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Identification of the hydrophobic strand in the A–B loop of leptin as major binding site III: implications for large-scale preparation of potent recombinant human and ovine leptin antagonists

机译:鉴定瘦素A–B环中的疏水链作为主要结合位点III:对大规模制备有效的重组人和绵羊瘦素拮抗剂的意义

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摘要

Interaction of leptin with its receptors resembles that of interleukin-6 and granulocyte colony-stimulating factor, which interact with their receptors through binding sites I–III. Site III plays a pivotal role in receptors' dimerization or tetramerization and subsequent activation. Leptin's site III also mediates the formation of an active multimeric complex through its interaction with the IGD (immunoglobulin-like domain) of LEPRs (leptin receptors). Using a sensitive hydrophobic cluster analysis of leptin's and LEPR's sequences, we identified hydrophobic stretches in leptin's A–B loop (amino acids 39–42) and in the N-terminal end of LEPR's IGD (amino acids 325–328) that are predicted to participate in site III and to interact with each other in a β-sheet-like configuration. To verify this hypothesis, we prepared and purified to homogeneity (as verified by SDS/PAGE, gel filtration and reverse-phase chromatography) several alanine muteins of amino acids 39–42 in human and ovine leptins. CD analyses revealed that those mutations hardly affect the secondary structure. All muteins acted as true antagonists, i.e. they bound LEPR with an affinity similar to the wild-type hormone, had no agonistic activity and specifically inhibited leptin action in several leptin-responsive in vitro bioassays. Alanine mutagenesis of LEPR's IGD (amino acids 325–328) drastically reduced its biological but not binding activity, indicating the importance of this region for interaction with leptin's site III. FRET (fluorescence resonance energy transfer) microscopy experiments have documented that the transient FRET signalling occurring upon exposure to leptin results not from binding of the ligand, but from ligand-induced oligomerization of LEPRs mediated by leptin's site III.
机译:瘦素与其受体的相互作用类似于白细胞介素6和粒细胞集落刺激因子,后者通过I-III结合位点与其受体相互作用。部位III在受体的二聚或四聚以及随后的活化中起关键作用。瘦素位点III还通过其与LEPRs(瘦素受体)的IGD(免疫球蛋白样结构域)的相互作用介导了活性多聚体复合物的形成。使用瘦素和LEPR序列的敏感疏水簇分析,我们确定了瘦素的A–B环(氨基酸39–42)和LEPR IGD的N末端(氨基酸325–328)的疏水性片段参与位点III并以β-折叠状构型彼此相互作用。为了验证这一假设,我们准备并纯化了人和羊瘦素中氨基酸39–42的几种丙氨酸突变蛋白,使其同质化(通过SDS / PAGE,凝胶过滤和反相色谱法验证)。 CD分析表明,这些突变几乎不会影响二级结构。所有突变蛋白均充当真正的拮抗剂,即它们以与野生型激素相似的亲和力与LEPR结合,无激动活性,并且在几种对瘦素有反应的体外生物测定中均特异性抑制了瘦素的作用。 LEPR的IGD(氨基酸325–328)的丙氨酸诱变作用大大降低了其生物学活性,但未降低其结合活性,表明该区域对于与瘦素III位点相互作用的重要性。 FRET(荧光共振能量转移)显微镜实验已证明,暴露于瘦素时发生的瞬时FRET信号传导不是由于配体的结合,而是由于瘦素位点III介导的配体诱导的LEPR寡聚。

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