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针对人类生长抑素受体亚型sst1 - sst5的选择性抗体的研发。

Development of selective antibodies against the human somatostatin receptor subtypes sst1-sst5.

作者信息

Helboe L, Møller M, Nørregaard L, Schiødt M, Stidsen C E

机构信息

Department of Medical Anatomy, Panum Institute, University of Copenhagen, Denmark.

出版信息

Brain Res Mol Brain Res. 1997 Oct 3;49(1-2):82-8. doi: 10.1016/s0169-328x(97)00127-7.

Abstract

Antisera selective for five somatostatin receptor subtypes, human sst1-sst5, were raised in rabbits. C-terminal parts of human sst1-sst5 receptors were expressed as fusion proteins with glutathione S-transferase. Fusion proteins were affinity-purified and used for raising polyclonal antibodies. In Western blot analysis, all five antisera were tested on preparations of mammalian cell lines transfected with human sst1-sst5, respectively. sst1 antiserum reacted with a broad band of 53-72 kDa. A band of 71-95 kDa was detected with the antiserum raised against sst2, 65-85 kDa with sst3 antiserum, 45 kDa with sst4 antiserum and 52-66 kDa with sst5 antiserum. No cross-reactivity could be detected to any of the other four somatostatin receptor subtypes. Enzymatical deglycosylation of the receptors revealed that sst1, sst2, sst5 and possibly sst3 in this system are subjected to N-linked glycosylation, whereas sst4 is not. Two of the antisera (sst2 and sst5) were used for immunohistochemical localization of the receptors. sst2 and sst5 antisera labeled neurons in e.g. the amygdaloid complex, hippocampus, fascia dentata and the neocortex in rat and monkey tissue. This is the first report on antisera against all five somatostatin receptor subtypes and the first immunohistochemical visualization of sst5 receptors in the mammalian brain.

摘要

针对五种生长抑素受体亚型(人类sst1 - sst5)的抗血清在兔子体内产生。人类sst1 - sst5受体的C末端部分作为与谷胱甘肽S - 转移酶的融合蛋白表达。融合蛋白经亲和纯化后用于制备多克隆抗体。在蛋白质免疫印迹分析中,所有五种抗血清分别在转染了人类sst1 - sst5的哺乳动物细胞系制备物上进行测试。sst1抗血清与一条53 - 72 kDa的宽带反应。针对sst2产生的抗血清检测到一条71 - 95 kDa的条带,sst3抗血清检测到65 - 85 kDa的条带,sst4抗血清检测到45 kDa的条带,sst5抗血清检测到52 - 66 kDa的条带。未检测到与其他四种生长抑素受体亚型的交叉反应。受体的酶促去糖基化显示,该系统中的sst1、sst2、sst5以及可能的sst3进行N - 连接糖基化,而sst4不进行。其中两种抗血清(sst2和sst5)用于受体的免疫组织化学定位。sst2和sst5抗血清标记了大鼠和猴子组织中例如杏仁核复合体、海马体、齿状回和新皮层中的神经元。这是关于针对所有五种生长抑素受体亚型的抗血清的首次报告,也是哺乳动物脑中sst5受体的首次免疫组织化学可视化报告。

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