Cholesterol-Dependent Dimerization and Conformational Dynamics of EphA2 Receptors: Insights from Coarse-Grained and All-Atom Simulations.

Amita Rani Sahoo, Nisha Bhattarai, Matthias Buck
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Abstract

The EphA2 transmembrane receptor regulates cellular growth, differentiation, and motility, and its overexpression in various cancers makes it a potential biomarker for clinical cancer management. EphA2 signaling occurs through ligand-induced dimerization, where the transmembrane (TM) and juxtamembrane (JM) domains play crucial roles in stabilizing the dimer conformations and thereby facilitating signal transduction. Electrostatic interactions between basic JM residues and signaling lipids (PIP2 and PIP3) regulate phosphorylation while Cholesterol's potential role in modulating EphA2 activation remains unclear. To investigate this, we modeled the TM-full JM peptide of EphA2 and employed coarse-grain and all-atom simulations to investigate its dimerization in cholesterol-rich and cholesterol-deficient membranes. Our findings reveal that cholesterol stabilizes specific TM dimers and TM-JM interactions with PIP2, highlighting the importance of membrane composition in EphA2 dimerization, oligomerization, and clustering. These insights enhance our understanding of lipid-mediated regulation of EphA2 and its implications in receptor signaling and cancer progression.

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EphA2受体的胆固醇依赖性二聚化和构象动力学:来自粗粒度和全原子模拟的见解。
EphA2跨膜受体是细胞生长、分化和运动的关键调节因子,其在各种癌症中的过表达使其成为临床癌症管理的有前途的生物标志物。EphA2信号是通过配体诱导的二聚体介导的,二聚体通过细胞外区域的构象变化稳定其二聚体状态,并通过跨膜(TM)结构域与细胞内激酶区域连接。与许多受体酪氨酸激酶类似,位于TM和催化结构域之间的近膜区(JM)与TM结构域协调以促进信号转导。JM区域的碱性残基与信号脂质(如PIP2和PIP3)之间的静电相互作用通过隔离从而抑制JM和其他细胞内酪氨酸的磷酸化发挥关键作用。胆固醇在变构调节EphA2活化中的潜在作用尚不清楚。因此,阐明EphA2二聚化及其膜相互作用的结构机制对于理解这些脂质的影响至关重要。在这项研究中,我们模拟了EphA2受体的TM-full JM肽,并采用粗粒(CG)和全原子(AA)模拟来研究EphA2跨膜区域二聚体在富含胆固醇和缺乏胆固醇的膜中的构象转变。我们的研究表明,胆固醇稳定了特异性EphA2 TM二聚体和TM- jm - PIP2相互作用,突出了膜组成在调节EphA2二聚、寡聚和聚类中的关键作用。
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