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Published on: December 9, 2013
GSNOR deletion differentially alters age-related cardiac function in a sex-dependent manner
Obialunanma V Ebenebe1,2, Raihan Kabir2, Allison Booher1
1Cardiology Division, Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland, United States.
None:
S-nitrosoglutathione reductase (GSNOR), a regulator of protein S-nitrosylation (SNO), has been proposed as a longevity protein. GSNOR signaling has been implicated in both the alleviation and exacerbation of aging. In the context of ischemia-reperfusion injury, we previously showed a sex-dependent response to GSNOR inhibition; cardiac damage was alleviated in males and exacerbated in females. Considering sex differences in the incidence of cardiovascular disease with age, we investigated the effect of GSNOR deletion (-/-) on age-related changes in cardiac function. We performed longitudinal two-dimensional echocardiography measurements in M-mode on male and female, wild-type (WT) and GSNOR-/- mice at young (3-4 mo), middle (13-15 mo), and old age (18-20 mo). Left ventricular wall thickness and ejection fraction decreased with age in WT mice but were maintained in GSNOR-/-. Western blot and GSNOR activity assays showed GSNOR activity and expression decreased with age in WT females. Isolated cardiomyocyte force-coupling analysis showed that increasing age was inversely correlated with sarcomere shortening and Ca2+ release kinetics in WT males but not GSNOR-/-. WT females showed slower Ca2+ re-uptake after contraction and time to peak sarcomere shortening, but all other parameters were maintained. GSNOR-/- females exhibited slower Ca2+ re-uptake and decreased sarcomere shortening. Proteomic analysis of SNO from females showed increased modification of pyruvate dehydrogenase, E1β, and dihydrolipoamide dehydrogenase in young WT females relative to middle-aged mice. Together, our data suggest that GSNOR deletion is beneficial in males by maintaining cardiac function; although the absence of GSNOR in females removes an age-essential SNO imbalance, which may exacerbate age-related pathology.NEW & NOTEWORTHY GSNOR deficiency appears beneficial to cardiac aging in both sexes, but at the cellular level, we discovered a sex disparity and the potential for underlying cellular dysfunction in female hearts. Taken together, GSNOR deficiency may present a mechanism through which the female heart specifically is at a higher risk of age-related cardiovascular disease and may represent a potential clinical target.
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