4.4 Article

Circulating nucleic acids damage DNA of healthy cells by integrating into their genomes

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JOURNAL OF BIOSCIENCES
卷 40, 期 1, 页码 91-111

出版社

INDIAN ACAD SCIENCES
DOI: 10.1007/s12038-015-9508-6

关键词

Ageing; apoptosis; cancer; circulating chromatin; circulating DNA; circulating nucleic acids; circulating nucleosomes; DNA damage; DNA damage response; DNA double-strand breaks; DNA repair

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资金

  1. Department of Atomic Energy, Govt. of India
  2. Intermediate fellowship from the Wellcome Trust/DBT India Alliance [IA/I/11/2500278]
  3. Department of Biotechnology, Govt. of India [BT/PR2372/AGR/36/696/2011]
  4. TMH Plan Project [2712]
  5. Council of Scientific & Industrial Research, Govt. of India
  6. [Seed-hi-Air 2897]
  7. [IRB 92]

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Whether nucleic acids that circulate in blood have any patho-physiological functions in the host have not been explored. We report here that far from being inert molecules, circulating nucleic acids have significant biological activities of their own that are deleterious to healthy cells of the body. Fragmented DNA and chromatin (DNAfs and Cfs) isolated from blood of cancer patients and healthy volunteers are readily taken up by a variety of cells in culture to be localized in their nuclei within a few minutes. The intra-nuclear DNAfs and Cfs associate themselves with host cell chromosomes to evoke a cellular DNA-damage-repair-response (DDR) followed by their incorporation into the host cell genomes. Whole genome sequencing detected the presence of tens of thousands of human sequence reads in the recipient mouse cells. Genomic incorporation of DNAfs and Cfs leads to dsDNA breaks and activation of apoptotic pathways in the treated cells. When injected intravenously into Balb/C mice, DNAfs and Cfs undergo genomic integration into cells of their vital organs resulting in activation of DDR and apoptotic proteins in the recipient cells. Cfs have significantly greater activity than DNAfs with respect to all parameters examined, while both DNAfs and Cfs isolated from cancer patients are more active than those from normal volunteers. All the above pathological actions of DNAfs and Cfs described above can be abrogated by concurrent treatment with DNase I and/or anti-histone antibody complexed nanoparticles both in vitro and in vivo. Taken together, our results that circulating DNAfs and Cfs are physiological, continuously arising, endogenous DNA damaging agents with implications to ageing and a multitude of human pathologies including initiation of cancer.

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