Abstract

Several mitochondrial tRNA mutations have been associated with hypertension, but their pathophysiology remains poorly understood. In this report, we identified a novel homoplasmic 3253T→C mutation in the mitochondrial tRNALeu(UUR) gene in a Han Chinese family with maternally inherited hypertension. The m.3253T→C mutation affected a highly conserved uridine at position 22 at the D-stem of tRNALeu(UUR), introducing a G-C base pairing (G13-C22) at the D-stem and a tertiary base pairing (C22-G46) between the D-stem and the variable loop. We therefore hypothesized that the m.3253T→C mutation altered both the structure and function of tRNALeu(UUR) Using cytoplasmic hybrid (cybrid) cell lines derived from this Chinese family, we demonstrated that the m.3253T→C mutation perturbed the conformation and stability of tRNALeu(UUR), as suggested by faster electrophoretic mobility of mutated tRNA relative to the wild-type molecule. Northern blot analysis revealed an ∼45% decrease in the steady-state level of tRNALeu(UUR) in the mutant cell lines carrying the m.3253T→C mutation, as compared with control cell lines. Moreover, an ∼35% reduction in aminoacylation efficiency of tRNALeu(UUR) was observed in the m.3253T→C mutant cells. These alterations in tRNALeu(UUR) metabolism impaired mitochondrial translation, especially for those polypeptides with a high proportion of Leu(UUR) codons, such as ND6. Furthermore, we demonstrated that the m.3253T→C mutation decreased the activities of mitochondrial complexes I and V, markedly diminished mitochondrial ATP levels and membrane potential, and increased the production of reactive oxygen species in the cells. In conclusion, our findings may provide new insights into the pathophysiology of maternally inherited hypertension.

Highlights

  • Several mitochondrial tRNA mutations have been associated with hypertension, but their pathophysiology remains poorly understood

  • Using cytoplasmic hybrid cell lines derived from this Chinese family, we demonstrated that the m.3253T3 C mutation perturbed the conformation and stability of tRNALeu(UUR), as suggested by faster electrophoretic mobility of mutated tRNA relative to the wild-type molecule

  • To evaluate whether the m.3253T3 C mutation affects the aminoacylation of mitochondrial tRNAs, we examined the aminoacylation capacities of tRNALeu(UUR), tRNALeu(CUN), tRNAThr, tRNAIle, and tRNALys in control and mutant cell lines by the use of electrophoresis in an acidic polyacrylamide/urea gel system

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Summary

ARTICLE cro

A hypertension-associated mitochondrial DNA mutation alters the tertiary interaction and function of tRNALeu(UUR). We identified a novel homoplasmic 3253T3 C mutation in the mitochondrial tRNALeu(UUR) gene in a Han Chinese family with maternally inherited hypertension. The m.3253T3 C mutation may alter the structure and function of tRNALeu(UUR), thereby causing mitochondrial dysfunction necessary for hypertension. The functional significance of this tRNA mutation was investigated through cybrid cell lines generated by transferring mitochondria from lymphoblastoid cell lines derived from the Chinese family into mtDNA-less (␳o) cells [31] These cell lines were assayed for the effect of the m.3253T3 C mutation on the stability and aminoacylation capacity of tRNAs, mitochondrial translation, enzymatic activities of electron transport chain complexes, rate of O2 consumption, production of ATP, mitochondrial membrane potential, and reactive oxygen species (ROS)

Results
Clinical evaluation of the Chinese family
Decreases in the levels of mitochondrial proteins
Reduced activities of complex I and V
Respiration deficiency
Reduced level in mitochondrial ATP production
Decrease in mitochondrial membrane potential
Increase of ROS production
Discussion
Experimental procedures
Mutational analysis of mitochondrial DNAs
Cell lines and culture conditions
UV melting assays
In vitro angiogenin cleavage assay
Mitochondrial tRNA analysis
Western blot analysis
Measurements of oxygen consumption
Measurement of ROS production
Full Text
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