Shishkova Daria, Lobov Arseniy, Repkin Egor, Markova Victoria, Markova Yulia, Sinitskaya Anna, Sinitsky Maxim, Kondratiev Egor, Torgunakova Evgenia, Kutikhin Anton
Department of Experimental Medicine, Research Institute for Complex Issues of Cardiovascular Diseases, 6 Sosnovy Boulevard, 650002 Kemerovo, Russia.
Laboratory of Regenerative Biomedicine, Institute of Cytology of the RAS, 4 Tikhoretskiy Prospekt, 194064 St. Petersburg, Russia.
J Cardiovasc Dev Dis. 2023 Dec 22;11(1):5. doi: 10.3390/jcdd11010005.
Calciprotein particles (CPPs) are indispensable scavengers of excessive Ca and PO ions in blood, being internalised and recycled by liver and spleen macrophages, monocytes, and endothelial cells (ECs). Here, we performed a pathway enrichment analysis of cellular compartment-specific proteomes in primary human coronary artery ECs (HCAEC) and human internal thoracic artery ECs (HITAEC) treated with primary (amorphous) or secondary (crystalline) CPPs (CPP-P and CPPs, respectively). Exposure to CPP-P and CPP-S induced notable upregulation of: (1) cytokine- and chemokine-mediated signaling, Ca-dependent events, and apoptosis in cytosolic and nuclear proteomes; (2) H and Ca transmembrane transport, generation of reactive oxygen species, mitochondrial outer membrane permeabilisation, and intrinsic apoptosis in the mitochondrial proteome; (3) oxidative, calcium, and endoplasmic reticulum (ER) stress, unfolded protein binding, and apoptosis in the ER proteome. In contrast, transcription, post-transcriptional regulation, translation, cell cycle, and cell-cell adhesion pathways were underrepresented in cytosol and nuclear compartments, whilst biosynthesis of amino acids, mitochondrial translation, fatty acid oxidation, pyruvate dehydrogenase activity, and energy generation were downregulated in the mitochondrial proteome of CPP-treated ECs. Differentially expressed organelle-specific pathways were coherent in HCAEC and HITAEC and between ECs treated with CPP-P or CPP-S. Proteomic analysis of mitochondrial and nuclear lysates from CPP-treated ECs confirmed bioinformatic filtration findings.
钙蛋白颗粒(CPPs)是血液中过量钙和磷酸根离子不可或缺的清除剂,可被肝脏和脾脏巨噬细胞、单核细胞及内皮细胞(ECs)内化并循环利用。在此,我们对原代人冠状动脉内皮细胞(HCAEC)和人胸廓内动脉内皮细胞(HITAEC)用原代(无定形)或二代(结晶)CPPs(分别为CPP-P和CPPs)处理后的细胞区室特异性蛋白质组进行了通路富集分析。暴露于CPP-P和CPP-S会导致以下显著上调:(1)细胞因子和趋化因子介导的信号传导、钙依赖性事件以及胞质和核蛋白质组中的凋亡;(2)氢离子和钙离子跨膜转运、活性氧生成、线粒体外膜通透性改变以及线粒体蛋白质组中的内源性凋亡;(3)内质网(ER)蛋白质组中的氧化应激、钙应激和内质网应激、未折叠蛋白结合以及凋亡。相比之下,转录、转录后调控、翻译、细胞周期和细胞间黏附通路在胞质和核区室中代表性不足,而在经CPP处理的内皮细胞线粒体蛋白质组中,氨基酸生物合成、线粒体翻译、脂肪酸氧化、丙酮酸脱氢酶活性和能量生成均下调。HCAEC和HITAEC以及用CPP-P或CPP-S处理的内皮细胞之间,差异表达的细胞器特异性通路是一致的。对经CPP处理的内皮细胞线粒体和核裂解物的蛋白质组分析证实了生物信息学筛选结果。
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