Novel candidate metastasis‐associated genes for synovial sarcoma

Author:

Zhao Zhiqing1,Niu Jianfang1,Wang Jichuan23,Zhang Ranxin4,Liang Haijie23,Ma Yingteng5,Ferrena Alexander46,Wang Wei23,Yang Rui4,Geller David S.4,Guo Wei23,Ren Tingting23,Hoang Bang H.4,Tang Xiaodong23,Yan Taiqiang1ORCID

Affiliation:

1. Department of Orthopedics Peking University First Hospital Beijing China

2. Musculoskeletal Tumor Center Peking University People's Hospital Beijing China

3. Beijing Key Laboratory of Musculoskeletal Tumor Beijing China

4. Department of Orthopedic Surgery, Montefiore Medical Center Albert Einstein College of Medicine Bronx New York USA

5. Department of Pathology Peking University People's Hospital Beijing China

6. Department of Genetics, Institute for Clinical and Translational Research Albert Einstein College of Medicine Bronx New York USA

Abstract

AbstractSynovial sarcoma (SS) is an aggressive soft tissue sarcoma with poor prognosis due to late recurrence and metastasis. Metastasis is an important prognostic factor of SS. This study aimed to identify the core genes and mechanisms associated with SS metastasis. Microarray data for GSE40021 and GSE40018 were obtained from the Gene Expression Omnibus database. 186 differentially expressed genes (DEGs) were identified. The biological functions and signalling pathways closely associated with SS metastasis included extracellular matrix (ECM) organization and ECM‐receptor interaction. Gene set enrichment analysis showed that the terms cell cycle, DNA replication, homologous recombination and mismatch repair were significantly enriched in the metastasis group. Weighted gene co‐expression network analysis identified the most relevant module and 133 hub genes, and 31 crossover genes were identified by combining DEGs. Subsequently, four characteristic genes, EXO1, NCAPG, POLQ and UHRF1, were identified as potential biomarkers associated with SS metastasis using the least absolute shrinkage and selection operator algorithm and validation dataset verification analysis. Immunohistochemistry results from our cohort of 49 patients revealed visible differences in the expression of characteristic genes between the non‐metastatic and metastatic groups. Survival analysis indicated that high expression of characteristic genes predicted poor prognosis. Our data revealed that primary SS samples from patients who developed metastasis showed activated homologous recombination and mismatch repair compared to samples from patients without metastasis. Furthermore, EXO1, NCAPG, POLQ and UHRF1 were identified as potential candidate metastasis‐associated genes. This study provides further research insights and helps explore the mechanisms of SS metastasis.

Funder

National Natural Science Foundation of China

National Institutes of Health

Publisher

Wiley

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