首页> 外文期刊>Protein Science: A Publication of the Protein Society >The dimerization interface of the glycoprotein Ibbeta transmembrane domain corresponds to polar residues within a leucine zipper motif.
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The dimerization interface of the glycoprotein Ibbeta transmembrane domain corresponds to polar residues within a leucine zipper motif.

机译:糖蛋白Ibbeta跨膜结构域的二聚化界面对应于亮氨酸拉链基序内的极性残基。

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摘要

Experiments with the transmembrane (TM) domains of the glycoprotein (GP) Ib-IX complex have indicated that the associations between the TM domains of these subunits play an important role in the proper assembly of the complex. As a first step toward understanding these associations, we previously found that the Ibbeta TM domain dimerized strongly in Escherichia coli cell membranes and led to Ibbeta TM-CYTO (cytoplasmic domain) dimerization in the SDS-PAGE assay, while neither Ibalpha nor IX TM-CYTO was able to dimerize. In this study, we used the TOXCAT assay to probe the Ibbeta TM domain dimerization interface by Ala- and Leu-scanning mutagenesis. Our results show that this interface is based on a leucine zipper-like heptad repeat pattern of amino acids. Mutating either one of polar residues Gln129 or His139 to Leu or Ala disrupted Ibbeta TM dimerization dramatically, indicating that polar residues might form part of the leucine zipper-based dimerization interface. Furthermore, these specific mutational effects in the TOXCAT assay were confirmed in the thiol-disulfide exchange and SDS-PAGE assays. The computational modeling studies further revealed that the most likely leucine zipper interface involves hydrogen bonding of Gln129 and electrostatic interaction of the His139 side chain. Correlation of computer modeling results with experimental mutagenesis studies on the Ibbeta TM domain may provide insights for understanding the role of the association of TM domains on the assembly of GP Ib-IX complex.
机译:对糖蛋白(GP)Ib-IX复合物的跨膜(TM)结构域进行的实验表明,这些亚基的TM结构域之间的关联在复合物的正确组装中起着重要作用。作为了解这些关联的第一步,我们先前发现Ibbeta TM域在大肠杆菌细胞膜中强烈二聚,并在SDS-PAGE分析中导致Ibbeta TM-CYTO(胞质域)二聚化,而Ibalpha和IX TM- CYTO能够二聚化。在这项研究中,我们使用TOXCAT分析通过Ala和Leu扫描诱变来探测Ibbeta TM域二聚化界面。我们的结果表明,该界面基于氨基酸的亮氨酸拉链样七肽重复序列。将极性残基Gln129或His139之一突变为Leu或Ala会极大地破坏Ibbeta TM二聚化,表明极性残基可能形成亮氨酸拉链基二聚化界面的一部分。此外,在TOXCAT分析中的这些特定突变效应在硫醇-二硫键交换和SDS-PAGE分析中得到了证实。计算模型研究进一步揭示,最可能的亮氨酸拉链界面涉及Gln129的氢键和His139侧链的静电相互作用。计算机建模结果与对Ibbeta TM结构域进行的诱变研究的相关性可能为理解TM结构域的关联在GP Ib-IX复合体装配中的作用提供见解。

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