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首页> 外文期刊>Plant Biotechnology Journal >Expression and plasma membrane localization of the mammalian B?¢????cell receptor complex in transgenic Nicotiana tabacum
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Expression and plasma membrane localization of the mammalian B?¢????cell receptor complex in transgenic Nicotiana tabacum

机译:转基因烟草中哺乳动物Bαββ细胞受体复合物的表达和质膜定位

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摘要

The B?¢????cell antigen receptor (BCR), displayed on the plasma membrane of mature B cells of the mammalian immune system, is a multimeric complex consisting of a membrane?¢????bound immunoglobulin (mIg) noncovalently associated with the Ig???±/Ig???2 heterodimer. In this study, we engineered transgenic tobacco plants expressing all four chains of the BCR. ELISA, Western blotting and confocal microscopy demonstrated that the BCR was correctly assembled in plants, predominantly in the plasma membrane, and that the noncovalent link was detergent sensitive. This is the first example of a noncovalently assembled plasma membrane?¢????retained heterologous receptor in plants. In B cells of the mammalian immune system, following antigen binding to mIg, BCR is internalized and tyrosine residues on Ig???± and Ig???2 are phosphorylated activating a signaling cascade through interaction with protein kinases that ultimately leads to the initiation of gene expression. Expression of the BCR may therefore be an important tool for the study of plant endocytosis and the identification of previously unknown plant tyrosine kinases. The specificity and diversity of the antibody repertoire, coupled to the signal transduction capability of the Ig???±/Ig???2 heterodimer, also indicates that plants expressing BCR may in future be developed as environmental biosensors.
机译:在哺乳动物免疫系统的成熟B细胞的质膜上展示的B ????细胞抗原受体(BCR)是一种多聚体复合物,由膜???????结合的免疫球蛋白(mIg)非共价地组成。与Ig 2 + / Ig 2异二聚体相关。在这项研究中,我们设计了能表达BCR所有四个链的转基因烟草植物。 ELISA,Western印迹和共聚焦显微镜证明BCR在植物中正确组装,主要在质膜中,并且非共价键对去污剂敏感。这是植物中非共价组装的质膜保留异源受体的第一个例子。在哺乳动物免疫系统的B细胞中,抗​​原与mIg结合后,BCR被内在化,并且Ig 2+和Ig 2上的酪氨酸残基被磷酸化,通过与蛋白激酶相互作用激活信号级联,最终导致启动基因表达因此,BCR的表达可能是研究植物内吞作用和鉴定以前未知的植物酪氨酸激酶的重要工具。抗体库的特异性和多样性,再加上Ig 50 + / Ig 50 2异二聚体的信号转导能力,也表明表达BCR的植物将来可能被开发为环境生物传感器。

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