2017
DOI: 10.1007/978-981-10-6674-0_1
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How Far Can Mitochondrial DNA Drive the Disease?

Abstract: Mitochondria are one of the dominant drivers for producing cellular energy to meet a large number of biological functions, of which the mitochondrial DNA (mtDNA) is the control center of energetic driving force and the dominant driver of mitochondrial molecular diversification. mtDNA transcription generates the necessary RNAs to regulate the extent and nature of mtRNA post-transcriptional modifications and the activity of nucleus-encoded enzymes. With a special focus on mtDNA, the current volume aims to overvi… Show more

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Cited by 6 publications
(4 citation statements)
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“…This genome is about 16.5 kb in humans, and 13 proteins and rRNAs are synthesised from the mitochondrial genome in mammals [19,20]. Therefore, the slightest change in mitochondrial genome can potentially affect the life of the cell, and thus the organism [21].…”
Section: Mitochondrial Methylationmentioning
confidence: 99%
“…This genome is about 16.5 kb in humans, and 13 proteins and rRNAs are synthesised from the mitochondrial genome in mammals [19,20]. Therefore, the slightest change in mitochondrial genome can potentially affect the life of the cell, and thus the organism [21].…”
Section: Mitochondrial Methylationmentioning
confidence: 99%
“…Mitochondria can be an important control driver in the production of cell energy regulated by the MtDNA. MtDNA acts as the command control center to schedule energetic productions and maintain cell metabolisms and molecular diversification within the mitochondria, responsible for the development of diseases (Sun et al 2017;Lv et al 2017). It is clear that the mitochondria function as the energy motor and control a series of organelle responses and signal pathways in CBT, while a large number of intracellular or extracellular elements can influence, regulate, or control the mitochondrial function.…”
Section: Thinking Of Mitochondrial Dnamentioning
confidence: 99%
“…Since mitochondria are dominant organelles regarding intracellular energy and because they have their own independent DNA genome, it is important to look at the genomic alterations of this organelle in certain diseases. These alterations are associated particularly with various pulmonary diseases and lung cancers [57,58].…”
Section: Mitochondrial Methylationmentioning
confidence: 99%