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Published on: June 25, 2013
MRP5 and MRP9 play a concerted role in male reproduction and mitochondrial function
Ian G Chambers1, Praveen Kumar2, Jens Lichtenberg3
1Department of Animal and Avian Sciences and Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD 20742.
Abstract:
Multidrug Resistance Proteins (MRPs) are transporters that play critical roles in cancer even though the physiological substrates of these enigmatic transporters are poorly elucidated. In Caenorhabditis elegans, MRP5/ABCC5 is an essential heme exporter because mrp-5 mutants are unviable due to their inability to export heme from the intestine to extraintestinal tissues. Heme supplementation restores viability of these mutants but fails to restore male reproductive deficits. Correspondingly, cell biological studies show that MRP5 regulates heme levels in the mammalian secretory pathway even though MRP5 knockout (KO) mice do not show reproductive phenotypes. The closest homolog of MRP5 is MRP9/ABCC12, which is absent in C. elegans, raising the possibility that MRP9 may genetically compensate for MRP5. Here, we show that MRP5 and MRP9 double KO (DKO) mice are viable but reveal significant male reproductive deficits. Although MRP9 is highly expressed in sperm, MRP9 KO mice show reproductive phenotypes only when MRP5 is absent. Both ABCC transporters localize to mitochondrial-associated membranes, dynamic scaffolds that associate the mitochondria and endoplasmic reticulum. Consequently, DKO mice reveal abnormal sperm mitochondria with reduced mitochondrial membrane potential and fertilization rates. Metabolomics show striking differences in metabolite profiles in the DKO testes, and RNA sequencing shows significant alterations in genes related to mitochondrial function and retinoic acid metabolism. Targeted functional metabolomics reveal lower retinoic acid levels in the DKO testes and higher levels of triglycerides in the mitochondria. These findings establish a model in which MRP5 and MRP9 play a concerted role in regulating male reproductive functions and mitochondrial sufficiency.
Insights
Multidrug Resistance Proteins MRP5 and MRP9 are crucial for male reproduction and sperm mitochondrial health. Double knockout mice show reproductive deficits and impaired sperm mitochondria, revealing a concerted role in male fertility.
Area of Science:
- Molecular Biology
- Genetics
- Reproductive Biology
Background:
- Multidrug Resistance Proteins (MRPs) are transporters with poorly understood physiological roles.
- MRP5/ABCC5 is an essential heme exporter in *C. elegans*, vital for heme transport and organism viability.
- MRP5 regulates heme levels in mammalian cells, but MRP5 knockout mice lack reproductive phenotypes.
Purpose of the Study:
- To investigate the role of MRP5 and its homolog MRP9/ABCC12 in male reproductive function.
- To determine if MRP9 compensates for MRP5 in male reproduction.
- To elucidate the mechanism by which these transporters impact male fertility.
Main Methods:
- Generation and analysis of MRP5 and MRP9 double knockout (DKO) mice.
- Assessment of male reproductive phenotypes, sperm morphology, and mitochondrial function.
- Metabolomic and RNA sequencing analyses of DKO testes.
Main Results:
- MRP5/MRP9 DKO mice are viable but exhibit significant male reproductive deficits.
- DKO mice show abnormal sperm mitochondria with reduced membrane potential and lower fertilization rates.
- DKO testes display altered metabolite profiles, including lower retinoic acid and higher triglycerides, with significant changes in mitochondrial and retinoic acid metabolism genes.
Conclusions:
- MRP5 and MRP9 play a concerted role in regulating male reproductive functions.
- These transporters are essential for maintaining sperm mitochondrial sufficiency and male fertility.
- The findings establish a model for MRP5 and MRP9 function in male reproductive health.
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