ALPK2 acts as tumor promotor in development of bladder cancer through targeting DEPDC1A

Bladder cancer is one of the most common malignant tumors in the urinary system. The development and improvement of treatment efficiency require the deepening of the understanding of its molecular mechanism. This study investigated the role of ALPK2, which is rarely studied in malignant tumors, in the development of bladder cancer. Our results showed the upregulation of ALPK2 in bladder cancer, and data mining of TCGA database showed the association between ALPK2 and pathological parameters of patients with bladder cancer. In vitro and in vivo experiments demonstrated that knockdown of ALPK2 could inhibit bladder cancer development through regulating cell proliferation, cell apoptosis, and cell migration. Additionally, DEPDC1A is identified as a potential downstream of ALPK2 with direct interaction, whose overexpression/downregulation can inhibit/promote the malignant behavioral of bladder cancer cells. Moreover, the overexpression of DEPDC1A can rescue the inhibitory effects of ALPK2 knockdown on bladder cancer. In conclusion, ALPK2 exerts a cancer-promoting role in the development of bladder cancer by regulating DEPDC1A, which may become a promising target to improve the treatment strategy of bladder cancer.
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Yuchen Wang #, Jie Wu #, Wenjie Luo #, Hailiang Zhang, Guohai Shi, Yijun Shen, Yao Zhu, Chunguang Ma, Bo Dai, Dingwei Ye, Yiping Zhu

  • Cell Death Dis
  • 9
  • 2021 Jul 1;12(7):661.
  • Human
  • 抗体芯片
  • 泌尿系统
  • 泌尿系统
  • 膀胱癌
  • Bad,TRAIL R1/DR4,PON2,Bax,TRAIL R2/DR5,p21/CIP1/CDNK1A,Bcl-2,FADD,p27/Kip1,Bcl-x,Fas/TNFSF6,Phospho-p53 (S15),Pro-Caspase-3,HIF-1 alpha,Phospho-p53 (S46),Cleaved Caspase-3,HO-1/HMOX1/HSP32,Phospho-p53 (S392),Catalase,HO-2/HMOX2,Phospho-Rad17 (S635),cIAP-1,HSP27,Pro-Caspase-3,cIAP-2,HSP60,SMAC/Diablo,Claspin,HSP70,Survivin,Clusterin,HTRA2/Omi,TNF RI/TNFRSF1A,Cytochrome c,Livin,XIAP

相关货号

LXAH036-1

Abstract

Bladder cancer is one of the most common malignant tumors in the urinary system. The development and improvement of treatment efficiency require the deepening of the understanding of its molecular mechanism. This study investigated the role of ALPK2, which is rarely studied in malignant tumors, in the development of bladder cancer. Our results showed the upregulation of ALPK2 in bladder cancer, and data mining of TCGA database showed the association between ALPK2 and pathological parameters of patients with bladder cancer. In vitro and in vivo experiments demonstrated that knockdown of ALPK2 could inhibit bladder cancer development through regulating cell proliferation, cell apoptosis, and cell migration. Additionally, DEPDC1A is identified as a potential downstream of ALPK2 with direct interaction, whose overexpression/downregulation can inhibit/promote the malignant behavioral of bladder cancer cells. Moreover, the overexpression of DEPDC1A can rescue the inhibitory effects of ALPK2 knockdown on bladder cancer. In conclusion, ALPK2 exerts a cancer-promoting role in the development of bladder cancer by regulating DEPDC1A, which may become a promising target to improve the treatment strategy of bladder cancer.
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