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Correlating RANK Ligand/RANK Binding Kinetics with Osteoclast Formation and Function

机译:RANK配体/ RANK结合动力学与破骨细胞形成和功能的相关性

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摘要

The interaction between Receptor Activator of NF-κB Ligand (RANKL) and its receptor RANK is essential for the differentiation and bone resorbing capacity of the osteoclast. Osteoprotegerin (OPG), a soluble homodimer, acts as a decoy receptor for RANKL and thus inhibits osteoclastogenesis. An imbalance in the RANKL/RANK/OPG axis, with decreased OPG and/or increased RANKL, is associated with diseases that favor bone loss, including osteoporosis. Recently, we established a yeast surface display system and screened libraries of randomly mutated RANKL proteins to identify mutations that abolish binding to OPG while preserving recognition of RANK. These efforts yielded several RANKL variants possessing substantially higher affinity for RANK compared to their wild-type (WT) counterpart. Using recombinant RANKL mutant proteins, we find those with increased affinity for RANK produce more robust signaling in osteoclast lineage cells and have greater osteoclastogenic potential. Our results are the first to document gain of function RANKL mutations. They indicate that the physiological RANKL/RANK interaction is not optimized for maximal signaling and function, perhaps reflecting the need to maintain receptor specificity within the tumor necrosis factor superfamily (TNFSF). Instead, we find, a biphasic relationship exists between RANKL/RANK affinity and osteoclastogenic capacity. In our panel of RANKL variants, this relationship is driven entirely by manipulation of the kinetic off-rate. Our structure-based and yeast surface display-derived insights into manipulating this critical signaling axis may aid in the design of novel anti-resorptive therapies as well as provide a paradigm for design of other receptor-specific TNF superfamily ligand variants.
机译:NF-κB配体的受体激活剂(RANKL)与其受体RANK之间的相互作用对于破骨细胞的分化和骨吸收能力至关重要。骨保护素(OPG)是一种可溶性同型二聚体,可作为RANKL的诱饵受体,从而抑制破骨细胞生成。 OPG降低和/或RANKL升高会导致RANKL / RANK / OPG轴不平衡,这与有利于骨质流失的疾病(包括骨质疏松症)有关。最近,我们建立了酵母表面展示系统,并筛选了随机突变的RANKL蛋白的文库,以鉴定出在保留RANK识别的同时废除与OPG结合的突变。这些努力产生了几种RANKL变体,与它们的野生型(WT)对应物相比,它们对RANK具有显着更高的亲和力。使用重组RANKL突变蛋白,我们发现与RANK亲和力增强的蛋白在破骨细胞谱系细胞中产生更强的信号传导,并具有更大的破骨细胞潜力。我们的结果首次证明了功能性RANKL突变的获得。他们指出,生理性RANKL / RANK相互作用并未针对最大信号传导和功能进行优化,这可能反映了在肿瘤坏死因子超家族(TNFSF)中维持受体特异性的需要。相反,我们发现,RANKL / RANK亲和力和破骨细胞能力之间存在两相关系。在我们的RANKL变体小组中,这种关系完全由操纵动力学失速率驱动。我们基于结构和酵母表面显示的洞察力来操纵这一关键的信号转导轴,可能有助于设计新型抗吸收疗法,并为设计其他受体特异性TNF超家族配体变体提供范例。

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