Publications by authors named "Taina Lahtinen"

Mitochondrial ribosomes synthesize a subset of hydrophobic proteins required for assembly of the oxidative phosphorylation complexes. This process requires temporal and spatial coordination and regulation, so quality control of mitochondrial protein synthesis is paramount to maintain proteostasis. We show how impaired turnover of de novo mitochondrial proteins leads to aberrant protein accumulation in the mitochondrial inner membrane.

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Mammalian mitochondrial DNA (mtDNA) is a high-copy maternally inherited genome essential for aerobic energy metabolism. Mutations in mtDNA can lead to heteroplasmy, the co-occurence of two different mtDNA variants in the same cell, which can segregate in a tissue-specific manner affecting the onset and severity of mitochondrial dysfunction. To investigate mechanisms regulating mtDNA segregation we use a heteroplasmic mouse model with two polymorphic neutral mtDNA haplotypes (NZB and BALB) that displays tissue-specific and age-dependent selection for mtDNA haplotypes.

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Proliferating cells require coordinated gene expression between the nucleus and mitochondria in order to divide, ensuring sufficient organelle number in daughter cells [1]. However, the machinery and mechanisms whereby proliferating cells monitor mitochondria and coordinate organelle biosynthesis remain poorly understood. Antibiotics inhibiting mitochondrial translation have emerged as therapeutics for human cancers because they block cell proliferation [2, 3].

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Article Synopsis
  • - The study explores the genetic causes of infantile onset recessive hypertrophic cardiomyopathy in two siblings, highlighting mitochondrial translation defects as a key factor.
  • - Researchers found a mutation in the MRPL44 gene that disrupts the stability of a mitochondrial ribosomal protein, leading to deficiencies in critical respiratory chain complexes.
  • - The results suggest that defects in mitochondrial ribosomal subunits can lead to specific health issues like cardiomyopathy, emphasizing the importance of mitochondrial function in heart health.
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