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Two independent domains of hDlg are sufficient for subcellular targeting: the PDZ1-2 conformational unit and an alternatively spliced domain

机译:hDlg的两个独立域足以用于亚细胞 靶向:PDZ1-2构象单元和一个可变剪接 域

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摘要

hDlg, a human homologue of the Drosophila Dig tumor suppressor, contains two binding sites for protein 4.1, one within a domain containing three PSD-95/Dlg/ZO-1 (PDZ) repeats and another within the alternatively spliced I3 domain. Here, we further define the PDZ- protein 4.1 interaction in vitro and show the functional role of both 4.1 binding sites in situ. A single protease-resistant structure formed by the entirety of both PDZ repeats 1 and 2 (PDZ1-2) contains the protein 4.1-binding site. Both this PDZ1-2 site and the I3 domain associate with a 30-kD NH2-terminal domain of protein 4.1 that is conserved in ezrin/radixin/moesin (ERM) proteins. We show that both protein 4.1 and the ezrin ERM protein interact with the murine form of hDlg in a coprecipitating immune complex. In permeabilized cells and tissues, either the PDZ1-2 domain or the I3 domain alone are sufficient for proper subcellular targeting of exogenous hDlg. In situ, PDZ1-2- mediated targeting involves interactions with both 4.1/ERM proteins and proteins containing the COOH-terminal T/SXV motif. I3-mediated targeting depends exclusively on interactions with 4.1/ERM proteins. Our data elucidates the multivalent nature of membrane-associated guanylate kinase homologue (MAGUK) targeting, thus beginning to define those protein interactions that are critical in MAGUK function.
机译:hDlg是果蝇Dig肿瘤抑制因子的人类同源物,包含两个蛋白4.1结合位点,一个在一个含有三个PSD-95 / Dlg / ZO-1(PDZ)重复序列的结构域内,另一个在可变剪接的I3结构域内。在这里,我们进一步定义了PDZ-蛋白4.1的体外相互作用,并显示了两个4.1结合位点的原位功能。由两个PDZ重复序列1和2(PDZ1-2)的整体形成的单个蛋白酶抗性结构包含蛋白4.1结合位点。该PDZ1-2位点和I3结构域均与蛋白4.1的30 kD NH2末端结构域相关,该蛋白在ezrin / radixin / moesin(ERM)蛋白中保守。我们显示蛋白4.1和ezrin ERM蛋白与共沉淀免疫复合物中的hDlg鼠型相互作用。在透化的细胞和组织中,单独的PDZ1-2结构域或I3结构域足以对外源性hDlg进行正确的亚细胞靶向。在原位,PDZ1-2介导的靶向作用涉及与4.1 / ERM蛋白质和含有COOH末端T / SXV基序的蛋白质的相互作用。 I3介导的靶向作用完全取决于与4.1 / ERM蛋白的相互作用。我们的数据阐明了膜相关鸟苷酸激酶同源物(MAGUK)靶向的多价性质,从而开始定义那些在MAGUK功能中至关重要的蛋白质相互作用。

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