首页> 外文期刊>Journal of Bioscience and Bioengineering >Binding affinity of full-length and extracellular domains of recombinant human (pro)renin receptor to human renin when expressed in the fat body and hemolymph of silkworm larvae
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Binding affinity of full-length and extracellular domains of recombinant human (pro)renin receptor to human renin when expressed in the fat body and hemolymph of silkworm larvae

机译:重组人(原)肾素受体全长和胞外域在家蚕幼虫的脂肪体和淋巴中表达时与人肾素的结合亲和力

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摘要

Transmembrane domains of some receptors have been found to be very important in the process of constitutive oligomerization, and in the stability and functioning of the receptor. In this study, full-length of human (pro)renin receptor (hPRR) and hPRR lacking cytoplasmic domain (hPRR-ACD) were expressed in fat body of silkworm larvae, and the extracellular domain of hPRR (hPRR-ATMACD) in hemolymph. Three forms of hPRR were used for investigation of the interaction between receptor and ligand using surface plasmon resonance (SPR). As a result, the cytoplasmic domain was not an essential requirement for binding affinity, but the transmembrane domain of hPRR was indispensable in the formation of functional hPRR. The dissociation equilibrium constants (K_D) of purified hPRR and hPRR-ACD were estimated to be 46 nM and 330 nM, respectively. No evidence of binding by the extracellular domain of hPRR located in hemolymph was found. However, the solubilized microsomal fraction of the extracellular domain of hPRR expressed in the fat body showed specific affinity, but lost its binding affinity after purification. Its binding affinity was recovered by mixing microsomal fraction of mock-injected fat body to the purified extracellular domain. It is probable that an artificial transmembrane domain stabilizes the extracellular domain of hPRR and native conformation may be structurally recovered. To our knowledge, these are the first findings describing the interaction of transmembrane and extracellular domains of hPRR with ligand and this may help towards the understanding of binding affinity of hPRR to ligand.
机译:已经发现某些受体的跨膜结构域在组成性低聚过程以及受体的稳定性和功能中非常重要。在这项研究中,全长的人(原)肾素受体(hPRR)和缺少胞质域的hPRR(hPRR-ACD)在蚕幼虫的脂肪体内表达,而hPRR的胞外域(hPRR-ATMACD)则在血淋巴中表达。三种形式的hPRR用于通过表面等离振子共振(SPR)研究受体与配体之间的相互作用。结果,胞质结构域不是结合亲和力的必要条件,但是hPRR的跨膜结构域在功能性hPRR的形成中必不可少。纯化的hPRR和hPRR-ACD的解离平衡常数(K_D)分别估计为46 nM和330 nM。没有发现与位于血淋巴中的hPRR的胞外域结合的证据。但是,在脂肪体内表达的hPRR胞外域的溶解的微粒体部分显示出特异性亲和力,但是在纯化后失去了其结合亲和力。通过将模拟注射脂肪体的微粒体部分与纯化的细胞外域混合,可以恢复其结合亲和力。人工跨膜结构域可能稳定了hPRR的细胞外结构域,并且天然构象可以在结构上恢复。据我们所知,这是描述hPRR跨膜和胞外域与配体相互作用的第一个发现,这可能有助于理解hPRR与配体的结合亲和力。

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