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Mitochondria protection from hypoxia/reoxygenation injury with mitochondria heat shock protein 70 overexpression

机译:线粒体热休克蛋白70过表达保护线粒体免受缺氧/复氧损伤

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First published November 2, 2007; dor.10.1 152/ajpheart.00775.2007.-The majority of mitochondrial proteins are encoded by nuclear genes and synthesized in the cytosol as preproteins containing a mitochondria import sequence. Preproteins traverse the outer mitochondrial membrane in an unfolded state and then translocate through the inner membrane into the matrix via import machinery that includes mitochondrial heat shock protein 70 (mtHSP70). Neonatal rat cardiac myocytes (NCM) infected with an adenoviral vector expressing mtHSP70 or an empty control (Adv~) for 48 h were submitted to 8 h of simulated ischemia (hypoxia) followed by 16 li of reperfusion (reoxygenation). Infection with mtHSP70 virus yielded an increase in mtHSP70 protein in NCM mitochondria compared with Adv~ (P < 0.05). Cell viability after simulated ischemia/reperfusion (I/R) was decreased in both Adv- and mtHSP70 groups, relative to control (P < 0.05), but mtHSP70-infected NCM had enhanced viability after I/R relative to Adv-infected NCM (P < 0.05). Simulated I/R caused an increase in reactive oxygen species generation and lipid peroxidation in Adv-infected NCM (P < 0.05, for both) that was not observed in mtHSP70-infected NCM. Mitochondrial complex III and IV activities were greater in mtHSP70-infected NCM after simulated I/R compared with Adv" (P < 0.05 for both). After simulated I/R, ATP content increased in mtHSP70-infected NCM, compared with Adv- (P < 0.05). Apoptotic markers were decreased in mtHSP70-infected NCM compared with Adv~ after simulated 1/R (P < 0.05). These results indicate that overexpression of mtHSP70 protects the mitochondria against damage from simulated I/R that may be due to a decrease in reactive oxygen species leading to preservation of mitochondrial complex function activities and ATP formation.
机译:首次发布于2007年11月2日; dor.10.1 152 / ajpheart.00775.2007.-大多数线粒体蛋白由核基因编码,并在胞质溶胶中合成为含有线粒体导入序列的前蛋白。前蛋白以未折叠的状态穿过线粒体外膜,然后通过包括线粒体热休克蛋白70(mtHSP70)的进口机器穿过内膜进入基质。将感染了表达mtHSP70的腺病毒载体或空对照(Adv〜)的新生大鼠心肌细胞(NCM)持续48 h,进行8 h模拟缺血(缺氧),然后进行16 li再灌注(复氧)。与Adv〜相比,感染mtHSP70病毒可使NCM线粒体的mtHSP70蛋白增加(P <0.05)。 Adv-和mtHSP70组的模拟缺血/再灌注(I / R)后细胞活力均相对于对照组下降(P <0.05),但mtHSP70感染的NCM相对于Adv感染的NCM而言,I / R感染后的NCM活力增强( P <0.05)。模拟的I / R导致Adv感染的NCM中活性氧种类的产生和脂质过氧化作用的增加(两者P均<0.05),而mtHSP70感染的NCM中未观察到。模拟I / R后,感染mtHSP70的NCM的线粒体复合物III和IV活性高于Adv”(两者均P <0.05)。模拟I / R后,感染了mtHSP70的NCM的ATP含量比Adv-( P <0.05)。在模拟1 / R后,与Adv〜相比,感染mtHSP70的NCM中的凋亡标记降低(P <0.05)。这些结果表明mtHSP70的过表达保护线粒体免受模拟I / R造成的损害导致活性氧减少,从而导致线粒体复合物功能活性和ATP的形成得以保留。

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