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Interplay of m6A and H3K27 trimethylation restrains inflammation during bacterial infection

机译:M6A和H3K27的相互作用抑制细菌感染期间的炎症

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While N sup6/sup-methyladenosine (msup6/supA) is the most prevalent modification of eukaryotic messenger RNA (mRNA) involved in various cellular responses, its role in modulating bacteria-induced inflammatory response remains elusive. Here, we showed that loss of the msup6/supA reader YTH-domain family 2 (YTHDF2) promoted demethylation of histone H3 lysine-27 trimethylation (H3K27me3), which led to enhanced production of proinflammatory cytokines and facilitated the deposition of msup6/supA cotranscriptionally. Mechanistically, the mRNA of lysine demethylase 6B ( KDM6B ) was msup6/supA-modified and its decay mediated by YTHDF2. YTHDF2 deficiency stabilized KDM6B to promote H3K27me3 demethylation of multiple proinflammatory cytokines and subsequently enhanced their transcription. Furthermore, we identified H3K27me3 as a barrier for msup6/supA modification during transcription. KDM6B recruits the msup6/supA methyltransferase complex to facilitate the methylation of msup6/supA in transcribing mRNA by removing adjacent H3K27me3 barriers. These results revealed cross-talk between msup6/supA and H3K27me3 during bacterial infection, which has broader implications for deciphering epitranscriptomics in immune homeostasis.
机译:虽然n 6 - 甲基腺苷(m 6 a)是涉及各种细胞反应中涉及的真核信使RNA(mRNA)的最普遍的修饰,其在调节细菌诱导的炎症中的作用反应仍然难以捉摸。在这里,我们表明,M 6 读者yth结构域家族2(YTHDF2)的损失促进了组蛋白H3赖氨酸-27三甲基化(H3K27ME3)的去甲基化,其导致增强促炎细胞因子的产生并促进沉积m 6 a cotra上注册。机械地,赖氨酸脱甲基酶6B(KDM6B)的mRNA是M 6 A-修饰的及其衰减由YTHDF2介导的衰减。 YTHDF2缺乏稳定的KDM6B促进多种促炎细胞因子的H3K27ME3去甲基化,随后增强了转录。此外,我们将H3K27ME3鉴定为在转录期间M 6的屏障。 KDM6B募集M 6 甲基转移酶复合物,以促进M 6 A的甲基化通过除去相邻的H3K27ME3屏障来转录mRNA。这些结果显示在细菌感染期间M 6 A和H3K27ME3之间的串扰,这对免疫稳态中解读了eATRASTFAMOMICS具有更广泛的影响。

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