Increased METTL3-mediated m6A methylation inhibits embryo implantation by repressing HOXA10 expression in recurrent implantation failure.

Pingping Xue, Wenbo Zhou, Wenqiang Fan, Jianya Jiang, Chengcai Kong, Wei Zhou, Jianmei Zhou, Xiaoyang Huang, Haiyan Yang, Qian Han, Bin Zhang, Lingyun Xu, Bin Yu, Li Chen
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引用次数: 10

Abstract

Background: Recurrent implantation failure (RIF) is a major limitation of assisted reproductive technology, which is associated with impaired endometrial receptivity. Although N6-methyladenosine (m6A) has been demonstrated to be involved in various biological processes, its potential role in the endometrium of women with RIF has been poorly studied.

Methods: Global m6A levels and major m6A methyltransferases/demethylases mRNA levels in mid-secretory endometrium from normal and RIF women were examined by colorimetric m6A quantification strategy and quantitative real-time PCR, respectively. The effects of METTL3-mediated m6A modification on embryo attachment were evaluated by an vitro model of a confluent monolayer of Ishikawa cells co-cultured with BeWo spheroids, and the expression levels of homeo box A10 (HOXA10, a well-characterized marker of endometrial receptivity) and its downstream targets were evaluated by quantitative real-time PCR and Western blotting in METTL3-overexpressing Ishikawa cells. The molecular mechanism for METTL3 regulating HOXA10 expression was determined by methylated RNA immunoprecipitation assay and transcription inhibition assay.

Results: Global m6A methylation and METTL3 expression were significantly increased in the endometrial tissues from women with RIF compared with the controls. Overexpression of METTL3 in Ishikawa cells significantly decreased the ration of BeWo spheroid attachment, and inhibited HOXA10 expression with downstream decreased β3-integrin and increased empty spiracles homeobox 2 expression. METTL3 catalyzed the m6A methylation of HOXA10 mRNA and contributed to its decay with shortened half-life. Enforced expression of HOXA10 in Ishikawa cells effectively rescued the impairment of METTL3 on the embryo attachment in vitro.

Conclusion: Increased METTL3-mediated m6A modification represents an adverse impact on embryo implantation by inhibiting HOXA10 expression, contributing to the pathogenesis of RIF.

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mettl3介导的m6A甲基化增加通过抑制HOXA10在反复着床失败中的表达来抑制胚胎着床。
背景:反复植入失败(RIF)是辅助生殖技术的主要限制,它与子宫内膜容受性受损有关。虽然n6 -甲基腺苷(m6A)已被证明参与多种生物过程,但其在RIF妇女子宫内膜中的潜在作用尚未得到充分研究。方法:采用比色法m6A定量策略和实时荧光定量PCR检测正常和RIF女性中期分泌子宫内膜中m6A水平和主要m6A甲基转移酶/去甲基化酶mRNA水平。通过与BeWo球体共培养的石川细胞融合单层体外模型,评估mettl3介导的m6A修饰对胚胎附着的影响,并通过实时荧光定量PCR和Western blotting检测mettl3过表达石川细胞中homeo box A10 (HOXA10,表征良好的子宫内膜受受性标志物)及其下游靶标的表达水平。通过甲基化RNA免疫沉淀法和转录抑制法确定METTL3调控HOXA10表达的分子机制。结果:与对照组相比,RIF女性子宫内膜组织中m6A甲基化和METTL3的表达显著增加。过表达METTL3在Ishikawa细胞中显著降低BeWo球体附着率,抑制HOXA10表达,下游β3-整合素降低,空气门同源盒2表达增加。METTL3催化HOXA10 mRNA的m6A甲基化,并缩短其半衰期。在石川细胞中强制表达HOXA10可以有效地挽救METTL3对体外胚胎附着的损害。结论:mettl3介导的m6A修饰增加通过抑制HOXA10表达对胚胎着床产生不利影响,参与RIF的发病机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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