Uric acid can enhance MAPK pathway-mediated proliferation in rat primary vascular smooth muscle cells via controlling of mitochondria and caspase-dependent cell death.

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Receptors and Signal Transduction Pub Date : 2022-06-01 Epub Date: 2021-05-30 DOI:10.1080/10799893.2021.1931320
Segün Doğru, Ekrem Yaşar, Akın Yeşilkaya
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引用次数: 5

Abstract

Hyperuricemia may be a risk factor for cardiovascular diseases such as hypertension and atherosclerosis, but the mechanisms underlying uric acid-induced pathological conditions remain unknown. In this study, we investigated the effect of short time and long-term administration of increasing uric acid concentrations on cell viability, proliferative and apoptotic pathways in vascular smooth muscle cells (VSMCs). Cell viability/proliferation was determined with WST-1 assay. Expression levels of mitogen-activated protein kinases (MAPKs) (phosphorylated (p)-p38 and p-p44/42 MAPK), extrinsic (caspase 3, caspase 8), and intrinsic (B-cell lymphoma-extra-large (Bcl-xL)) apoptotic pathway proteins were measured by Western blotting. In order to assess the proliferative effects of uric acid incubations on VSMCs, we monitored the proliferative/apoptosis signaling pathways for up to 24 h. Our results indicated that uric acid increases cell viability at time and dose-dependently in VSMCs. Immunoblotting results showed that uric acid treatment elevated the expression level of p-p38 MAPK but did markedly reduce the protein levels of p-p44/42, compared with all the uric acid doses-treated VSMCs, especially at 1 h. Uric acid stimulation increased caspase-3 protein levels and decreased Bcl-xL, but did not alter caspase-8 protein expression at the same dose and time. Furthermore, low uric acid incubations (0-7.5 mg/dL) did not affect any signaling pathways for long time points (6-24 h). In conclusion, our study demonstrates for the first time that VSMCs induced with uric acid can affect cell viability, proliferative, and apoptosis pathways at the widest time and dose range. These findings provide a better understanding of the uric acid effects related to vascular impairments.

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尿酸可通过控制线粒体和caspase依赖性细胞死亡,增强MAPK途径介导的大鼠血管平滑肌细胞增殖。
高尿酸血症可能是高血压和动脉粥样硬化等心血管疾病的危险因素,但尿酸引起的病理状况的机制尚不清楚。在这项研究中,我们研究了短期和长期增加尿酸浓度对血管平滑肌细胞(VSMCs)细胞活力、增殖和凋亡途径的影响。采用WST-1法测定细胞活力/增殖。Western blotting检测丝裂原活化蛋白激酶(MAPKs)(磷酸化(p)-p38和p-p44/42 MAPK)、外源性(caspase 3、caspase 8)和内源性(b细胞淋巴瘤-特大(Bcl-xL))凋亡通路蛋白的表达水平。为了评估尿酸对VSMCs的增殖作用,我们对增殖/凋亡信号通路进行了长达24小时的监测。我们的结果表明,尿酸增加VSMCs细胞活力的时间和剂量依赖性。免疫印迹结果显示,与所有尿酸剂量处理的VSMCs相比,尿酸处理提高了p-p38 MAPK的表达水平,但显著降低了p-p44/42的蛋白水平,特别是在1 h时。在相同剂量和时间下,尿酸刺激增加了caspase-3蛋白水平,降低了Bcl-xL,但没有改变caspase-8蛋白的表达。此外,低尿酸孵育(0-7.5 mg/dL)在长时间点(6-24 h)内不影响任何信号通路。总之,我们的研究首次证明了尿酸诱导的VSMCs可以在最广泛的时间和剂量范围内影响细胞活力、增殖和凋亡途径。这些发现为更好地理解尿酸对血管损伤的影响提供了依据。
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来源期刊
Journal of Receptors and Signal Transduction
Journal of Receptors and Signal Transduction 生物-生化与分子生物学
CiteScore
6.60
自引率
0.00%
发文量
19
审稿时长
>12 weeks
期刊介绍: Journal of Receptors and Signal Tranduction is included in the following abstracting and indexing services: BIOBASE; Biochemistry and Biophysics Citation Index; Biological Abstracts; BIOSIS Full Coverage Shared; BIOSIS Previews; Biotechnology Abstracts; Current Contents/Life Sciences; Derwent Chimera; Derwent Drug File; EMBASE; EMBIOLOGY; Journal Citation Reports/ Science Edition; PubMed/MedLine; Science Citation Index; SciSearch; SCOPUS; SIIC.
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