高甘露糖聚糖与货物凝集素相互作用的反翻构象的原子可视化:MD模拟视角。

IF 3.2 4区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Proteins-Structure Function and Bioinformatics Pub Date : 2025-01-01 Epub Date: 2023-07-19 DOI:10.1002/prot.26556
Nisha Grandhi Jayaprakash, Dheeraj Kumar Sarkar, Avadhesha Surolia
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引用次数: 0

摘要

蛋白质-碳水化合物相互作用在介导几种生物分子识别事件中起着至关重要的作用。我们试图通过理解碳水化合物结合蛋白如何解释聚糖编码来解开其复杂性。我们的目的是解读凝集素介导的内质网(ER)识别,它在ER介导的质量控制(ER- qc)中起着至关重要的作用。ER-QC在蛋白质折叠、运输和降解三个阶段起作用。蛋白QC的改变导致内质网相关的储存障碍。货物运输蛋白ergic53和vip36是维持细胞内稳态所必需的,是我们的主要关注点。它们在折叠的糖蛋白上识别单糖基化/高甘露糖n -聚糖。本文首次采用先进的采样技术——复制交换分子动力学对高甘露聚糖复合物中的内质网货集素进行了动力学研究,以揭示其固有的构象异质性和结合机制。该研究包括对蛋白质与三种高甘露糖聚糖(man8b、Man9和单糖基化聚糖)络合的模拟。识别过程是通过MD模拟捕获的,以获得机制的见解,并通过二面角分析表征聚糖在其原生和束缚状态下的动力学。结果表明,聚糖的翻转构象是区分它们与蛋白质相互作用的关键。在其聚糖识别事件中,类似的聚糖构象是Ergic53和Vip36的首选。Ergic53选择Man8B,而Vip36选择Man9,与之前的实验报告一致。这些模拟提供了该机制在空间和时间尺度上的计算微观范围。结果与已发表的关于这些凝集素特异性的实验数据相关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atomic visualization of flipped-back conformations of high mannose glycans interacting with cargo lectins: An MD simulation perspective.

Protein-carbohydrate interactions play a crucial role in mediating several biomolecular recognition events. We attempt to unravel its intricacies by understanding how carbohydrate-binding proteins interpret the glycan code. We aim to decipher lectin-mediated recognition in the endoplasmic reticulum (ER), which plays a crucial role in ER-mediated quality control (ER-QC). The ER-QC functions in three phases-protein folding, transport, and degradation. Altered protein QC leads to ER-related storage disorders. Cargo transport proteins-Ergic53 and Vip36-necessary for maintaining cellular homeostasis-are our primary focus. They recognize monoglucosylated/high mannose N-glycans on the folded glycoproteins. This article reports on the first dynamic investigation of the ER cargo lectins in complex with the high mannose glycans using an advanced sampling technique-replica exchange molecular dynamics to decipher the inherent conformational heterogeneity and the binding mechanism. The study involves simulations for the proteins complexed with three high mannose glycans-Man8B, Man9, and mono-glucosylated glycan. The recognition process is captured using MD simulations to achieve mechanistic insights and characterize the dynamics of glycans in their native and bound states via dihedral angle analysis. Results indicate that the flipped conformation of the glycans was crucial in differentiating their interaction with the proteins. Similar conformers of the glycans are preferred for Ergic53 and Vip36 in their glycan recognition events. Ergic53 preferred Man8B while it was Man9 for Vip36, in coherence with the previous experimental reports. These simulations provide a computational microscopic purview of the mechanism at both spatial and temporal scales. The results correlate with the published experimental data on the specificities of these lectins.

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来源期刊
Proteins-Structure Function and Bioinformatics
Proteins-Structure Function and Bioinformatics 生物-生化与分子生物学
CiteScore
5.90
自引率
3.40%
发文量
172
审稿时长
3 months
期刊介绍: PROTEINS : Structure, Function, and Bioinformatics publishes original reports of significant experimental and analytic research in all areas of protein research: structure, function, computation, genetics, and design. The journal encourages reports that present new experimental or computational approaches for interpreting and understanding data from biophysical chemistry, structural studies of proteins and macromolecular assemblies, alterations of protein structure and function engineered through techniques of molecular biology and genetics, functional analyses under physiologic conditions, as well as the interactions of proteins with receptors, nucleic acids, or other specific ligands or substrates. Research in protein and peptide biochemistry directed toward synthesizing or characterizing molecules that simulate aspects of the activity of proteins, or that act as inhibitors of protein function, is also within the scope of PROTEINS. In addition to full-length reports, short communications (usually not more than 4 printed pages) and prediction reports are welcome. Reviews are typically by invitation; authors are encouraged to submit proposed topics for consideration.
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