The oncogenic role and regulatory mechanism of ACAA2 in human ovarian cancer

Author:

Leng Yahui1234,Tian Tian1234,Tang Bingbing1234,Ma Yongqing1234,Li Zihang1234,Shi Qin1234,Liu Jiaqi1234,Zhou Yang1234,Wang Wenlong1234,Huang Chengyang1234,Zhao Xuan5,Feng Wenxiao1234,Liu Yanni1234,Liang Jingyin1234,Liu Tianhui1234,Liu Song1234,Ren Qiulei1234,Liu Jiakun1234,Zhang Te1234,Zhou Junsuo1234,Huang Qian1234,Zhang Yaling1234,Yin Bin1234,Xu Yuewen1234,Liu Liaoyuan1234,Shen Li1234,Zhao Hongyan1234

Affiliation:

1. School of Basic Medicine Hubei University of Medicine Shiyan China

2. Department of Obstetrics and Gynecology The Third Affiliated Hospital of Chongqing Medical University Chongqing China

3. Biomedical Research Institute Hubei University of Medicine Shiyan China

4. Department of Clinical Oncology, Taihe Hospital Hubei University of Medicine Shiyan China

5. The Second Clinical College Xi'an Medical University Xi'an China

Abstract

AbstractAcetyl‐CoAacyltransferase2 (ACAA2) is a key enzyme in the fatty acid oxidation pathway that catalyzes the final step of mitochondrial β oxidation, which plays an important role in fatty acid metabolism. The expression of ACAA2 is closely related to the occurrence and malignant progression of tumors. However, the function of ACAA2 in ovarian cancer is unclear. The expression level and prognostic value of ACAA2 were analyzed by databases. Gain and loss of function were carried out to explore the function of ACAA2 in ovarian cancer. RNA‐seq and bioinformatics methods were applied to illustrate the regulatory mechanism of ACAA2. ACAA2 overexpression promoted the growth, proliferation, migration, and invasion of ovarian cancer, and ACAA2 knockdown inhibited the malignant progression of ovarian cancer as well as the ability of subcutaneous tumor formation in nude mice. At the same time, we found that OGT can induce glycosylation modification of ACAA2 and regulate the karyoplasmic distribution of ACAA2. OGT plays a vital role in ovarian cancer as a function of oncogenes. In addition, through RNA‐seq sequencing, we found that ACAA2 regulates the expression of DIXDC1. ACAA2 regulated the malignant progression of ovarian cancer through the WNT/β‐Catenin signaling pathway probably. ACAA2 is an oncogene in ovarian cancer and has the potential to be a target for ovarian cancer therapy.

Publisher

Wiley

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