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LIFR 基因突变重排 JAK/STAT 信号通路:揭示 Stüve-Wiedemann 综合征机制细节的研究。

Mutations in LIFR rewire the JAK/STAT signaling pathway: A study unveiling mechanistic details of Stüve-Wiedemann syndrome.

机构信息

Amity Institute of Biotechnology, Amity University, Kolkata, India.

Amity Institute of Biotechnology, Amity University, Kolkata, India.

出版信息

Comput Biol Med. 2024 Sep;179:108797. doi: 10.1016/j.compbiomed.2024.108797. Epub 2024 Jul 4.

Abstract

Stüve-Wiedemann syndrome (SWS), a rare autosomal recessive disorder, characterized by diminutive size, curvature of the elongated bones, bent fingers, episodes of heightened body temperature, respiratory distress or periods of breath-holding, and challenges with feeding, especially causes fatality in infants. SWS is an outcome of potential missense mutations in the leukemia inhibitory factor receptor gene reflected as numerous amino acid mutations at protein level. Employing in silico tools and techniques like mutational screening with Pred_MutHTP, I-Mutant2.0, PANTHER.db, PolyPhen, to classify mutations as deleterious/destabilizing, in conjunction with experimental data analysis, P136A and S279P emerged as 'effect'-causing mutations. Pre-existing knowledge suggests, SWS progression is effectuated conformationally altered and dysfunctional LIFR, unable to bind to LIF and further form the LIF/LIFR/gp130 signalling complex. To gain functional insights into the effect of the said mutations on the wild type protein, an all-atom, explicit, solvent molecular dynamics simulation was performed following docking approaches. Consequently, referring to the RMSD, RMSF, protein dynamic network analysis, energy landscape plots and domain motion analysis, it was revealed that unbound LIFR_WT was more prone to LIF binding as usual whereas the mutants exhibited considerable domain closure to inhibit LIF binding. We conducted binding affinity analysis via MM/GBSA and dissociation constant estimation after LIFR-LIF docking and found the WT_complex to be more stable and compact as a whole when compared to the flexible mutant complexes thus being associated with SWS. Our study offers a route for understanding molecular level implications upon LIFR mutations which opens an avenue for therapeutic interventions.

摘要

斯蒂文-韦德曼综合征(SWS)是一种罕见的常染色体隐性遗传病,其特征为身材矮小、长骨弯曲、手指弯曲、体温升高、呼吸困难或呼吸暂停、喂养困难,尤其是婴儿容易致死。SWS 是白血病抑制因子受体基因潜在错义突变的结果,表现为蛋白质水平上的许多氨基酸突变。本研究运用计算机模拟工具和技术,如预测突变 HTPS(Pred_MutHTP)、突变分析工具 I-Mutant2.0、PANTHER.db、PolyPhen 等,对突变进行有害/不稳定分类,结合实验数据分析,P136A 和 S279P 被归类为“效应”引起的突变。先前的知识表明,SWS 的进展是由构象改变和功能失调的 LIFR 引起的,其无法与 LIF 结合,进一步形成 LIF/LIFR/gp130 信号复合物。为了深入了解这些突变对野生型蛋白的影响,我们采用全原子、显式、溶剂分子动力学模拟方法,并结合对接方法进行研究。结果表明,参照 RMSD、RMSF、蛋白质动态网络分析、能量景观图和结构域运动分析,未结合的 LIFR_WT 更倾向于正常结合 LIF,而突变体则表现出相当大的结构域关闭,从而抑制 LIF 结合。我们通过 MM/GBSA 进行结合亲和力分析,并在 LIFR-LIF 对接后估计解离常数,发现 WT_complex 与柔性突变复合物相比,整体上更稳定和紧凑,因此与 SWS 相关。我们的研究为理解 LIFR 突变对分子水平的影响提供了一种途径,为治疗干预开辟了一条途径。

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