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基于串联质谱标签技术的有症状副舟骨的蛋白质组学和磷酸化蛋白质组学综合分析

Integrative Proteomics and Phosphoproteomics Profiling of Symptomatic Accessory Navicular Bone Based on Tandem Mass Tag Technology.

作者信息

Liu Bin, Wei Ran, Wang Yuqing, Cheng Zishen, Jiang Liangliang, Pu Xiaopeng, Zhang Yaxing, Wang Yantao, Kang Qiangjun

机构信息

Department of Orthopaedics, Bethune International Peace Hospital, Shijiazhuang, 050082, China.

出版信息

Int J Gen Med. 2024 Dec 14;17:6207-6218. doi: 10.2147/IJGM.S484303. eCollection 2024.

Abstract

BACKGROUND

The accessory navicular bone (ANB) is a common accessory bone in the foot. Certain ANBs significantly impair patients' feet normal walking function. Foot injury is associated with ANB after athletic training. However, the molecular mechanism of foot injury with ANB after athletic training remains unclear. This study aims to investigate the proteomics and phosphoproteomics profile of foot injury with the ANB after athletic training.

PATIENTS AND METHODS

We collected ANB tissues and normal bone (NB) tissues from 5 foot injury patients with ANB after 3 months of athletic training to perform proteome sequencing by tandem mass tag (TMT) technology. Then, the differentially expressed proteins (DEPs) and phosphorylation proteins (DPPs) were identified between the ANB and NB groups. Furthermore, the potential functions of DEPs and DPPs were annotated, respectively. Besides, the protein-protein interaction (PPI) network was constructed for DEPs.

RESULTS

A total of 147 DEPs (129 upregulated and 18 downregulated) were detected. Functional enrichment suggested that they were involved in extracellular matrix (ECM)-receptor interaction and cell adhesion. PPI network showed that COL4A1 and COL4A2 had the highest interaction score, followed by RBBP4 and RBBP7. In addition, phosphoproteomics analysis identified 4 upregulated and 1 downregulated DPPs, and they were primarily enriched in regulating lipolysis in adipocytes.

CONCLUSION

Our study found that foot injury with ANB after exercise training may be associated with proteins related to inflammation and immunity (such as MRC1, UBE2N, CYCS), bone repair and regeneration (such as Emilin2, COL4A1, COL4A2, and ITGA9), and bone microstructure homeostasis (such as GCA and ANXA3). This provides new insights into understanding its pathogenesis and guiding treatment strategies.

摘要

背景

副舟骨(ANB)是足部常见的副骨。某些副舟骨会严重损害患者足部的正常行走功能。运动训练后足部损伤与副舟骨有关。然而,运动训练后副舟骨导致足部损伤的分子机制尚不清楚。本研究旨在探讨运动训练后副舟骨所致足部损伤的蛋白质组学和磷酸化蛋白质组学特征。

患者与方法

我们收集了5例运动训练3个月后因副舟骨导致足部损伤患者的副舟骨组织和正常骨组织,采用串联质谱标签(TMT)技术进行蛋白质组测序。然后,鉴定副舟骨组和正常骨组之间的差异表达蛋白(DEP)和磷酸化蛋白(DPP)。此外,分别对DEP和DPP的潜在功能进行注释。此外,构建了DEP的蛋白质-蛋白质相互作用(PPI)网络。

结果

共检测到147个差异表达蛋白(129个上调,18个下调)。功能富集表明它们参与细胞外基质(ECM)-受体相互作用和细胞粘附。PPI网络显示COL4A1和COL4A2的相互作用得分最高,其次是RBBP4和RBBP7。此外,磷酸化蛋白质组学分析鉴定出4个上调和1个下调的DPP,它们主要富集于调节脂肪细胞中的脂解作用。

结论

我们的研究发现,运动训练后副舟骨所致足部损伤可能与炎症和免疫相关蛋白(如MRC1、UBE2N、CYCS)、骨修复和再生相关蛋白(如Emilin2、COL4A1、COL4A2和ITGA9)以及骨微结构稳态相关蛋白(如GCA和ANXA3)有关。这为理解其发病机制和指导治疗策略提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b57/11653880/6c1c5bcf7ce7/IJGM-17-6207-g0001.jpg

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