Global-Scale Profiling of Differential Expressed Lysine-Lactylated Proteins in the Cerebral Endothelium of Cerebral Ischemia-Reperfusion Injury Rats.

IF 4.8 4区 医学 Q3 CELL BIOLOGY
Cellular and Molecular Neurobiology Pub Date : 2023-07-01 Epub Date: 2022-08-27 DOI:10.1007/s10571-022-01277-6
Yuan Yao, Rengui Bade, Guotao Li, Aoqi Zhang, Haile Zhao, Lifei Fan, Runxiu Zhu, Jun Yuan
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引用次数: 0

Abstract

Acute ischemic stroke (AIS) is a serious threat to human health. Following AIS, cerebral ischemia-reperfusion injury (CIRI) must be treated to improve prognosis. By combining 4D label-free quantitative proteomics with lactylation modification-specific proteomics analysis, we assessed lysine lactylation (Kla) in cortical proteins of a CIRI rat model. We identified a total of 1003 lactylation sites on 469 proteins in this study, gathering quantitative information (PXD034232) on 660 of 310 proteins, which were further classified by cell composition, molecular function, and biological processes. In addition, we analyzed the metabolic pathways, domains, and protein-protein interaction networks. Lastly, we evaluated differentially expressed lysine lactylation sites, determining 49 upregulated proteins and 99 downregulated proteins with 54 upregulated sites and 54 downregulated sites in the experimental group in comparison with the healthy control group. Moreover, we identified the Kla of Scl25a4 and Slc25a5 in the Ca2+ signaling pathway, but the Kla of Vdac1 was eliminated, as confirmed in vivo. Overall, these results provide new insights into lactylation involved in the underlying mechanism of CIRI because this post-translational modification affects the mitochondrial apoptosis pathway and mediates neuronal death. Therefore, this study may enable us to develop new molecules with therapeutic properties, which have both theoretical significance and broad clinical application prospects. A new model of cerebral ischemia-reperfusion injury (CIRI) induced by lactylation through the regulation of key proteins of the Ca2+ signaling pathway.

脑缺血再灌注损伤大鼠脑内皮中赖氨酸乳酸化蛋白差异表达的全球范围分析。
急性缺血性脑卒中是严重威胁人类健康的疾病。AIS后,必须对脑缺血再灌注损伤(CIRI)进行治疗以改善预后。通过结合4D无标记定量蛋白质组学和乳酸化修饰特异性蛋白质组学分析,我们评估了CIRI大鼠模型皮质蛋白的赖氨酸乳酸化(Kla)。本研究共鉴定了469个蛋白的1003个乳酸化位点,收集了310个蛋白中660个蛋白的定量信息(PXD034232),并进一步根据细胞组成、分子功能和生物学过程对其进行了分类。此外,我们还分析了代谢途径、结构域和蛋白质-蛋白质相互作用网络。最后,我们评估了赖氨酸乳酸化位点的差异表达,确定了实验组与健康对照组相比,49个上调蛋白和99个下调蛋白,其中54个上调位点和54个下调位点。此外,我们在Ca2+信号通路中发现了Scl25a4和Slc25a5的Kla,但Vdac1的Kla被消除,这在体内得到了证实。总的来说,这些结果为研究CIRI的潜在机制提供了新的见解,因为这种翻译后修饰影响线粒体凋亡途径并介导神经元死亡。因此,本研究可能使我们开发出具有治疗特性的新分子,具有理论意义和广阔的临床应用前景。通过调节Ca2+信号通路的关键蛋白乳酸化诱导脑缺血再灌注损伤(CIRI)的新模型。
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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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
137
审稿时长
4-8 weeks
期刊介绍: Cellular and Molecular Neurobiology publishes original research concerned with the analysis of neuronal and brain function at the cellular and subcellular levels. The journal offers timely, peer-reviewed articles that describe anatomic, genetic, physiologic, pharmacologic, and biochemical approaches to the study of neuronal function and the analysis of elementary mechanisms. Studies are presented on isolated mammalian tissues and intact animals, with investigations aimed at the molecular mechanisms or neuronal responses at the level of single cells. Cellular and Molecular Neurobiology also presents studies of the effects of neurons on other organ systems, such as analysis of the electrical or biochemical response to neurotransmitters or neurohormones on smooth muscle or gland cells.
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