Role of mitochondrial ribosomal protein L7/L12 (MRPL12) in diabetic ischemic heart disease

线粒体核糖体蛋白 L7/L12(MRPL12)在糖尿病缺血性心脏病中的作用

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作者:Amit Kumar Rai, Shridhar Sanghvi, Natarajaseenivasan Suriya Muthukumaran, Dhananjie Chandrasekera, Ashlesha Kadam, Jahnavi Kishore, Ioannis D Kyriazis, Dhanendra Tomar, Devasena Ponnalagu, Vikram Shettigar, Mahmood Khan, Harpreet Singh, David Goukassian, Rajesh Katare, Venkata Naga Srikanth Garikipa

Background

Myocardial infarction (MI) is a significant cause of death in diabetic patients. Growing evidence suggests that mitochondrial dysfunction contributes to heart failure in diabetes. However, the molecular mechanisms of mitochondrial dysfunction mediating heart failure in diabetes are still poorly understood.

Conclusions

Overall, our results suggest that MRPL12 may have a compensatory role in the diabetic myocardium with ischemic heart disease, suggesting that MRPL12 may implicate in the pathophysiology of MI in diabetes.

Methods

We examined MRPL12 levels in right atrial appendage tissues from diabetic patients undergoing coronary artery bypass graft (CABG) surgery. Using AC-16 cells overexpressing MRPL12 under normal and hyperglycemic conditions we performed mitochondrial functional assays OXPHOS, bioenergetics, mitochondrial membrane potential, ATP production and cell death.

Results

We observed elevated MRPL12 levels in heart tissue samples from diabetic patients with ischemic heart disease compared to non-diabetic patients. Overexpression of MRPL12 under hyperglycemic conditions did not affect oxidative phosphorylation (OXPHOS) levels, cellular ATP levels, or cardiomyocyte cell death. However, notable impairment in mitochondrial membrane potential (MMP) was observed under hyperglycemic conditions, along with alterations in both basal respiration oxygen consumption rate (OCR) and maximal respiratory capacity OCR. Conclusions: Overall, our results suggest that MRPL12 may have a compensatory role in the diabetic myocardium with ischemic heart disease, suggesting that MRPL12 may implicate in the pathophysiology of MI in diabetes.

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