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m6A 激活的 BACH1 通过表观遗传抑制 HSPB1 加剧重症急性胰腺炎中的铁死亡。

m6A-activated BACH1 exacerbates ferroptosis by epigenetic suppression HSPB1 in severe acute pancreatitis.

机构信息

Department of Emergency, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.

Department of Emergency, The Central Hospital of Enshi Tujia and Miao Autonomous Prefecture, Enshi, China.

出版信息

Drug Dev Res. 2024 Nov;85(7):e22256. doi: 10.1002/ddr.22256.

DOI:10.1002/ddr.22256
PMID:39285641
Abstract

Severe acute pancreatitis (SAP) is characterized by acute inflammation of the pancreas. The transcription factor BTB and CNC homology 1 (BACH1) has been implicated in various biological processes, including oxidative stress, apoptosis, and cell cycle regulation. However, its involvement in the pathogenesis of SAP remains relatively understudied. In the present work, our data demonstrated that BACH1 level was significantly increased in SAP patients, cellular, and animal models, while heat shock protein B1 (HSPB1) expression was weakened. Mechanistic assays validated that BACH1 acted as a transcriptional inhibitor of HSPB1. Moreover, HPDE6-C7 cells were stimulated with cerulein (Cer) and LPS to mimic the pathological stages of SAP in vitro. Depletion of BACH1 remarkably improved cell survival and alleviated the oxidative stress, ferroptosis, and inflammatory responses in SAP cell models. However, these changes were dramatically reversed upon co-inhibition of HSPB1. Animal findings confirmed that loss of BACH1 decreased pancreatic injury, inflammatory responses, and ferroptosis, but these effects were weakened by HSPB1 silence. Overall, these findings elucidate that the overexpression of BACH1 favors the ferroptosis and inflammation by transcriptionally inhibiting HSBP1, thereby exacerbating SAP progression.

摘要

严重急性胰腺炎(SAP)的特征是胰腺的急性炎症。转录因子 BTB 和 CNC 同源性 1(BACH1)已被涉及到各种生物过程,包括氧化应激、细胞凋亡和细胞周期调控。然而,它在 SAP 发病机制中的作用仍相对研究不足。在本工作中,我们的数据表明,BACH1 水平在 SAP 患者、细胞和动物模型中显著增加,而热休克蛋白 B1(HSPB1)的表达减弱。机制研究验证了 BACH1 作为 HSPB1 的转录抑制剂发挥作用。此外,HPDE6-C7 细胞用 cerulein(Cer)和 LPS 刺激,以模拟 SAP 的体外病理阶段。BACH1 的耗竭显著提高了 SAP 细胞模型中的细胞存活率,并减轻了氧化应激、铁死亡和炎症反应。然而,当同时抑制 HSPB1 时,这些变化则显著逆转。动物研究结果证实,BACH1 的缺失降低了胰腺损伤、炎症反应和铁死亡,但这些作用被 HSPB1 沉默削弱。总的来说,这些发现表明,BACH1 的过表达通过转录抑制 HSPB1 有利于铁死亡和炎症,从而加重 SAP 的进展。

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