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Production and Histological Application of Affinity-purified Antibodies to Heat-denatured Green Fluorescent Protein

机译:热变性绿色荧光蛋白亲和纯化抗体的生产及组织学应用

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摘要

Enhanced green fluorescent protein (GFP) irreversibly loses not only fluorescence but also antigenicity recognized with conventional anti-GFP antibodies by heat denaturation. This hinders combinatory applications of the GFP immunodetection technique with heat-requiring procedures, such as in situ hybridization histochemistry, antigen retrieval, and Western blot. Here we produced new rabbit and guinea pig antibodies against heat-denatured GFP. The polyclonal antibodies affinity-purified with the antigen column detected a single band corresponding to the molecular size of GFP in Western blot analysis, with mouse brain expressing GFP from the GAD67 locus. By immunofluorescence labeling, the new antibodies detected GFP molecules in heat (≥70C)-treated sections but not in untreated sections of the mouse brain. When the sections were incubated at ≥37C with in situ hybridization buffer containing 50% formamide, a denaturing reagent, the sections lost immunoreactivity with the conventional anti-GFP antibodies but acquired immunoreactivity with the new antibodies to heat-denatured GFP. Finally, GFP immunofluorescence was successfully visualized with the new antibodies in sections of the GFP-expressing mice labeled by fluorescence in situ hybridization histochemistry against GAD67 mRNA. Thus, the antibodies produced in this study may provide an opportunity to combine GFP immunodetection with procedures requiring heat treatment. This manuscript contains online supplemental material at . Please visit this article online to view these materials. >(J Histochem Cytochem 56:647–657, 2008)
机译:增强的绿色荧光蛋白(GFP)不可逆转地失去了荧光,而且通过热变性也丧失了常规抗GFP抗体识别的抗原性。这阻碍了GFP免疫检测技术与需要热量的程序(例如原位杂交组织化学,抗原修复和Western印迹)的组合应用。在这里,我们生产了针对热变性GFP的新型兔和豚鼠抗体。用抗原柱亲和纯化的多克隆抗体在蛋白质印迹分析中检测到一条对应于GFP分子大小的条带,小鼠大脑中的GAD67基因表达了GFP。通过免疫荧光标记,新抗体在加热(≥70C)处理过的部分中检测到GFP分子,但在未处理的小鼠脑中未检测到GFP分子。当将切片与含有50%甲酰胺(变性剂)的原位杂交缓冲液在≥37°C下孵育时,切片失去与常规抗GFP抗体的免疫反应性,但获得了与新抗体对热变性GFP的免疫反应性。最后,通过针对GAD67 mRNA的荧光原位杂交组织化学标记的GFP表达小鼠切片中的新抗体,成功地可视化了GFP免疫荧光。因此,本研究中产生的抗体可能提供将GFP免疫检测与需要热处理的程序相结合的机会。该手稿包含位于的在线补充材料。请在线访问本文以查看这些材料。 >(J Histochem Cytochem 56:647–657,2008)

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