通过激活PI3K和TNFα信号通路生成软骨保护蛋白质组

Generation of the Chondroprotective Proteomes by Activating PI3K and TNFα Signaling.

作者信息

Sun Xun, Li Ke-Xin, Figueiredo Marxa L, Lin Chien-Chi, Li Bai-Yan, Yokota Hiroki

机构信息

Department of Pharmacology, School of Pharmacy, Harbin Medical University, Harbin 150081, China.

Department of Biomedical Engineering, Indiana University Purdue University Indianapolis, Indianapolis, IN 46202, USA.

出版信息

Cancers (Basel). 2022 Jun 21;14(13):3039. doi: 10.3390/cancers14133039.

Abstract

PURPOSE

To develop a novel treatment option for Chondrosarcoma (CS) and inflammatory arthritis, we evaluated a counterintuitive approach of activating tumorigenic and inflammatory signaling for generating joint-protective proteomes.

METHODS

We employed mesenchymal stem cells and chondrocytes to generate chondroprotective proteomes by activating PI3K signaling and the administration of TNFα. The efficacy of the proteomes was examined using human and mouse cell lines as well as a mouse model of CS. The regulatory mechanism was analyzed using mass spectrometry-based whole-genome proteomics.

RESULTS

While tumor progression and inflammatory responses were promoted by activating PI3K signaling and the administration of TNFα to CS cells and chondrocytes, those cells paradoxically generated a chondroprotective conditioned medium (CM). The application of CM downregulated tumorigenic genes in CS cells and TNFα and MMP13 in chondrocytes. Mechanistically, Hsp90ab1 was enriched in the chondroprotective CM, and it immunoprecipitated GAPDH. Extracellular GAPDH interacted with L1CAM and inhibited tumorigenic behaviors, whereas intracellular GAPDH downregulated p38 and exerted anti-inflammatory effects.

CONCLUSIONS

We demonstrated that the unconventional approach of activating oncogenic and inflammatory signaling can generate chondroprotective proteomes. The role of Hsp90ab1 and GAPDH differed in their locations and they acted as the uncommon protectors of the joint tissue from tumor and inflammatory responses.

摘要

目的

为开发一种针对软骨肉瘤(CS)和炎性关节炎的新型治疗方案,我们评估了一种反直觉的方法,即激活致癌和炎症信号以产生关节保护蛋白质组。

方法

我们利用间充质干细胞和软骨细胞,通过激活PI3K信号通路并给予TNFα来产生软骨保护蛋白质组。使用人和小鼠细胞系以及CS小鼠模型检测蛋白质组的功效。使用基于质谱的全基因组蛋白质组学分析调控机制。

结果

虽然激活PI3K信号通路并给予CS细胞和软骨细胞TNFα会促进肿瘤进展和炎症反应,但这些细胞却反常地产生了一种软骨保护条件培养基(CM)。CM的应用下调了CS细胞中的致癌基因以及软骨细胞中的TNFα和MMP13。从机制上讲,Hsp90ab1在软骨保护CM中富集,并且它免疫沉淀了GAPDH。细胞外GAPDH与L1CAM相互作用并抑制致癌行为,而细胞内GAPDH下调p38并发挥抗炎作用。

结论

我们证明了激活致癌和炎症信号的非常规方法可以产生软骨保护蛋白质组。Hsp90ab1和GAPDH的作用在位置上有所不同,它们作为关节组织免受肿瘤和炎症反应影响的罕见保护者发挥作用。

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