Mitochondrial DNA transcription and mitochondrial genome-encoded long noncoding RNA in diabetic retinopathy

IF 3.9 3区 生物学 Q2 CELL BIOLOGY
Jay Kumar, Renu A. Kowluru
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Abstract

In diabetic retinopathy, mitochondrial DNA (mtDNA) is damaged and mtDNA-encoded genes and long noncoding RNA cytochrome B (LncCytB) are downregulated. LncRNAs lack an open reading frame, but they can regulate gene expression by associating with DNA/RNA/protein. Double stranded mtDNA has promoters on both heavy (HSP) and light (LSP) strands with binding sites for mitochondrial transcription factor A (TFAM) between them. The aim was to investigate the role of LncCytB in mtDNA transcription in diabetic retinopathy. Using human retinal endothelial cells incubated in high glucose, the effect of regulation of LncCytB on TFAM binding at mtDNA promoters was investigated by Chromatin immunoprecipitation, and binding of LncCytB at TFAM by RNA immunoprecipitation and RNA fluorescence in situ hybridization. High glucose decreased TFAM binding at both HSP and LSP, and binding of LncCytB at TFAM. While LncCytB overexpression ameliorated decrease in TFAM binding and transcription of genes encoded by both H- and L- strands, LncCytB-siRNA further downregulated them. Maintenance of mitochondrial homeostasis by overexpressing mitochondrial superoxide dismutase or Sirtuin-1 protected diabetes-induced decrease in TFAM binding at mtDNA and LncCytB binding at TFAM, and mtDNA transcription. Similar results were obtained from mouse retinal microvessels from streptozotocin-induced diabetic mice. Thus, LncCytB facilitates recruitment of TFAM at HSP and LSP, and its downregulation in diabetes compromises the binding, resulting in the downregulation of polypeptides encoded by mtDNA. Regulation of LncCytB, in addition to protecting mitochondrial genomic stability, should also help in maintaining the transcription of mtDNA encoded genes and electron transport chain integrity in diabetic retinopathy.

糖尿病视网膜病变中的线粒体 DNA 转录和线粒体基因组编码的长非编码 RNA。
在糖尿病视网膜病变中,线粒体 DNA(mtDNA)受损,mtDNA 编码的基因和长非编码 RNA 细胞色素 B(LncCytB)下调。LncRNA 缺乏开放阅读框,但可通过与 DNA/RNA 蛋白结合来调节基因表达。双链 mtDNA 的重链(HSP)和轻链(LSP)上都有启动子,它们之间有线粒体转录因子 A(TFAM)的结合位点。我们的目的是研究 LncCytB 在糖尿病视网膜病变的 mtDNA 转录中的作用。利用在高糖条件下培养的人视网膜内皮细胞,通过染色质免疫共沉淀法研究了 LncCytB 的调节对 TFAM 与 mtDNA 启动子结合的影响,并通过 RNA 免疫共沉淀法和 RNA 荧光原位杂交法研究了 LncCytB 与 TFAM 的结合。高糖减少了 TFAM 与 HSP 和 LSP 的结合,也减少了 LncCytB 与 TFAM 的结合。过量表达 LncCytB 可改善 TFAM 结合的减少以及 H 链和 L 链编码基因的转录,而 LncCytB-siRNA 则进一步下调了它们。通过过量表达线粒体超氧化物歧化酶或 Sirtuin-1 来维持线粒体的稳态,可保护糖尿病引起的 TFAM 与 mtDNA 结合、LncCytB 与 TFAM 结合以及 mtDNA 转录的减少。链脲佐菌素诱导的糖尿病小鼠视网膜微血管也得出了类似的结果。因此,LncCytB 有助于 TFAM 在 HSP 和 LSP 上的招募,而糖尿病小鼠体内 LncCytB 的下调会影响其结合,从而导致 mtDNA 编码的多肽下调。对 LncCytB 的调控除了保护线粒体基因组的稳定性外,还有助于维持糖尿病视网膜病变中 mtDNA 编码基因的转录和电子传递链的完整性。
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来源期刊
Mitochondrion
Mitochondrion 生物-细胞生物学
CiteScore
9.40
自引率
4.50%
发文量
86
审稿时长
13.6 weeks
期刊介绍: Mitochondrion is a definitive, high profile, peer-reviewed international research journal. The scope of Mitochondrion is broad, reporting on basic science of mitochondria from all organisms and from basic research to pathology and clinical aspects of mitochondrial diseases. The journal welcomes original contributions from investigators working in diverse sub-disciplines such as evolution, biophysics, biochemistry, molecular and cell biology, genetics, pharmacology, toxicology, forensic science, programmed cell death, aging, cancer and clinical features of mitochondrial diseases.
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