Back

Diabetic conditions induce intolerance to accumulation of pathogenic mitochondrial DNAs

Ogasawara, E.; Nakada, K.; Katada, S.; Mito, T.; Hayashi, J.-I.

2019-10-02 cell biology
10.1101/790956 bioRxiv
Show abstract

Marked accumulation of mitochondrial DNA (mtDNA) with a particular pathogenic mutation is necessary for the mutant mtDNA to express its pathogenicity as mitochondrial respiration defects. However, the nuclear genome background, or the physiological status, or both, might also be important for the pathogenic regulation of mutant mtDNAs, because most mitochondrial function is controlled by polypeptides encoded in the nuclear genome. To test this, we generated diabetic mice carrying pathogenic mtDNA with a large-scale deletion ({Delta}mtDNA) that loses six tRNA genes and seven structural genes essential for mitochondrial respiration. Compared with non-diabetic mice carrying {Delta}mtDNA, diabetic mice carrying {Delta}mtDNA showed a decrease in mitochondrial biogenesis regulated by nuclear-encoded genes, and mitochondrial respiration defects and the resultant mitochondrial disease phenotypes were induced even in the case of low loads of {Delta}mtDNA. In addition, diabetic culture conditions intensified the pathogenicity of human mtDNA with an A3243G point mutation in the tRNALue (UUR) gene. Our results indicated that the diabetic conditions are a modifier that exacerbates mitochondrial respiration defects due to mutant mtDNAs. The finding suggests the possibility that recovery from diabetic conditions might be an effective treatment strategy for some disorders involving both mutant mtDNAs and diabetic signs.\n\nAuthor SummaryIt has been reported that accumulation of pathogenic mutant mitochondrial DNA (mtDNA) and the resultant mitochondrial metabolic dysfunction are associated with a wide variety of disorders, such as mitochondrial diseases, diabetes, neuo-degenerative disorders, and cancers. Considering that most mitochondrial function is regulated by nuclear-genome-encoded polypeptides, it is very important to focus on cooperation between mutant mtDNA, nuclear genetic background, and vital conditions for understanding precise pathogeneses of mtDNA-mediated disorders. By using model cells and mice carrying pathogenic mtDNAs, we report here that diabetic conditions are a modifier for the pathogenic regulation of mutant mtDNAs. Because the onset and progression of diabetes are often associated with aging, our finding suggests that some age-associated disorders with mutant mtDNAs and diabetic complications might be induced partly by enhancement of the pathogenicity of mutant mtDNAs by diabetic conditions.

Matching journals

The top 7 journals account for 50% of the predicted probability mass.

1
Biochemical and Biophysical Research Communications
84 papers in training set
Top 0.1%
9.1%
2
Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
26 papers in training set
Top 0.1%
8.1%
3
PLOS ONE
5266 papers in training set
Top 21%
8.1%
4
eLife
5828 papers in training set
Top 16%
6.9%
5
Mitochondrion
12 papers in training set
Top 0.1%
6.9%
6
International Journal of Molecular Sciences
494 papers in training set
Top 1%
5.7%
7
Cells
249 papers in training set
Top 0.3%
5.6%
50% of probability mass above
8
Cell Death & Disease
126 papers in training set
Top 0.7%
3.3%
9
iScience
1154 papers in training set
Top 6%
3.2%
10
Aging
75 papers in training set
Top 0.5%
2.7%
11
Free Radical Biology and Medicine
36 papers in training set
Top 0.3%
2.2%
12
Scientific Reports
3612 papers in training set
Top 50%
2.0%
13
Experimental Cell Research
28 papers in training set
Top 0.2%
2.0%
14
Journal of Cellular Physiology
25 papers in training set
Top 0.3%
1.7%
15
Journal of Biological Chemistry
690 papers in training set
Top 6%
1.4%
16
Acta Biochimica et Biophysica Sinica
23 papers in training set
Top 0.3%
1.4%
17
Gene
46 papers in training set
Top 1%
1.1%
18
Genes
144 papers in training set
Top 3%
1.0%
19
PLOS Genetics
862 papers in training set
Top 11%
0.9%
20
Human Molecular Genetics
141 papers in training set
Top 3%
0.9%
21
Biomolecules
100 papers in training set
Top 3%
0.9%
22
The FASEB Journal
194 papers in training set
Top 5%
0.9%
23
Frontiers in Cell and Developmental Biology
233 papers in training set
Top 5%
0.6%
24
Genomics, Proteomics & Bioinformatics
172 papers in training set
Top 2%
0.6%
25
Frontiers in Molecular Biosciences
102 papers in training set
Top 3%
0.6%
26
Cell Death & Differentiation
48 papers in training set
Top 1%
0.6%
27
Bioscience Reports
27 papers in training set
Top 2%
0.6%