WDR54 exerts oncogenic roles in T‐cell acute lymphoblastic leukemia

Author:

Li Huan1,Zhang Danlan1,Fu Qiuxia1,Wang Shang2,Zhang Xin1,Lin Zhixian1,Wang Zhongyuan1,Song Jiaxing1,Su Zijie1,Xue VivianWeiwen1,Liu Shanshan1,Chen Yun3,Zhou Liang1,Zhao Na4ORCID,Lu Desheng1ORCID

Affiliation:

1. Guangdong Provincial Key Laboratory of Regional Immunity and Diseases, International Cancer Center, Marshall Laboratory of Biomedical Engineering, Department of Pharmacology Shenzhen University Medical School Shenzhen China

2. Chongqing Key Laboratory of Traditional Chinese Medicine for Prevention and Cure of Metabolic Diseases, College of Traditional Chinese Medicine Chongqing Medical University Chongqing China

3. Department of Immunology, Key Laboratory of Human Functional Genomics of Jiangsu Province, Gusu School Nanjing Medical University Nanjing China

4. Department of Hematology, the First Affiliated Hospital of USTC, Division of Life Sciences and Medicine University of Science and Technology of China Hefei China

Abstract

AbstractWDR54 has been recently identified as a novel oncogene in colorectal and bladder cancers. However, the expression and function of WDR54 in T‐cell acute lymphoblastic leukemia (T‐ALL) were not reported. In this study, we investigated the expression of WDR54 in T‐ALL, as well as its function in T‐ALL pathogenesis using cell lines and T‐ALL xenograft. Bioinformatics analysis indicated high mRNA expression of WDR54 in T‐ALL. We further confirmed that the expression of WDR54 was significantly elevated in T‐ALL. Depletion of WDR54 dramatically inhibited cell viability and induced apoptosis and cell cycle arrest at S phase in T‐ALL cells in vitro. Moreover, knockdown of WDR54 impeded the process of leukemogenesis in a Jurkat xenograft model in vivo. Mechanistically, the expression of PDPK1, phospho‐AKT (p‐AKT), total AKT, phospho‐ERK (p‐ERK), Bcl‐2 and Bcl‐xL were downregulated, while cleaved caspase‐3 and cleaved caspase‐9 were upregulated in T‐ALL cells with WDR54 knockdown. Additionally, RNA‐seq analysis indicated that WDR54 might regulate the expression of some oncogenic genes involved in multiple signaling pathways. Taken together, these findings suggest that WDR54 may be involved in the pathogenesis of T‐ALL and serve as a potential therapeutic target for the treatment of T‐ALL.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cancer Research,Oncology,General Medicine

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