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低氧血症与线粒体DNA损伤及基因诱导有关。对心脏病的影响。

Hypoxemia is associated with mitochondrial DNA damage and gene induction. Implications for cardiac disease.

作者信息

Corral-Debrinski M, Stepien G, Shoffner J M, Lott M T, Kanter K, Wallace D C

机构信息

Department of Genetics, Emory University School of Medicine, Atlanta, GA 30322.

出版信息

JAMA. 1991 Oct 2;266(13):1812-6.

PMID:1890710
Abstract

OBJECTIVE

--Oxidative phosphorylation (OXPHOS) deficiency due to hypoxemia or other causes was hypothesized to increase oxygen radical generation, damage mitochondrial DNA (mtDNA), and reduce adenosine triphosphate synthesis, resulting in compensatory OXPHOS gene induction. Therefore, we investigated the levels of mtDNA damage and OXPHOS transcripts in normal and ischemic hearts, and then in other forms of heart disease.

DESIGN

--DNA was extracted from the heart and the levels of the common 4977 base pair mtDNA deletion were quantitated as an index for mtDNA damage. Total RNA was extracted from hearts and analyzed for OXPHOS transcript levels.

RESULTS

--In control hearts, the 4977 base pair mtDNA deletion appeared at age 40 years and reached a maximum deletion of 0.0035%. Much higher levels were found in ischemic hearts (0.02% to 0.85%), as well as in three of 10 cases with other types of heart disease (0.017% to 0.16%). The OXPHOS transcripts were increased in all diseased hearts.

CONCLUSION

--Ischemic hearts have increased mtDNA damage and OXPHOS gene expression, suggesting that mtDNA damage is associated with OXPHOS deficiency. Oxidative phosphorylation defects may also play a role in some other forms of cardiac disease.

摘要

目的

  • 据推测,由于低氧血症或其他原因导致的氧化磷酸化(OXPHOS)缺陷会增加氧自由基的产生,损伤线粒体DNA(mtDNA),并减少三磷酸腺苷的合成,从而导致OXPHOS基因的代偿性诱导。因此,我们研究了正常心脏和缺血心脏中mtDNA损伤水平和OXPHOS转录本水平,然后又研究了其他形式心脏病中的这些指标。

设计

  • 从心脏中提取DNA,并对常见的4977碱基对mtDNA缺失水平进行定量,以此作为mtDNA损伤的指标。从心脏中提取总RNA,并分析OXPHOS转录本水平。

结果

  • 在对照心脏中,4977碱基对的mtDNA缺失在40岁时出现,最大缺失率达到0.0035%。在缺血心脏中发现的缺失水平要高得多(0.02%至0.85%),在10例其他类型心脏病患者中有3例也是如此(0.017%至0.16%)。所有患病心脏中的OXPHOS转录本均有所增加。

结论

  • 缺血心脏的mtDNA损伤和OXPHOS基因表达增加,这表明mtDNA损伤与OXPHOS缺陷有关。氧化磷酸化缺陷可能在其他一些形式的心脏病中也起作用。

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