Huntingtin preserves mitochondrial genome integrity in neurons, which is impaired in Huntingtons disease
Pradhan, S.; Gaikwad, S.; Tsai, C.-L.; Smith, C.; Zhang, N.; Bush, K.; Chakraborty, A.; Yuan, S.; Choudhary, S.; Keene, C. D.; Ellerby, L. M.; Hazra, T. K.; La Spada, A. R.; Wairkar, Y. P.; Ashizawa, T.; Tainer, J. A.; Pandita, T. K.; Thompson, L. M.; Sakkar, P. S.
Show abstract
Huntingtin (HTT) function is enigmatic, as the native protein plays critical roles in neuronal health, while mutant HTT (mHTT), carrying an expanded polyglutamine stretch, triggers neurotoxicity and contributes to the pathogenesis of Huntingtons disease (HD). We recently found that HTT is part of a nuclear transcription-coupled DNA repair (TCR) complex with DNA repair enzymes including polynucleotide-kinase-3-phosphatase (PNKP). This complex resolves DNA lesions during transcription to maintain genome integrity, while in HD, mHTT impairs the activity of this complex, resulting in accumulation of DNA lesions. Using molecular, cellular biology and computational methods, we find that HTT has a role in assembling a functional DNA repair complex in mitochondria. Together with mitochondrial RNA polymerase and transcription factors, HTT resolves mitochondrial DNA lesions to preserve mitochondrial genome integrity and function. Pathogenic mHTT impairs this activity, resulting in persistent DNA lesions and reduced mitochondrial function in HD. Importantly, restoring activity of this complex in a Drosophila HD model through ectopic HTT or PNKP expression significantly improves mitochondrial genome integrity and ameliorates motor deficits. HIGHLIGHTSO_LIHTT organizes a functional, multifactorial mitochondrial DNA repair complex C_LIO_LIMutant HTT impairs the mitochondrial DNA repair complex causing DNA damage accumulation C_LIO_LIHTT-associated repair complex resolves mitochondrial DNA lesions and DNA integrity C_LIO_LIRestoring repair activity in HD flies rescues mitochondrial DNA integrity and motor defects C_LI
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CK2 alpha prime and alpha-synuclein pathogenic functional interaction mediates synaptic dysregulation in Huntington's disease 95%
- Widespread alterations in microRNA biogenesis in human Huntington's disease putamen 94%
- Divergent and Convergent TMEM106B Pathology in Murine Models of Neurodegeneration and Human Disease 94%
Similar papers in this journal
- Activation of the cGAS-STING innate immune response in cells with deficient mitochondrial topoisomerase TOP1MT 95%
- Familial ALS/FTD-associated RNA-Binding deficient TDP-43 mutants cause neuronal and synaptic transcript dysregulation in vitro 94%
- A pathogenic DYT-THAP1 dystonia mutation causes hypomyelination and loss of YY1 binding 92%
Similar papers in this journal
- Antisense, but not sense, repeat expanded RNAs activate PKR/eIF2α-dependent integrated stress response in C9orf72 FTD/ALS 95%
- Biochemical and neurophysiological effects of deficiency of the mitochondrial import protein TIMM50 94%
- Prefoldin 5 is a microtubule-associated protein that suppresses Tau-aggregation and neurotoxicity 94%
Similar papers in this journal
- MBL-1/Muscleblind regulates neuronal differentiation and controls the splicing of a terminal selector in Caenorhabditis elegans 92%
- A monocarboxylate transporter rescues frontotemporal dementia and Alzheimer's disease models 92%
- Genomic analyses of glycine decarboxylase neurogenic mutations yield a large scale prediction model for prenatal disease. 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.