HTRA1 promotes EMT through the HDAC6/Ac‐α‐tubulin pathway in human GBM cells

Author:

Zhao Wenbo12,Wu Yibo1,Wang Shuai3,Zhao Feihu1,Liu Wenyu1,Xue Zhiyi1,Zhang Lin4,Wang Jian15,Han Mingzhi12ORCID,Li Xingang12ORCID,Huang Bin12ORCID

Affiliation:

1. Department of Neurosurgery, Cheeloo College of Medicine and Institute of Brain and Brain‐Inspired Science, Qilu Hospital Shandong University Jinan China

2. Jinan Microecological Biomedicine Shandong Laboratory and Shandong Key Laboratory of Brain Function Remodeling Jinan China

3. University of Pittsburgh Medical Center Hillman Cancer Center Pittsburgh Pennsylvania USA

4. Department of Clinical Laboratory Qilu Hospital of Shandong University Jinan China

5. Department of Biomedicine University of Bergen Bergen Norway

Abstract

AbstractBackgroundThe infiltrative nature of human gliomas renders complete surgical removal of tumors futile. Thus, illuminating mechanisms of their infiltrative properties may improve therapies and outcomes of glioma patients.MethodsComprehensive bioinformatic analyses of PRSS family were undertaken. Transfection of HTRA1 siRNAs was used to suppress HTRA1 expression. CCK‐8, EdU, and colony formation assay were employed to assess cell viability, and cell migration/invasion was detected by transwell, wound healing, and 3D tumor spheroid invasion assays. Immunoprecipitation was applied to study the mechanism that HTRA1 affected cell migration. In addition, in situ xenograft tumor model was employed to explore the role of HTRA1 in glioma growth in vivo.ResultsHTRA1 knockdown could lead to suppression of cell viability, migration and invasion, as well as increased apoptosis. Immunoprecipitation results indicates HTRA1 might facilitate combination between HDAC6 and α‐tubulin to enhance cell migration by decreasing α‐tubulin acetylation. Besides, HTRA1 knockdown inhibited the growth of xenografts derived from orthotopic implantation of GBM cells and prolonged the survival time of tumor‐bearing mice.ConclusionOur results indicate that HTRA1 promotes the proliferation and migration of GBM cells in vitro and in vivo, and thus may be a potential target for treatment in gliomas.

Funder

Department of Science and Technology of Shandong Province

Publisher

Wiley

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