Beclin1 缺乏通过抑制铁死亡减轻酒精引起的心脏功能障碍。
Deficiency in Beclin1 attenuates alcohol-induced cardiac dysfunction via inhibition of ferroptosis.
机构信息
The Second Department of Cardiology, The Third Hospital of Nanchang, Nanchang 330009, China.
Department of Cardiology, Xi'an Central Hospital, Xi'an 710003, China.
出版信息
Biochim Biophys Acta Gen Subj. 2022 Dec;1866(12):130245. doi: 10.1016/j.bbagen.2022.130245. Epub 2022 Sep 17.
BACKGROUND
Binge drinking leads to compromised mitochondrial integrity and contractile function in the heart although little effective remedy is readily available. Given the possible derangement of autophagy in ethanol-induced cardiac anomalies, this study was designed to examine involvement of Beclin1 in acute ethanol-induced cardiac contractile dysfunction, in any, and the impact of Beclin1 haploinsufficiency on ethanol cardiotoxicity with a focus on autophagy-related ferroptosis.
METHODS
WT and Beclin1 haploinsufficiency (BECN) mice were challenged with ethanol for one week (2 g/kg, i.p. on day 1, 3 and 7) prior to assessment of cardiac injury markers (LDH, CK-MB), cardiac geometry, contractile and mitochondrial integrity, oxidative stress, lipid peroxidation, apoptosis and ferroptosis.
RESULTS
Ethanol exposure compromised cardiac geometry and contractile function accompanied with upregulated Beclin1 and autophagy, mitochondrial injury, oxidative stress, lipid peroxidation and apoptosis, and ferroptosis (GPx4, SLC7A11, NCOA4). Although Beclin1 deficiency did not affect cardiac function in the absence of ethanol challenge, it alleviated ethanol-induced changes in cardiac injury biomarkers, cardiomyocyte area, interstitial fibrosis, echocardiographic and cardiomyocyte mechanical properties along with mitochondrial integrity, oxidative stress, lipid peroxidation, apoptosis and ferroptosis. Ethanol challenge evoked pronounced ferroptosis (downregulated GPx4, SLC7A11 and elevated NCOA4, lipid peroxidation), the effect was alleviated by Beclin1 haploinsufficiency. Inhibition of ferroptosis using LIP-1 rescued ethanol-induced cardiac mechanical anomalies. In vitro study noted that ferroptosis induction using erastin abrogated Beclin1 haploinsufficiency-induced response against ethanol.
CONCLUSIONS
In sum, our data suggest that Beclin1 haploinsufficiency benefits acute ethanol challenge-induced myocardial remodeling and contractile dysfunction through ferroptosis-mediated manner.
背景
binge drinking 导致心脏中线粒体完整性和收缩功能受损,尽管目前尚无有效的治疗方法。鉴于乙醇诱导的心脏异常中自噬可能失调,本研究旨在研究 Beclin1 在急性乙醇诱导的心脏收缩功能障碍中的作用机制,以及 Beclin1 杂合不足对乙醇心脏毒性的影响,重点关注自噬相关的铁死亡。
方法
WT 和 Beclin1 杂合不足(BECN)小鼠接受乙醇处理一周(每天腹腔注射 2 g/kg,第 1、3 和 7 天),然后评估心脏损伤标志物(LDH、CK-MB)、心脏几何形状、收缩和线粒体完整性、氧化应激、脂质过氧化、凋亡和铁死亡。
结果
乙醇暴露导致心脏几何形状和收缩功能受损,同时上调 Beclin1 和自噬、线粒体损伤、氧化应激、脂质过氧化和凋亡以及铁死亡(GPx4、SLC7A11、NCOA4)。尽管 Beclin1 缺乏在没有乙醇挑战的情况下不影响心脏功能,但它缓解了乙醇引起的心脏损伤标志物、心肌细胞面积、间质纤维化、超声心动图和心肌细胞力学特性以及线粒体完整性、氧化应激、脂质过氧化、凋亡和铁死亡的变化。乙醇挑战引起明显的铁死亡(下调 GPx4、SLC7A11 和上调 NCOA4、脂质过氧化),Beclin1 杂合不足减轻了这种作用。使用 LIP-1 抑制铁死亡可挽救乙醇引起的心脏力学异常。体外研究表明,使用 erastin 诱导铁死亡可消除 Beclin1 杂合不足对乙醇的反应。
结论
总之,我们的数据表明,Beclin1 杂合不足通过铁死亡介导的方式有益于急性乙醇挑战引起的心肌重塑和收缩功能障碍。