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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Transmembrane domain of EphA1 receptor forms dimers in membrane-like environment.
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Transmembrane domain of EphA1 receptor forms dimers in membrane-like environment.

机译:EphA1受体的跨膜域在膜样环境中形成二聚体。

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摘要

Eph receptor tyrosine kinases (RTKs) are activated by a ligand-mediated dimerization in the plasma membrane and subjected to clusterization at a high local density of receptors and their membrane-anchored ligands. Interactions between transmembrane domains (TMDs) were recognized to assist to the ligand-binding extracellular domains in the dimerization of some RTKs, whereas a functional role of Eph-receptor TMDs remains unknown. We have studied a propensity of EphA1-receptor TMDs (TMA1) to self-association in membrane-mimetic environment. Dimerization of TMA1 in SDS environment was revealed by SDS-PAGE and confirmed by FRET analysis of the fluorescently labeled peptide (Kd=7.2+/-0.4 microM at 1.5 mM SDS). TMA1 dimerization was also found in 1,2-dimyristoyl-sn-glycero-3-phosphocholine liposomes (DeltaG=-15.4+/-0.5 kJ/mol). Stability of TMA1 dimers is comparable to the reported earlier stability of TMD dimers of fibroblast growth factor receptor 3 and tenfold weaker than the stability of TMD dimers of glycophorin A possessing high propensity to dimerization. Our results suggest that EphA1-receptor TMD contribute to the dimerization-mediated receptor activation. An assumed role of the TMD interactions is the efficient signal transduction due to TMD-driving mutual orientation of kinase domains in dimers, while a relatively low force of the TMD interactions does not prevent a ligand-controlled regulation of the receptor dimerization.
机译:Eph受体酪氨酸激酶(RTK)被质膜中的配体介导的二聚化激活,并在受体及其膜锚定配体的高局部密度下发生簇化。跨膜结构域(TMDs)之间的相互作用被认为有助于某些RTKs的二聚作用中结合配体的细胞外结构域,而Eph受体TMD的功能作用仍然未知。我们已经研究了在膜模拟环境中EphA1受体TMDs(TMA1)自缔合的倾向。通过SDS-PAGE揭示了TMA1在SDS环境中的二聚化,并通过FRET分析荧光标记的肽(在1.5 mM SDS下Kd = 7.2 +/- 0.4 microM)进行了证实。在1,2-二肉豆蔻酰基-sn-甘油-3-磷酸胆碱脂质体中也发现了TMA1二聚化(DeltaG = -15.4 +/- 0.5 kJ / mol)。 TMA1二聚体的稳定性与已报道的成纤维细胞生长因子受体3的TMD二聚体的早期稳定性相当,比具有高二聚化倾向的糖蛋白A的TMD二聚体的稳定性弱十倍。我们的结果表明EphA1受体TMD有助于二聚化介导的受体活化。 TMD相互作用的假定作用是由于二聚体中激酶域的TMD驱动相互定向而导致的有效信号转导,而TMD相互作用的相对较低的作用力不会阻止配体控制的受体二聚化调节。

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