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Aspartate transporter expression and activity in hypertrophic rat heart and ischaemia–reperfusion injury

机译:肥厚大鼠心脏和缺血再灌注损伤中天冬氨酸转运蛋白的表达和活性

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摘要

This study's rationale was that the expression and activity of aspartate transporters in hypertrophied hearts might be different from normal hearts, which could affect the use of aspartate in myocardial protection of hypertrophied hearts. mRNA expression of system Xag transporters in hearts from normal (Wistar Kyoto) and hypertrophied (spontaneously hypertensive rat) rats was investigated by RT-PCR. EAAT3 protein expression in isolated cells and vesicles from normal and hypertrophied hearts was investigated by Western blotting. The same vesicles were also used to measure aspartate uptake. The effects of 0.5 mmol l−1 aspartate supplementation on cardiac performance during ischaemia–reperfusion were investigated in isolated and perfused hearts. Both normal and hypertrophied hearts expressed EAAT1 and EAAT3 mRNA. EAAT3 protein expression was significantly greater in cells and vesicles from hypertrophied hearts compared to normal hearts. The velocity (Vmax) of aspartate uptake was faster at 24.4 ± 2.2 pmol mg−1 s−1 in vesicles from hypertrophied hearts compared to 8.2 ± 0.8 pmol mg−1 s−1 (P < 0.001, t test, n = 6, means ±s.e.m.) in normal heart vesicles. The affinity (Km) was similar for both preparations. When recoveries were matched, 0.5 mmol l−1 aspartate addition reduced reperfusion injury and increased functional recovery of hypertrophied hearts but not normal hearts. This was associated with a greater preservation of ATP, glutamate and glutamine and less lactate production during ischaemia in aspartate-treated hypertrophied hearts compared to all other experimental groups. These results suggest that increased aspartate transporter expression and activity in hypertrophy helps facilitate aspartate entry into hypertrophied cardiomyocytes, which in turn leads to improved myocardial protection.
机译:这项研究的基本原理是,肥厚心脏中天冬氨酸转运蛋白的表达和活性可能与正常心脏不同,这可能会影响天冬氨酸在心肌肥厚心脏保护中的用途。通过RT-PCR研究了正常(Wistar Kyoto)和肥大(自发性高血压大鼠)大鼠心脏中Xag -系统转运蛋白的mRNA表达。通过蛋白质印迹研究了来自正常和肥大心脏的分离的细胞和囊泡中EAAT3蛋白的表达。相同的囊泡也用于测量天冬氨酸摄取。在离体和灌注心脏中研究了补充0.5 mmol l −1 天冬氨酸对缺血/再灌注期间心脏功能的影响。正常和肥大心脏均表达EAAT1和EAAT3 mRNA。与正常心脏相比,肥大心脏的细胞和囊泡中EAAT3蛋白的表达明显更高。肥厚心脏囊泡中天冬氨酸的摄取速度(Vmax)较之8.2±0.8 pmol mg 更快,为24.4±2.2 pmol mg -1 s -1 正常心脏囊泡中的-1 s -1 (P <0.001,t检验,n = 6,平均值±sem)。两种制剂的亲和力(Km)相似。当恢复相匹配时,添加0.5 mmol l -1 天门冬氨酸可减少肥大心脏而非正常心脏的再灌注损伤并增加功能恢复。与所有其他实验组相比,在天冬氨酸处理的肥厚性心脏缺血过程中,与缺血状态相比,ATP,谷氨酸和谷氨酰胺的保留率更高,而乳酸的产生则更少。这些结果表明,肥大中天冬氨酸转运蛋白表达和活性的增加有助于促进天冬氨酸进入肥大的心肌细胞,进而改善了心肌的保护。

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