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Conformational Rigidity within Plasticity Promotes Differential Target Recognition of Nerve Growth Factor

机译:可塑性内的构象刚度促进神经生长因子的差异目标识别。

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摘要

Nerve Growth Factor (NGF), the prototype of the neurotrophin family, is essential for maintenance and growth of different neuronal populations. The X-ray crystal structure of NGF has been known since the early '90s and shows a β-sandwich fold with extensive loops that are involved in the interaction with its binding partners. Understanding the dynamical properties of these loops is thus important for molecular recognition. We present here a combined solution NMR/molecular dynamics study which addresses the question of whether and how much the long loops of NGF are flexible and describes the N-terminal intrinsic conformational tendency of the unbound NGF molecule. NMR titration experiments allowed identification of a previously undetected epitope of the anti-NGF antagonist antibody αD11 which will be of crucial importance for future drug lead discovery. The present study thus recapitulates all the available structural information and unveils the conformational versatility of the relatively rigid NGF loops upon functional ligand binding.
机译:神经营养因子家族的原型神经生长因子(NGF)对于不同神经元群体的维持和生长至关重要。 NGF的X射线晶体结构自90年代初期就已为人所知,它显示出β-三明治折叠,并带有广泛的环,这些环参与与其结合伴侣的相互作用。因此,了解这些环的动力学性质对于分子识别很重要。我们在这里提出了一个结合的溶液NMR /分子动力学研究,该研究解决了NGF的长环是否灵活以及有多少柔性的问题,并描述了未结合NGF分子的N端固有构象趋势。 NMR滴定实验允许鉴定抗NGF拮抗剂抗体αD11先前未发现的表位,这对于将来发现药物前导至关重要。因此,本研究概述了所有可用的结构信息,并揭示了功能性配体结合后相对刚性的NGF环的构象通用性。

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