首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >P-glycoprotein binds to ezrin at amino acid residues 149-242 in the FERM domain and plays a key role in the multidrug resistance of human osteosarcoma
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P-glycoprotein binds to ezrin at amino acid residues 149-242 in the FERM domain and plays a key role in the multidrug resistance of human osteosarcoma

机译:P-糖蛋白在FERM结构域的149-242位氨基酸残基上与ezrin结合,在人类骨肉瘤的多药耐药性中起关键作用

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摘要

Overexpression of the mdr1 gene encoding P-glycoprotein (Pgp) exerts a major role in reducing the effectiveness of cytotoxic therapy in osteosarcoma. The interaction between actin and Pgp has been shown to be instrumental in the establishment of multidrug resistance (MDR) in human tumor cells. The cytoskeleton linker ezrin exerts a pivotal role in maintaining the functional connection between actin and Pgp. We investigated the role of ezrin in a human multidrug-resistant osteosarcoma cell line overexpressing Pgp and compared it to its counterpart that overexpresses an ezrin deletion mutant. The results showed that Pgp binds at amino acid residues 149-242 of the N-terminal domain of ezrin. The interaction between ezrin and Pgp occurs in the plasma membrane of MDR cells, where they also co-localize with the ganglioside G M1 located in lipid rafts. The overexpression of the ezrin deletion mutant entirely restored drug susceptibility of osteosarcoma cells, consistent with Pgp dislocation to cytoplasmic compartments and abrogation of G M1/Pgp co-localization at the plasma membrane. Our study provides evidence that ezrin exerts a key role in MDR of human osteosarcoma cells through a Pgp-ezrin-actin connection that is instrumental for the permanence of Pgp into plasma membrane lipid rafts. We also show for the first time that Pgp-binding site is localized to amino acid residues 149-242 of the ezrin Band 4.1, Ezrin/Radixin/Moesin (FERM) domain, thus proposing a specific target for future molecular therapy aimed at counteracting MDR in osteosarcoma patients.
机译:编码P糖蛋白(Pgp)的mdr1基因的过表达在降低骨肉瘤细胞毒性治疗的有效性中起主要作用。肌动蛋白和Pgp之间的相互作用已显示出在人类肿瘤细胞中建立多药耐药性(MDR)的作用。细胞骨架连接蛋白ezrin在维持肌动蛋白和Pgp之间的功能性连接中起着关键作用。我们调查了ezrin在人类多药耐药骨肉瘤细胞系中过表达Pgp的作用,并将其与过表达ezrin缺失突变体的对应物进行了比较。结果显示Pgp结合在ezrin的N-末端结构域的氨基酸残基149-242上。 ezrin和Pgp之间的相互作用发生在MDR细胞的质膜上,在那里它们也与位于脂质筏中的神经节苷脂G M1共定位。 ezrin缺失突变体的过表达完全恢复了骨肉瘤细胞对药物的敏感性,这与Pgp错位到细胞质区室和G M1 / Pgp共定位在质膜上的废止是一致的。我们的研究提供了证据,证明ezrin通过Pgp-ezrin-actin连接在人类骨肉瘤细胞的MDR中发挥关键作用,这对Pgp永久进入质膜脂质筏具有重要作用。我们还首次显示Pgp结合位点定位于ezrin带4.1的氨基酸残基149-242,Ezrin / Radixin / Moesin(FERM)域,从而为今后针对MDR的分子疗法提出了一个具体的靶标在骨肉瘤患者中。

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