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Insertion of a myc-tag within α-dystroglycan domains improves its biochemical and microscopic detection

机译:在α-dystroglycan域内插入myc标签可改善其生化和显微检测

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Epitope tags and fluorescent fusion proteins have become indispensable molecular tools for studies in the fields of biochemistry and cell biology. The knowledge collected on the subdomain organization of the two subunits of the adhesion complex dystroglycan (DG) enabled us to insert the 10 amino acids myc-tag at different locations along the α-subunit, in order to better visualize and investigate the DG complex in eukaryotic cells. We have generated two forms of DG polypeptides via the insertion of the myc-tag 1) within a flexible loop (between a.a. 170 and 171) that separates two autonomous subdomains, and 2) within the C-terminal domain in position 500. Their analysis showed that double-tagging (the β-subunit is linked to GFP) does not significantly interfere with the correct processing of the DG precursor (pre-DG) and confirmed that the α-DG N-terminal domain is processed in the cell before α-DG reaches its plasma membrane localization. In addition, myc insertion in position 500, right before the second Ig-like domain of α-DG, proved to be an efficient tool for the detection and pulling-down of glycosylated α-DG molecules targeted at the membrane. Further characterization of these and other myc-permissive site(s) will represent a valid support for the study of the maturation process of pre-DG and could result in the creation of a new class of intrinsic doubly-fluorescent DG molecules that would allow the monitoring of the two DG subunits, or of pre-DG, in cells without the need of antibodies.
机译:表位标签和荧光融合蛋白已成为生物化学和细胞生物学领域研究中必不可少的分子工具。关于粘附复合物dystroglycan(DG)的两个亚基的亚域组织的知识使我们能够沿着α亚基的不同位置插入10个氨基酸的myc标签,以便更好地可视化和研究DG的复杂性。真核细胞。我们通过将myc-tag插入1)在分隔两个自治子结构域的柔性环(在170和171之间)和2)在位置500的C端结构域中生成了两种形式的DG多肽。结果表明,双重标记(β-亚基与GFP连接)不会显着干扰DG前体(pre-DG)的正确加工,并证实了α-DGN端结构域在细胞中先于α被加工-DG达到其质膜定位。此外,myc在α-DG的第二个Ig样结构域正前方的位置500插入被证明是检测和拉低靶向膜的糖基化α-DG分子的有效工具。这些和其他myc允许位点的进一步表征将为研究pre-DG的成熟过程提供有效的支持,并可能导致创建一类新的固有双荧光DG分子,从而使无需抗体即可监测细胞中的两个DG亚基或pre-DG。

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