Sonic hedgehog signaling facilitates pyroptosis in mouse heart following ischemia/reperfusion via enhancing the formation of CARD10-BCL10-MALT1 complex

IF 4.2 3区 医学 Q1 PHARMACOLOGY & PHARMACY European journal of pharmacology Pub Date : 2024-09-27 DOI:10.1016/j.ejphar.2024.177019
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Abstract

Pyroptosis has been found to contribute to myocardial ischemia/reperfusion (I/R) injury, but the exact mechanisms that initiate myocardial pyroptosis are not fully elucidated. Sonic hedgehog (SHH) signaling is activated in heart suffered I/R, and intervention of SHH signaling has been demonstrated to protect heart from I/R injury. Caspase recruitment domain-containing protein 10 (CARD10)-B cell lymphoma 10 (BCL10)-mucosa-associated lymphoid tissue lymphoma translocation protein 1 (MALT1) (CBM) complex could transduce signals from the membrane and induce inflammatory pathways in non-hematopoietic cells, which could be a downstream effector of SHH signaling pathway. This study aims to explore the role of SHH signaling in I/R-induced myocardial pyroptosis and its relationship with the CBM complex. C57BL/6J mice were subjected to 45 min-ischemia followed by 24 h-reperfusion to establish a myocardial I/R model, and H9c2 cells underwent hypoxia/reoxygenation (H/R) to mimic myocardial I/R model in vitro. Firstly, SHH signaling was significantly activated in heart suffered I/R in an autocrine- or paracrine-dependent manner via its receptor PTCH1, and inhibition of SHH signaling decreased myocardial injury via reducing caspase-11-dependent pyroptosis, concomitant with attenuating CBM complex formation. Secondly, suppression of SHH signaling decreased protein kinase C α (PKCα) level, but inhibition of PKCα attenuated CBM complex formation without impacting the protein levels of SHH and PTCH1. Finally, disruption of the CBM complex prevented MALT1 from recruiting of TRAF6, which was believed to trigger the caspase-11-dependent pyroptosis. Based on these results, we conclude that inhibition of SHH signaling suppresses pyroptosis via attenuating PKCα-mediated CARD10-BCL10-MALT1 complex formation in mouse heart suffered I/R.
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音速刺猬信号通过增强 CARD10-BCL10-MALT1 复合物的形成,促进缺血/再灌注后小鼠心脏的热解。
研究发现,嗜热症是造成心肌I/R损伤的原因之一,但引发心肌嗜热症的确切机制尚未完全阐明。音速刺猬(SHH)信号在心脏遭受缺血/再灌注(I/R)时被激活,干预SHH信号已被证明可保护心脏免受I/R损伤。Caspase募集域含蛋白10(CARD10)-B细胞淋巴瘤10(BCL10)-粘膜相关淋巴组织淋巴瘤易位蛋白1(MALT1)(CBM)复合物可从膜上传递信号并诱导非造血细胞的炎症通路,这可能是SHH信号通路的下游效应物。本研究旨在探讨SHH信号在I/R诱导的心肌脓毒症中的作用及其与CBM复合物的关系。对C57BL/6J小鼠进行45分钟缺血后24小时再灌注以建立心肌I/R模型,并对H9c2细胞进行缺氧/再氧合(H/R)以模拟体外心肌I/R模型。首先,SHH信号通过其受体PTCH1以自分泌或旁分泌依赖的方式在遭受I/R的心脏中被显著激活,抑制SHH信号通过减少caspase-11依赖的热凋亡减轻心肌损伤,同时减轻CBM复合物的形成。其次,抑制 SHH 信号传导可降低蛋白激酶 C α(PKCα)的水平,但抑制 PKCα 可减轻 CBM 复合物的形成,而不会影响 SHH 和 PTCH1 的蛋白水平。最后,CBM 复合物的破坏阻止了 MALT1 招募 TRAF6,而 TRAF6 被认为会触发依赖于 caspase-11 的热凋亡。基于这些结果,我们得出结论:抑制 SHH 信号传导可通过减弱 PKCα 介导的 CARD10-BCL10-MALT1 复合物的形成来抑制小鼠心脏遭受 I/R 时的裂解。
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来源期刊
CiteScore
9.00
自引率
0.00%
发文量
572
审稿时长
34 days
期刊介绍: The European Journal of Pharmacology publishes research papers covering all aspects of experimental pharmacology with focus on the mechanism of action of structurally identified compounds affecting biological systems. The scope includes: Behavioural pharmacology Neuropharmacology and analgesia Cardiovascular pharmacology Pulmonary, gastrointestinal and urogenital pharmacology Endocrine pharmacology Immunopharmacology and inflammation Molecular and cellular pharmacology Regenerative pharmacology Biologicals and biotherapeutics Translational pharmacology Nutriceutical pharmacology.
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