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Characterization of low density lipoprotein receptor ligand interactions by fluorescence resonance energy transfer.

机译:通过荧光共振能量转移表征低密度脂蛋白受体配体的相互作用。

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The low density lipoprotein receptor (LDLR) is the prototype of a family of cell surface receptors involved in a wide range of biological processes. A soluble low density lipoprotein receptor (sLDLR) and a tryptophan (Trp)-deficient variant human apolipoprotein E3 (apoE3) N-terminal domain (NT) were used in binding studies. The sole cysteine in apoE3-NT was covalently modified with an extrinsic fluorescence probe, N-(iodoacetyl)-N'-(5-sulfo-1-napthyl)ethylenediamine (AEDANS), and the protein was complexed with lipid. Incubation of sLDLR with AEDANS-Trp-null apoE3-NT dimyristoylphosphatidylcholine (DMPC) disks, but not lipid-free AEDANS-apoE, induced an enhancement in AEDANS fluorescence emission intensity (excitation, 280 nm) consistent with intermolecular energy transfer from excited Trp in sLDLR to receptor-bound apoE. Ligand binding to sLDLR required calcium and was saturable. In competition binding assays, unlabeled apoE3-NT DMPC inhibited AEDANS-apoE DMPC binding to sLDLR more effectively than low density lipoprotein. Fluorescence changes in this system reflected pH-dependent ligand binding and release from sLDLR consistent with models derived from the X-ray crystal structure of the receptor at endosomal pH. Intermolecular energy transfer from excited Trp in LDLR family members to fluorescently tagged ligands represents a sensitive and convenient assay for the characterization of the myriad molecular interactions ascribed to this family of receptor.
机译:低密度脂蛋白受体(LDLR)是涉及许多生物学过程的细胞表面受体家族的原型。可溶性低密度脂蛋白受体(sLDLR)和色氨酸(Trp)缺陷型人类载脂蛋白E3(apoE3)N末端域(NT)用于结合研究。 apoE3-NT中的唯一半胱氨酸被外部荧光探针N-(碘乙酰基)-N'-(5-磺基-1-萘基)乙二胺(AEDANS)共价修饰,并且该蛋白与脂质复合。将sLDLR与AEDANS-Trp-null apoE3-NT二豆油基磷脂酰胆碱(DMPC)盘一起孵育,但对不含脂质的AEDANS-apoE盘进行孵化,会引起AEDANS荧光发射强度的增强(激发,280 nm),与激发Trp的分子间能量转移相一致。 sLDLR与受体结合的apoE。配体与sLDLR的结合需要钙并且可饱和。在竞争结合试验中,未标记的apoE3-NT DMPC比低密度脂蛋白更有效地抑制AEDANS-apoE DMPC与sLDLR的结合。该系统中的荧光变化反映了pH依赖性配体的结合和从sLDLR释放,这与在内体pH时受体X射线晶体结构衍生的模型一致。从LDLR家族成员的兴奋Trp到荧光标记的配体的分子间能量转移代表了归因于该受体家族的众多分子相互作用的表征的灵敏且方便的测定法。

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