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与Ⅴ型遗传性感觉自主神经病相关的NGF R100W突变,特异性地影响NGF及其前体proNGF和p75NTR的结合能量景观。

The NGF R100W Mutation, Associated with Hereditary Sensory Autonomic Neuropathy Type V, Specifically Affects the Binding Energetic Landscapes of NGF and of Its Precursor proNGF and p75NTR.

作者信息

Covaceuszach Sonia, Lamba Doriano

机构信息

Istituto di Cristallografia, Consiglio Nazionale delle Ricerche, 34149 Trieste, Italy.

Consorzio Interuniversitario "Istituto Nazionale Biostrutture e Biosistemi", 00136 Roma, Italy.

出版信息

Biology (Basel). 2023 Feb 25;12(3):364. doi: 10.3390/biology12030364.

Abstract

Nerve Growth Factor (NGF), the prototype of the neurotrophin family, stimulates morphological differentiation and regulates neuronal gene expression by binding to TrkA and p75NTR receptors. It plays a critical role in maintaining the function and phenotype of peripheral sensory and sympathetic neurons and in mediating pain transmission and perception during adulthood. A point mutation in the NGFB gene (leading to the amino acid substitution R100W) is responsible for Hereditary Sensory and Autonomic Neuropathy type V (HSAN V), leading to a congenital pain insensitivity with no clear cognitive impairments, but with alterations in the NGF/proNGF balance. The available crystal structures of the p75NTR/NGF and 2p75NTR/proNGF complexes offer a starting point for Molecular Dynamics (MD) simulations in order to capture the impact of the R100W mutation on their binding energetic landscapes and to unveil the molecular determinants that trigger their different physiological and pathological outcomes. The present in silico studies highlight that the stability and the binding energetic fingerprints in the 2p75NTR/proNGF complex is not affected by R100W mutation, which on the contrary, deeply affects the energetic landscape, and thus the stability in the p75NTR/NGF complex. Overall, these findings present insights into the structural basis of the molecular mechanisms beyond the clinical manifestations of HSAN V patients.

摘要

神经生长因子(NGF)是神经营养因子家族的原型,它通过与TrkA和p75NTR受体结合来刺激形态分化并调节神经元基因表达。它在维持外周感觉神经元和交感神经元的功能及表型,以及在成年期介导疼痛传递和感知方面发挥着关键作用。NGFB基因中的一个点突变(导致氨基酸取代R100W)是遗传性感觉和自主神经病变V型(HSAN V)的病因,导致先天性疼痛不敏感,无明显认知障碍,但NGF/前体NGF平衡发生改变。p75NTR/NGF和2p75NTR/前体NGF复合物的现有晶体结构为分子动力学(MD)模拟提供了一个起点,以便捕捉R100W突变对其结合能量景观的影响,并揭示引发其不同生理和病理结果的分子决定因素。目前的计算机模拟研究表明,2p75NTR/前体NGF复合物中的稳定性和结合能量指纹不受R100W突变的影响,相反,该突变会深刻影响能量景观,进而影响p75NTR/NGF复合物的稳定性。总体而言,这些发现为HSAN V患者临床表现背后分子机制的结构基础提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8130/10045213/e1691c66d1ee/biology-12-00364-g001.jpg

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