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使用 TurboID 标记蛋白质组学鉴定髓鞘碱性蛋白邻近相互作用组。

Identification of Myelin Basic Protein Proximity Interactome Using TurboID Labeling Proteomics.

机构信息

Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 117997 Moscow, Russia.

Phystech School of Biological and Medical Physics, Moscow Institute of Physics and Technology (National Research University), 141701 Dolgoprudny, Russia.

出版信息

Cells. 2023 Mar 20;12(6):944. doi: 10.3390/cells12060944.

Abstract

Myelin basic protein (MBP) is one of the key structural elements of the myelin sheath and has autoantigenic properties in multiple sclerosis (MS). Its intracellular interaction network is still partially deconvoluted due to the unfolded structure, abnormally basic charge, and specific cellular localization. Here we used the fusion protein of MBP with TurboID, an engineered biotin ligase that uses ATP to convert biotin to reactive biotin-AMP that covalently attaches to nearby proteins, to determine MBP interactome. Despite evident benefits, the proximity labeling proteomics technique generates high background noise, especially in the case of proteins tending to semi-specific interactions. In order to recognize unique MBP partners, we additionally mapped protein interaction networks for deaminated MBP variant and cyclin-dependent kinase inhibitor 1 (p21), mimicking MBP in terms of natively unfolded state, size and basic amino acid clusters. We found that in the plasma membrane region, MBP is colocalized with adhesion proteins occludin and myelin protein zero-like protein 1, solute carrier family transporters ZIP6 and SNAT1, Eph receptors ligand Ephrin-B1, and structural components of the vesicle transport machinery-synaptosomal-associated protein 23 (), vesicle-associated membrane protein 3 (), protein transport protein hSec23B and cytoplasmic dynein 1 heavy chain 1. We also detected that MBP potentially interacts with proteins involved in Fe and lipid metabolism, namely, ganglioside GM2 activator protein, long-chain-fatty-acid-CoA ligase 4 (), NADH-cytochrome b5 reductase 1 () and metalloreductase STEAP3. Assuming the emerging role of ferroptosis and vesicle cargo docking in the development of autoimmune neurodegeneration, MBP may recruit and regulate the activity of these processes, thus, having a more inclusive role in the integrity of the myelin sheath.

摘要

髓鞘碱性蛋白(MBP)是髓鞘的关键结构元素之一,在多发性硬化症(MS)中具有自身抗原性。由于其展开的结构、异常碱性电荷和特定的细胞定位,其细胞内相互作用网络仍部分未被阐明。在这里,我们使用 MBP 与 TurboID 的融合蛋白,TurboID 是一种工程化的生物素连接酶,它使用 ATP 将生物素转化为反应性生物素-AMP,该 AMP 可共价连接到附近的蛋白质上,以确定 MBP 相互作用组。尽管有明显的好处,但临近标记蛋白质组学技术会产生很高的背景噪声,尤其是在蛋白质倾向于半特异性相互作用的情况下。为了识别独特的 MBP 伴侣,我们还绘制了脱氨 MBP 变体和细胞周期蛋白依赖性激酶抑制剂 1(p21)的蛋白质相互作用网络,这两种蛋白在天然展开状态、大小和碱性氨基酸簇方面与 MBP 相似。我们发现,在质膜区域,MBP 与黏附蛋白紧密连接蛋白和髓鞘蛋白零样蛋白 1、溶质载体家族转运蛋白 ZIP6 和 SNAT1、Eph 受体配体 Ephrin-B1 以及囊泡运输机制中的结构成分突触相关蛋白 23()、囊泡相关膜蛋白 3()、蛋白转运蛋白 hSec23B 和细胞质动力蛋白 1 重链 1 共定位。我们还检测到 MBP 可能与参与铁和脂质代谢的蛋白质相互作用,即神经节苷脂 GM2 激活蛋白、长链脂肪酸-CoA 连接酶 4()、NADH-细胞色素 b5 还原酶 1()和金属还原酶 STEAP3。假设铁死亡和囊泡货物对接在自身免疫性神经退行性变发展中的新兴作用,MBP 可能招募并调节这些过程的活性,从而在髓鞘完整性中发挥更全面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbd3/10047773/b72eb84ab6f0/cells-12-00944-g001.jpg

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