Steroid & Immunobiochemistry Laboratory, Canterbury Health Laboratories, PO Box 151, Christchurch, New Zealand.
J Steroid Biochem Mol Biol. 2011 Nov;127(3-5):289-94. doi: 10.1016/j.jsbmb.2011.08.006. Epub 2011 Aug 22.
Corticosteroid-binding globulin (CBG) is the principal carrier of cortisol in circulation and is a non-inhibitory member of the serpin family of serine proteinase inhibitors. It possesses an exposed elastase specific site which, when cleaved, allows a conformational change promoting the delivery of cortisol to sites of inflammation. Previously there was no ability to independently distinguish between the uncleaved, stressed, conformer of CBG and total CBG in circulation. Here we raised and characterized monoclonal antibodies generated against a synthetic peptide spanning the elastase cleavage site within the exposed reactive centre loop (RCL) and measured changes in CBG by ELISA following treatment with human neutrophil elastase. The antibodies recognized the synthetic peptide as well as intact CBG and the epitope (STGVTLNL) spanned the elastase cleavage site. Treatment of plasma with elastase resulted in a complete loss of CBG levels determined using these RCL antibodies whereas CBG levels measured with an unrelated CBG monoclonal antibody were unaffected. We also compared plasma levels of CBG measured by RCL antibodies and an unrelated CBG antibody and showed discordance in some samples. This study shows for the first time the ability to measure the intact, stressed conformer of CBG. We report discordance with total CBG in some samples implying the presence of cleaved CBG in circulation. This is an important finding as it has implications for free cortisol which hitherto have been determined from total cortisol and total CBG levels. This antibody could be used for determining the time course of intact CBG in various relevant patient cohorts and for structure/function studies on the biology of human CBG.
皮质醇结合球蛋白(CBG)是皮质醇在循环中的主要载体,也是丝氨酸蛋白酶抑制剂丝氨酸蛋白酶抑制剂家族中的非抑制性成员。它具有暴露的弹性蛋白酶特异性位点,当该位点被切割时,允许构象变化,从而促进皮质醇向炎症部位的输送。以前,人们无法独立区分循环中未切割、应激、CBG 构象和总 CBG。在这里,我们针对跨越暴露的反应中心环(RCL)中弹性蛋白酶切割位点的合成肽产生了单克隆抗体,并通过 ELISA 测量了人中性粒细胞弹性蛋白酶处理后 CBG 的变化。这些抗体识别合成肽以及完整的 CBG,表位(STGVTLNL)跨越弹性蛋白酶切割位点。用弹性蛋白酶处理血浆会导致使用这些 RCL 抗体测定的 CBG 水平完全丧失,而用不相关的 CBG 单克隆抗体测定的 CBG 水平不受影响。我们还比较了使用 RCL 抗体和不相关的 CBG 抗体测量的血浆 CBG 水平,并在一些样本中显示出不一致。这项研究首次表明能够测量完整的、应激的 CBG 构象。我们报告在一些样本中与总 CBG 不一致,这意味着循环中存在切割的 CBG。这是一个重要的发现,因为它对游离皮质醇有影响,迄今为止,游离皮质醇是从总皮质醇和总 CBG 水平来确定的。这种抗体可用于测定各种相关患者群体中完整 CBG 的时间过程,并用于研究人类 CBG 的生物学结构/功能。