Affiliation:
1. Department of Gynecology and Obstetrics Nanfang Hospital Southern Medical University Guangzhou 510515 China
2. Cancer Center Integrated Hospital of Traditional Chinese Medicine Southern Medical University Guangzhou 510315 China
3. Department of Gynecological Oncology The Memorial Hospital of Sun Yat‐sen University Guangzhou 510000 China
4. Department of Neurosurgery Graduate School of Youjiang Medical University for Nationalities Baise Guangxi 533000 China
5. Department of Neurosurgery Liuzhou City People's Hospital Guangxi 545000 China
6. Institute for Biotechnology College of Pharmacy and Health Sciences St. John's University NY 11439 USA
7. Department of Gynecology Integrated Hospital of Traditional Chinese Medicine Southern Medical University Guangzhou 510315 China
Abstract
AbstractThe poor prognosis of serous ovarian cancer (SOC) is due to its high invasive capacity and cisplatin resistance of SOC cells, whereas the molecular mechanisms remain poorly understood. In the present study, the expression and function of non‐muscle myosin heavy chain IIB (MYH10) in SOC are identified by immunohistochemistry, in vitro, and in vivo studies, respectively. The mechanism of MYH10 is demonstrated by co‐immunoprecipitation, GST pull‐down, confocal laser assays, and so on. The results show that the knockdown of MYH10 suppressed SOC cell proliferation, migration, invasion, metastasis, and cisplatin resistance both in vivo and in vitro. Further studies confirm that the MYH10 protein functional domain combines with non‐muscle myosin heavy chain IIA (MYH9) to recruit the deubiquitinating enzyme Ubiquitin‐specific proteases 45 and deubiquitinates snail to inhibit snail degradation, eventually promoting tumorigenesis, progression, and cisplatin resistance in SOC. In clinical samples, MYH10 expression is significantly elevated in SOC samples compared to the paratumor samples. And the expression of MYH10 is positively correlated with MYH9 expression. MYH10+/MYH9+ co‐expression is an independent prognostic factor for predicting SOC patient survival. These findings uncover a key role of the MYH10‐MYH9‐snail axis in SOC carcinogenesis, progression, and cisplatin resistance, and provide potential novel therapeutic targets for SOC intervention.
Funder
Technische Universität München
Natural Science Foundation of Guangdong Province
Subject
General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)
Cited by
10 articles.
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