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Mechanism of LDL binding and release probed by structure-based mutagenesis of the LDL receptor

机译:LDL受体基于结构的诱变探测LDL结合和释放的机制

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摘要

The LDL receptor (LDL-R) mediates cholesterol metabolism in humans by binding and internalizing cholesterol transported by LDL. Several different molecular mechanisms have been proposed for the binding of LDL to LDL-R at neutral plasma pH and for its release at acidic endosomal pH. The crystal structure of LDL-R at acidic pH shows that the receptor folds back on itself in a closed form, obscuring parts of the ligand binding domain with the epidermal growth factor (EGF)-precursor homology domain. We have used a structure-based site-directed mutagenesis approach to examine 12 residues in the extracellular domain of LDL-R for their effect on LDL binding and release. Our studies show that the interface between the ligand binding domain and the EGF-precursor homology domain seen at acidic pH buries residues mediating both LDL binding and release. Our results are consistent with an alternative model of LDL-R whereby multiple modules of the extracellular domain interact with LDL at neutral pH, concurrently positioning key residues so that at acidic pH the LDL-R:LDL interactions become unfavorable, triggering release. After LDL release, the closed form of LDL-R may target its return to the cell surface.
机译:LDL受体(LDL-R)通过结合并内化LDL转运的胆固醇来介导人类的胆固醇代谢。已经提出了几种不同的分子机制,用于在中性血浆pH下将LDL与LDL-R结合以及在酸性内体pH下将其释放。 LDL-R在酸性pH下的晶体结构表明,受体以封闭形式向后折叠,使配体结合结构域的部分与表皮生长因子(EGF)前体同源结构域相混淆。我们已经使用基于结构的定点诱变方法来检查LDL-R胞外域中的12个残基对LDL结合和释放的影响。我们的研究表明,在酸性pH下,配体结合域和EGF前体同源域之间的界面掩埋了介导LDL结合和释放的残基。我们的结果与LDL-R的替代模型一致,在该模型中,胞外域的多个模块在中性pH下与LDL相互作用,同时定位关键残基,从而在酸性pH下LDL-R:LDL相互作用变得不利,触发释放。 LDL释放后,LDL-R的封闭形式可能会将其返回细胞表面。

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