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Protein receptor-independent plasma membrane remodeling by HAMLET: a tumoricidal protein-lipid complex

机译:HAMLET的蛋白受体非依赖性质膜重塑:具有杀伤力的蛋白-脂质复合物

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A central tenet of signal transduction in eukaryotic cells is that extra-cellular ligands activate specific cell surface receptors, which orchestrate downstream responses. This ‘’protein-centric” view is increasingly challenged by evidence for the involvement of specialized membrane domains in signal transduction. Here, we propose that membrane perturbation may serve as an alternative mechanism to activate a conserved cell-death program in cancer cells. This view emerges from the extraordinary manner in which HAMLET (Human Alpha-lactalbumin Made LEthal to Tumor cells) kills a wide range of tumor cells in vitro and demonstrates therapeutic efficacy and selectivity in cancer models and clinical studies. We identify a ‘’receptor independent” transformation of vesicular motifs in model membranes, which is paralleled by gross remodeling of tumor cell membranes. Furthermore, we find that HAMLET accumulates within these de novo membrane conformations and define membrane blebs as cellular compartments for direct interactions of HAMLET with essential target proteins such as the Ras family of GTPases. Finally, we demonstrate lower sensitivity of healthy cell membranes to HAMLET challenge. These features suggest that HAMLET-induced curvature-dependent membrane conformations serve as surrogate receptors for initiating signal transduction cascades, ultimately leading to cell death.
机译:真核细胞信号转导的中心原则是细胞外配体激活特定的细胞表面受体,从而协调下游反应。这种“以蛋白质为中心”的观点越来越受到专门膜结构域参与信号转导的证据的挑战。在这里,我们建议膜微扰可以作为激活癌细胞中保守的细胞死亡程序的替代机制。这种观点源于HAMLET(人类α-乳白蛋白制成的致死至肿瘤细胞的致死细胞)在体外杀死多种肿瘤细胞并在癌症模型和临床研究中显示出治疗功效和选择性的非凡方式。我们在模型膜中发现了囊泡基序的“受体独立”转化,这与肿瘤细胞膜的总体重塑相平行。此外,我们发现HAMLET积累在这些从头的膜构象内,并将膜泡定义为HAMLET与必需靶蛋白(如GTPases的Ras家族)直接相互作用的细胞区室。最后,我们证明了健康细胞膜对HAMLET挑战的敏感性较低。这些特征表明,HAMLET诱导的曲率依赖性膜构象可作为启动信号转导级联反应的替代受体,最终导致细胞死亡。

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