4.8 Article

Inhibition of endogenous thioredoxin in the heart increases oxidative stress and cardiac hypertrophy

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 112, 期 9, 页码 1395-1406

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI200317700

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资金

  1. NHLBI NIH HHS [P01 HL069020, R01 HL065182, R01 HL033107, HL-69020, HL-33065, HL-33107, HL-65182, HL-59139, P01 HL059139, HL-65183, R37 HL033107, R01 HL067724, HL-67727, HL-67724] Funding Source: Medline
  2. NIA NIH HHS [R01 AG014121, AG-14121] Funding Source: Medline
  3. NATIONAL HEART, LUNG, AND BLOOD INSTITUTE [R01HL065183, R01HL033065, R01HL033107, R37HL033107, R01HL067727, R01HL065182, R01HL067724, P01HL069020, P01HL059139] Funding Source: NIH RePORTER
  4. NATIONAL INSTITUTE ON AGING [R01AG014121] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Thioredoxin 1 (Trx1) has redox-sensitive cysteine residues and acts as an antioxidant in cells. However, the extent of Trx1 contribution to overall antioxidant mechanisms is unknown in any organs. We generated transgenic mice with cardiac-specific overexpression of a dominant negative (DN) mutant (C32S/C3SS) of Trx1 (Tg-DN-Trx1 mice), in which the activity of endogenous Trx was diminished. Markers of oxidative stress were significantly increased in hearts from Tg-DN-Trx1 mice compared with those from nontransgenic (NTg) mice. Tg-DN-Trx1 mice exhibited cardiac hypertrophy with maintained cardiac function at baseline. Intraperitoneal injection of N-2-mercaptopropionyl glycine, an antioxidant, normalized cardiac hypertrophy in Tg-DN-Trx1 mice. Thoracic aortic banding caused greater increases in myocardial oxidative stress and enhanced hypertrophy in Tg-DN-Trx1 compared with NTg mice. In contrast, transgenic mice with cardiac-specific overexpression of wild-type Trx1 did not show cardiac hypertrophy at baseline but exhibited reduced levels of hypertrophy and oxidative stress in response to pressure overload. These results demonstrate that endogenous Trx1 is an essential component of the cellular antioxidant mechanisms and plays a critical role in regulating oxidative stress in the heart in vivo. Furthermore, inhibition of endogenous Trx1 in the heart primarily stimulates hypertrophy, both under basal conditions and in response to pressure overload through redox-sensitive mechanisms.

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