N6-methyladenosine reader YTHDF2 promotes multiple myeloma cell proliferation through EGR1/p21cip1/waf1/CDK2-Cyclin E1 axis-mediated cell cycle transition

被引:0
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作者
Rui Liu
Jiyu Miao
Yachun Jia
Guangyao Kong
Fei Hong
Fangmei Li
Meng Zhai
Ru Zhang
Jiaxi Liu
Xuezhu Xu
Ting Wang
Hui Liu
Jinsong Hu
Yun Yang
Aili He
机构
[1] The Second Affiliated Hospital of Xi’an Jiaotong University,Department of Hematology
[2] The Second Affiliated Hospital of Xi’an Jiaotong University,National
[3] Xi’an Jiaotong University,Local Joint Engineering Research Center of Biodiagnostics & Biotherapy
[4] Xi’an Jiaotong University Health Science Center,Department of Tumor and Immunology in precision medical institute
来源
Oncogene | 2023年 / 42卷
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摘要
Multiple myeloma (MM) is the second most common hematological malignancy. N6-methyladenosine (m6A) is the most abundant RNA modification. YTH domain-containing family protein 2 (YTHDF2) recognizes m6A-cotaining RNAs and accelerates degradation to regulate cancer progression. However, the role of YTHDF2 in MM remains unclear. We investigated the expression levels and prognostic role of YTHDF2 in MM, and studied the effect of YTHDF2 on MM proliferation and cell cycle. The results showed that YTHDF2 was highly expressed in MM and was an independent prognostic factor for MM survival. Silencing YTHDF2 suppressed cell proliferation and caused the G1/S phase cell cycle arrest. RNA immunoprecipitation (RIP) and m6A-RIP (MeRIP) revealed that YTHDF2 accelerated EGR1 mRNA degradation in an m6A-dependent manner. Moreover, overexpression of YTHDF2 promoted MM growth via the m6A-dependent degradation of EGR1 both in vitro and in vivo. Furthermore, EGR1 suppressed cell proliferation and retarded cell cycle by activating p21cip1/waf1 transcription and inhibiting CDK2-cyclinE1. EGR1 knockdown could reverse the inhibited proliferation and cell cycle arrest upon YTHDF2 knockdown. In conclusion, the high expression of YTHDF2 promoted MM cell proliferation via EGR1/p21cip1/waf1/CDK2-cyclin E1 axis-mediated cell cycle transition, highlighting the potential of YTHDF2 as an effective prognostic biomarker and a promising therapeutic target for MM.
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页码:1607 / 1619
页数:12
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