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Differential sequences of exosomal NANOG DNA as a potential diagnostic cancer marker
- Source :
- PLoS ONE, Vol 13, Iss 5, p e0197782 (2018), PLoS ONE
- Publication Year :
- 2018
- Publisher :
- Public Library of Science (PLoS), 2018.
-
Abstract
- NANOG has been demonstrated to play an essential role in the maintenance of embryonic stem cells, and its pseudogene, NANOGP8, is suggested to promote the cancer stem cell phenotype. As the roles of these genes are intimately involved with glioblastoma multiforme progression and exosomes are critical in intercellular communication, we conducted a detailed analysis of the association of the NANOG gene family with exosomes to identify diagnostic markers for cancer. Exosomes were precipitated from conditioned culture media from various cell lines, and NANOG gene fragments were directly amplified without DNA isolation using multiple primer sets. The use of the enzymes AlwNI and SmaI with restriction fragment length polymorphism analysis functioned to distinguish NANOGP8 from other NANOG family members. Collectively, results suggest that the NANOG DNA associated with exosomes is not full length and that mixed populations of the NANOG gene family exist. Furthermore, sequence analysis of exosomal DNA amplified with a NANOGP8 specific primer set frequently showed an insertion of a 22 bp sequence into the 3’ UTR. The occurrence rate of this insertion was significantly higher in exosomal DNA clones from cancer cells as compared to normal cells. We have detected mixed populations of NANOG DNA associated with exosomes and have identified preferential modulations in the sequences from cancer samples. Our findings, coupled with the properties of exosomes, may allow for the detection of traditionally inaccessible cancers (i.e. GBM) through minimally invasive techniques. Further analysis of exosomal DNA sequences of NANOG and other embryonic stemness genes (OCT3/4, SOX2, etc.) may establish a robust collection of exosome based diagnostic markers, and further elucidate the mechanisms of cancer formation, progression, and metastasis.
- Subjects :
- 0301 basic medicine
DNA cloning
lcsh:Medicine
Artificial Gene Amplification and Extension
Exosomes
Polymerase Chain Reaction
Medicine and Health Sciences
Blastomas
lcsh:Science
3' Untranslated Regions
Neurological Tumors
Multidisciplinary
Brain Neoplasms
Database and informatics methods
Sequence analysis
Nanog Homeobox Protein
Genomics
Cell biology
Gene Expression Regulation, Neoplastic
Oncology
Neurology
Multigene Family
embryonic structures
Cellular Structures and Organelles
Pseudogenes
Research Article
Homeobox protein NANOG
Bioinformatics
Biology
Research and Analysis Methods
Genome Complexity
Exosome
03 medical and health sciences
SOX2
Diagnostic Medicine
Cancer stem cell
Cell Line, Tumor
Biomarkers, Tumor
Cancer Detection and Diagnosis
Genetics
Humans
Vesicles
Molecular Biology Techniques
Molecular Biology
Gene
DNA sequence analysis
lcsh:R
Biology and Life Sciences
Cancers and Neoplasms
Computational Biology
Cell Biology
Vector Cloning
Coculture Techniques
Introns
Microvesicles
Mutagenesis, Insertional
HEK293 Cells
030104 developmental biology
Culture Media, Conditioned
Cancer cell
lcsh:Q
Primer (molecular biology)
Glioblastoma
Glioblastoma Multiforme
Cloning
Subjects
Details
- ISSN :
- 19326203
- Volume :
- 13
- Database :
- OpenAIRE
- Journal :
- PLOS ONE
- Accession number :
- edsair.doi.dedup.....ec711cb7233da1f7898f161ea931811f
- Full Text :
- https://doi.org/10.1371/journal.pone.0197782