Impact of the m.13513G>A Variant on the Functions of the OXPHOS System and Cell Retrograde Signaling

Author:

Kidere Dita1,Zayakin Pawel1ORCID,Livcane Diana1,Makrecka-Kuka Marina2,Stavusis Janis1,Lace Baiba13,Lin Tsu-Kung45ORCID,Liou Chia-Wei45ORCID,Inashkina Inna1

Affiliation:

1. Latvian Biomedical Research and Study Centre, LV-1067 Riga, Latvia

2. Latvian Institute of Organic Synthesis, LV-1006 Riga, Latvia

3. Children’s Clinical University Hospital, LV-1004 Riga, Latvia

4. Department of Neurology, Kaohsiung Chang Gung Memorial Hospital and Chang Gung University College of Medicine, Kaohsiung 83305, Taiwan

5. Center for Mitochondrial Research and Medicine, Kaohsiung Chang Gung Memorial Hospital and Chang Gung University College of Medicine, Kaohsiung 83301, Taiwan

Abstract

Mitochondria are involved in many vital functions in living cells, including the synthesis of ATP by oxidative phosphorylation (OXPHOS) and regulation of nuclear gene expression through retrograde signaling. Leigh syndrome is a heterogeneous neurological disorder resulting from an isolated complex I deficiency that causes damage to mitochondrial energy production. The pathogenic mitochondrial DNA (mtDNA) variant m.13513G>A has been associated with Leigh syndrome. The present study investigated the effects of this mtDNA variant on the OXPHOS system and cell retrograde signaling. Transmitochondrial cytoplasmic hybrid (cybrid) cell lines harboring 50% and 70% of the m.13513G>A variant were generated and tested along with wild-type (WT) cells. The functionality of the OXPHOS system was evaluated by spectrophotometric assessment of enzyme activity and high-resolution respirometry. Nuclear gene expression was investigated by RNA sequencing and droplet digital PCR. Increasing levels of heteroplasmy were associated with reduced OXPHOS system complex I, IV, and I + III activities, and high-resolution respirometry also showed a complex I defect. Profound changes in transcription levels of nuclear genes were observed in the cell lines harboring the pathogenic mtDNA variant, indicating the physiological processes associated with defective mitochondria.

Funder

Latvian Council of Science, Riga, Latvia

Publisher

MDPI AG

Subject

Microbiology (medical),Molecular Biology,General Medicine,Microbiology

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