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Electroporation-Aided DNA Immunization Generates Polyclonal Antibodies Against the Native Conformation of Human Endothelin B Receptor

机译:电穿孔辅助的DNA免疫产生抗人类内皮素B受体天然构象的多克隆抗体。

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摘要

Endothelin B receptor (ETBR) is a G protein-coupled receptor (GPCR) specific for endothelin peptides (including endothelin-1, ET1), which mediates a variety of key physiological functions in normal tissues, such as modulation of vasomotor tone, tissue differentiation, or cell proliferation. Moreover, ETBR, overexpressed in various cancer cells including melanoma, has been implicated in the growth and progression of tumors, as well as in controlling T cell homing to tumors. To gather information on receptor structure and function, antibodies are generally considered choice molecular probes, but generation of such reagents against the native conformation of GPCRs is a real technical challenge. Here, we show that electroporation-aided genetic immunization, coupled to cardiotoxin pretreatment, is a simple and very efficient method to raise large amounts of polyclonal antibodies highly specific for native human ETBR (hET(B)R), as assessed by both flow cytometry analysis of different stably transfected cell lines and a new and rapid cell-based enzyme-linked immunosorbent assay that we also describe. The antibodies recognized two major epitopes on hET(B)R, mapped within the N-terminal extracellular domain. They were used to reveal hET(B)R on membranes of three different human melanoma cell lines, by flow cytometry and confocal microscopy, a method that we show is more relevant than mRNA polymerase chain reaction in assessing receptor expression. In addition, ET-1 partially competed with antibodies for receptor binding. The strategy described here, thus, efficiently generated new immunological tools to further analyze the role of ETBR under both normal and pathological conditions, including cancers. Above all, it can now be used to raise monoclonal antibodies against hET(B)R and, more generally, against GPCRs that constitute, by far, the largest reservoir of potential pharmacological targets.
机译:内皮素B受体(ETBR)是特异性针对内皮素肽(包括内皮素1和ET1)的G蛋白偶联受体(GPCR),它在正常组织中介导多种关键的生理功能,例如调节血管舒缩张力,组织分化或细胞增殖。此外,在包括黑素瘤在内的各种癌细胞中过表达的ETBR与肿瘤的生长和进展以及控制T细胞归巢于肿瘤有关。为了收集有关受体结构和功能的信息,通常将抗体视为分子探针,但针对GPCR天然构象的此类试剂的产生是一项真正的技术挑战。在这里,我们表明电穿孔辅助的基因免疫与心脏毒素预处理相结合,是一种简单有效的方法,可以产生大量对天然人ETBR(hET(B)R)具有高度特异性的多克隆抗体,这两种流式细胞仪均可评估分析不同稳定转染的细胞系,并描述了一种新的基于快速细胞的酶联免疫吸附测定。抗体识别hET(B)R上的两个主要表位,定位在N端胞外域内。通过流式细胞术和共聚焦显微镜,他们被用于揭示三种不同人类黑素瘤细胞系膜上的hET(B)R,我们在评估受体表达方面比mRNA聚合酶链反应更有意义。另外,ET-1与抗体竞争部分结合受体。因此,此处描述的策略有效地产生了新的免疫工具,以进一步分析ETBR在包括癌症在内的正常和病理条件下的作用。最重要的是,它现在可用于产生针对hET(B)R的单克隆抗体,更普遍的是针对构成迄今为止最大的潜在药理靶标库的GPCR。

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