变体rs8400通过破坏miR-186的结合增强ALKBH5的表达,并促进神经母细胞瘤的进展。

Qian Guan, Huiran Lin, Wenfeng Hua, Lei Lin, Jiabin Liu, Linqing Deng, Jiao Zhang, Jiwen Cheng, Zhonghua Yang, Yong Li, Jun Bian, Haixia Zhou, Suhong Li, Li Li, Lei Miao, Huimin Xia, Jing He, Zhenjian Zhuo
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引用次数: 8

摘要

目的:AlkB同源物5(ALKBH5)已被证实与肿瘤密切相关。然而,ALKBH5在神经母细胞瘤中的作用及其分子机制很少报道。方法:采用美国国家生物技术信息中心dbSNP筛选和SNPinfo软件对ALKBH5中潜在的功能性单核苷酸多态性(SNPs)进行鉴定。TaqMan探针用于基因分型。使用多元逻辑回归模型来评估不同SNP基因座对神经母细胞瘤风险的影响。用免疫组化和蛋白质印迹法检测ALKBH5在神经母细胞瘤中的表达。细胞计数试剂盒-8(CCK-8)、平板集落形成和5-乙炔基-2'-脱氧尿苷(EdU)掺入测定用于评估细胞增殖。伤口愈合和Transwell测定用于比较细胞迁移和侵袭。进行热力学建模以预测miRNA与rs8400G/A多态性的ALKBH5结合的能力。采用RNA测序、N6-甲基腺苷(m6A)测序、m6A甲基化RNA免疫沉淀(MeRIP)和荧光素酶测定法来鉴定ALKBH5对SPP1的靶向作用。敲除ALKBH5抑制癌症细胞的增殖、迁移和侵袭。miR-186-3p负调控ALKBH5的表达,这种能力受到rs8400多态性的影响。当G核苷酸突变为A时,miR-186-3p与ALKBH5的3'-UTR结合的能力降低,导致ALKBH5上调。SPP1是ALKBH5癌基因的下游靶基因。敲除SPP1部分恢复了ALKBH5下调对神经母细胞瘤的抑制作用。下调ALKBH5可提高卡铂和依托泊苷治疗神经母细胞瘤的疗效。结论:我们首次发现编码m6A去甲基酶基因ALKBH5的rs8400G>A多态性增加了神经母细胞瘤的易感性,并确定了相关机制。由ALKBH5的这种遗传变异引起的miR-186-3p对ALKBH5的异常调节通过ALKBH5-SP1轴促进神经母细胞瘤的发生和发展。
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Variant rs8400 enhances ALKBH5 expression through disrupting miR-186 binding and promotes neuroblastoma progression.

Objective: AlkB homolog 5 (ALKBH5) has been proven to be closely related to tumors. However, the role and molecular mechanism of ALKBH5 in neuroblastomas have rarely been reported.

Methods: The potential functional single-nucleotide polymorphisms (SNPs) in ALKBH5 were identified by National Center for Biotechnology Information (NCBI) dbSNP screening and SNPinfo software. TaqMan probes were used for genotyping. A multiple logistic regression model was used to evaluate the effects of different SNP loci on the risk of neuroblastoma. The expression of ALKBH5 in neuroblastoma was evaluated by Western blotting and immunohistochemistry (IHC). Cell counting kit-8 (CCK-8), plate colony formation and 5-ethynyl-2'-deoxyuridine (EdU) incorporation assays were used to evaluate cell proliferation. Wound healing and Transwell assays were used to compare cell migration and invasion. Thermodynamic modelling was performed to predict the ability of miRNAs to bind to ALKBH5 with the rs8400 G/A polymorphism. RNA sequencing, N6-methyladenosine (m6A) sequencing, m6A methylated RNA immunoprecipitation (MeRIP) and a luciferase assay were used to identify the targeting effect of ALKBH5 on SPP1.

Results: ALKBH5 was highly expressed in neuroblastoma. Knocking down ALKBH5 inhibited the proliferation, migration and invasion of cancer cells. miR-186-3p negatively regulates the expression of ALKBH5, and this ability is affected by the rs8400 polymorphism. When the G nucleotide was mutated to A, the ability of miR-186-3p to bind to the 3'-UTR of ALKBH5 decreased, resulting in upregulation of ALKBH5. SPP1 is the downstream target gene of the ALKBH5 oncogene. Knocking down SPP1 partially restored the inhibitory effect of ALKBH5 downregulation on neuroblastoma. Downregulation of ALKBH5 can improve the therapeutic efficacy of carboplatin and etoposide in neuroblastoma.

Conclusions: We first found that the rs8400 G>A polymorphism in the m6A demethylase-encoding gene ALKBH5 increases neuroblastoma susceptibility and determines the related mechanisms. The aberrant regulation of ALKBH5 by miR-186-3p caused by this genetic variation in ALKBH5 promotes the occurrence and development of neuroblastoma through the ALKBH5-SPP1 axis.

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