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July 4, 2022SHILAP Revista de lepidopterología117 citationsOpen Access

Sex differences in heart mitochondria regulate diastolic dysfunction

YCYang CaoLVLaurent VergnesYWYu-Chen Wang

Structured PICO

Do sex differences in mitochondrial function and specific mitochondrial genes like Acsl6 regulate diastolic dysfunction in HFpEF?

P
Population
Genetically diverse inbred strains of mice (Hybrid Mouse Diversity Panel), a 'two-hit' mouse model of HFpEF, and human heart failure cohorts.
I
Intervention
Adenoviral over-expression of the mitochondrial gene Acsl6 in the heart (validation phase) and observational genetic/sex comparisons.
C
Comparator
Males versus females; baseline/control for adenoviral over-expression.
O
Outcome
Diastolic function and mitochondrial DNA levels/function.surrogate

Sex differences in mitochondrial function, specifically involving the gene Acsl6, partially underlie the sex bias observed in diastolic dysfunction and HFpEF.

Abstract

Heart failure with preserved ejection fraction (HFpEF) exhibits a sex bias, being more common in women than men, and we hypothesize that mitochondrial sex differences might underlie this bias. As part of genetic studies of heart failure in mice, we observe that heart mitochondrial DNA levels and function tend to be reduced in females as compared to males. We also observe that expression of genes encoding mitochondrial proteins are higher in males than females in human cohorts. We test our hypothesis in a panel of genetically diverse inbred strains of mice, termed the Hybrid Mouse Diversity Panel (HMDP). Indeed, we find that mitochondrial gene expression is highly correlated with diastolic function, a key trait in HFpEF. Consistent with this, studies of a "two-hit" mouse model of HFpEF confirm that mitochondrial function differs between sexes and is strongly associated with a number of HFpEF traits. By integrating data from human heart failure and the mouse HMDP cohort, we identify the mitochondrial gene Acsl6 as a genetic determinant of diastolic function. We validate its role in HFpEF using adenoviral over-expression in the heart. We conclude that sex differences in mitochondrial function underlie, in part, the sex bias in diastolic function.

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Cite This Study

Cao et al. (2022) studied this question.

synapsesocial.com/papers/69dab385aae38ff6ad835e00https://doi.org/10.1038/s41467-022-31544-5
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