4.6 Article

PDIA6 contributes to aerobic glycolysis and cancer progression in oral squamous cell carcinoma

Journal

WORLD JOURNAL OF SURGICAL ONCOLOGY
Volume 19, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12957-021-02190-w

Keywords

PDIA6; Proliferation; Migration; Aerobic glycolysis; Tumorigenesis

Funding

  1. Guiyang Science and Technology Project [ZuKeHeTong[2019]-9-14-5]
  2. Guiyang Baiyun District Science and Technology Project [[2019]38]
  3. Regional common diseases and adult stem cell transformation research innovation platform, Science and Technology Department of Guizhou Province [(2019)4008]

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The study revealed that PDIA6 is upregulated in OSCC tissues and its overexpression promotes aerobic glycolysis and the progression of oral squamous cell carcinoma.
Background/objective Accumulated evidence has demonstrated that aerobic glycolysis serves as a regulator of tumor cell growth, invasion, and angiogenesis. Herein, we explored the role of protein disulfide isomerase family 6 (PDIA6) in the aerobic glycolysis and the progression of oral squamous cell carcinoma (OSCC). Methods The expression pattern of PDIA6 in OSCC tissues was determined by qPCR and western blotting. Lentivirus and small interfering RNAs (siRNAs) were introduced into cells to upregulate and downregulate PDIA6 expression. CCK-8, flow cytometry, transwell, and xenotransplantation models were applied to detect cell proliferation, apoptosis, migration, invasion, and tumorigenesis, respectively. Results A high expression pattern of PDIA6 was observed in OSCC tissues, which was closely associated with lower overall survival and malignant clinical features in OSCC. Compared with the control group, overexpression of PDIA6 induced significant enhancements in cell growth, migration, invasiveness, and tumorigenesis and decreased cell apoptosis, while knockdown of PDIA6 caused opposite results. In addition, overexpression of PDIA6 increased glucose consumption, lactate production, and ATP level in OSCC cells. Conclusion This study demonstrated that PDIA6 expression was elevated in OSCC tissues, and overexpression of it promoted aerobic glycolysis and OSCC progression.

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