L, thyroid C, adrenal medullary and pituitary cells, as well as in some gut neurons and nerve fibers. No crossreactivity has been found in immunohistochemical tests between chromogranins A, B or C and costored monoamines or peptide hormones/prohormones, from which chromogranins can be separated by selective extraction during fixation. On both morphological and chemical grounds a relationship seems to exist between chromogranin A and Grimelius' argyrophilia. Sialooligosaccharide chains of chromogranin A and, possibly, chromogranins' phosphoserine/phosphothreonine groups, seem to interact with guanidyl, amino, and/or imidazole groups of non-chromogranin components to form silver complexing sites accounting for granules' argyrophilia, which can be removed or blocked without affecting chromogranin immunoreactivities. The abundant anionic groups of the three proteins should contribute substantially to granules' basophilia, the partly "masked" pattern of which supports the existence of a close interaction of such groups with other components of secretory granules, including monoamines and peptide hormones or prohormones. Chromogranins could play a rôle in hormone postranslational biosynthesis and intragranular packaging.

摘要

针对嗜铬粒蛋白A、B或C的特异性抗体已被用于免疫组织化学检测这三种阴离子蛋白。已发现胰腺A、B和PP细胞、肠道嗜银EC细胞、亲银ECL细胞和胃泌素G细胞、甲状腺C细胞、甲状旁腺细胞、肾上腺髓质细胞、垂体促甲状腺激素、促卵泡激素和促黄体激素细胞以及一些内脏神经轴突与嗜铬粒蛋白A抗体发生反应。胰腺A细胞、肠道EC细胞和G细胞、肾上腺髓质细胞和垂体细胞以及一些肠道神经纤维显示出嗜铬粒蛋白B免疫反应性。在胰腺A细胞、幽门D1细胞、肠道L细胞、甲状腺C细胞、肾上腺髓质细胞和垂体细胞以及一些肠道神经元和神经纤维中检测到了嗜铬粒蛋白C免疫反应性。在免疫组织化学检测中,未发现嗜铬粒蛋白A、B或C与共储存的单胺或肽激素/激素原之间存在交叉反应,在固定过程中,可通过选择性提取将嗜铬粒蛋白与它们分离。基于形态学和化学依据,嗜铬粒蛋白A与格里梅利乌斯嗜银性之间似乎存在关联。嗜铬粒蛋白A的唾液酸寡糖链以及可能的嗜铬粒蛋白的磷酸丝氨酸/磷酸苏氨酸基团,似乎与非嗜铬粒蛋白成分的胍基、氨基和/或咪唑基团相互作用,形成银络合位点,这解释了颗粒的嗜银性,在不影响嗜铬粒蛋白免疫反应性的情况下,可以去除或阻断这种嗜银性。这三种蛋白质丰富的阴离子基团应在很大程度上导致颗粒的嗜碱性,其部分“掩盖”模式支持这些基团与分泌颗粒的其他成分(包括单胺和肽激素或激素原)存在密切相互作用。嗜铬粒蛋白可能在激素翻译后生物合成和颗粒内包装中发挥作用。

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