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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >MPP1 directly interacts with flotillins in erythrocyte membrane - Possible mechanism of raft domain formation
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MPP1 directly interacts with flotillins in erythrocyte membrane - Possible mechanism of raft domain formation

机译:MPP1直接与红细胞膜中的甘氨酸相互作用 - RAFT结构域形成的可能机制

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摘要

Flotillins are prominent, oligomeric protein components of erythrocyte (RBC) membrane raft domains and are considered to play an important structural role in lateral organization of the plasma membrane. In our previous work on erythroid membranes and giant plasma membrane vesicles (GPMVs) derived from them we have shown that formation of functional domains (resting state rafts) depends on the presence of membrane palmitoylated protein 1 (MPP1/p55), pointing to its new physiological role. Exploration of the molecular mechanism of MPP1 function in organizing membrane domains described here, through searching for its molecular partners in RBC membrane by using different methods, led to the identification of the raft-marker proteins, flotillin 1 and flotillin 2, as hitherto unreported direct MPP1 binding-partners in the RBC membrane. These proteins are found in high molecular-weight complexes in native RBC membrane and, significantly, their presence was shown to be separate from the well-known protein 4.1-dependent interactions of MPP1 with membrane proteins. Furthermore, FLIM analysis revealed that loss of the endogenous MPP1-flotillins interactions resulted in significant changes in RBC membrane-fluidity, emphasizing the physiological importance of such interactions in vivo. Therefore, our data establish a new perspective on the role of MPP1 in erythroid cells and suggests that direct MPP1-flotillins interactions could be the major driving-force behind the formation of raft domains in RBC.
机译:甘氨酸是突出的红细胞(RBC)膜筏结构域的寡聚蛋白组分,并且被认为在血浆膜的横向组织中发挥重要的结构作用。在我们以前的胺胺膜和巨血浆膜囊泡(GPMV)上衍生的巨型血浆膜(GPMV)我们已经表明,形成功能域(休息状态筏)取决于存在膜棕榈酰化蛋白1(MPP1 / P55)的存在,指向其新的生理作用。通过使用不同方法搜索RBC膜中的分子伴侣的组织膜结构域中描述的MPP1功能的分子机制探讨,导致筏标记蛋白,氟哌林1和氟脲2的鉴定,如迄今为止未报告的直接MPP1 RBC膜中的结合伴侣。这些蛋白质在天然RBC膜中的高分子量复合物中发现,并且显着地显示它们的存在与MPP1与膜蛋白的众所周知的蛋白质4.1依赖性相互作用分开。此外,Flim分析显示,内源MPP1-氟苯胺相互作用的损失导致RBC膜流动性的显着变化,强调体内这种相互作用的生理重要性。因此,我们的数据建立了关于MPP1在红细胞细胞中的作用的新视角,并表明直接MPP1-Flotillins相互作用可能是RBC中筏区域形成的主要动力。

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