| Literature DB >> 24472662 |
Yulin Chen, Lin Guo, Jiekai Chen, Xiangjie Zhao, Weichen Zhou, Cheng Zhang, Jiucun Wang, Li Jin1, Duanqing Pei, Feng Zhang.
Abstract
BACKGROUND: Induced pluripotent stem cells (iPSCs) derived from somatic cells have enormous potential for clinical applications. Notably, it was recently reported that reprogramming from somatic cells to iPSCs can induce genomic copy number variation (CNV), which is one of the major genetic causes of human diseases. However it was unclear if this genome instability is dependent on reprogramming methods and/or the genetic background of donor cells. Furthermore, genome-wide CNV analysis is technically challenging and CNV data need to be interpreted with care.Entities:
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Year: 2014 PMID: 24472662 PMCID: PMC3912500 DOI: 10.1186/1471-2164-15-79
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Figure 1The experimental flow of genome-wide CNV analyses in miPSCs using high-density CGH microarrays. A total of 41 miPSC lines were derived from the same donor of MEF B2 using different reprogramming factors and/or dosages. Genomic DNAs of the parental MEF B2 and various miPSC lines were respectively extracted and fragmented. Cy5-dUTP was used for labeling miPSC DNAs and Cy3-dUTP for the donor DNAs. Each labeled miPSC DNA was hybridized together with a labeled donor DNA onto the mouse genome CGH microarrays. Microarray handling and data analysis were conducted following the Agilent oligonucleotide CGH protocol. Examples were shown for a copy number loss (deletion; depicted by green concave) and a copy number gain (duplication; depicted by red convex) at the bottom.
Figure 2The genome distribution of 24 loci of the miPSC CNVs identified in this study was shown. The green bars indicate the deletion loci, and the red bars represent duplication loci.
Figure 3Comparison of CNV rates between the miPSCs induced by different reprogramming methods. (A) The comparison of CNV numbers between O_0.5 and O_1.5 miPSC lines. This difference is statistically significant (p-value = 0.030, Mann–Whitney U test with the exact significance). (B) The comparison of CNV numbers between OKS_0.5 and OKS_1.5 miPSC lines (Mann–Whitney U test with the exact significance). (C) The combinational analysis of (A) and (B). A significant difference of CNV numbers between high and low reprogramming factor dosages was found (p-value = 0.008, ANOVA test for two-factor analysis). (D) The comparison of CNV numbers between the methods using diverse reprogramming factors with balanced dosages (Mann–Whitney U test with the exact significance). The CNVs are significantly less in the miPSCs of XYZK_0.5 than in those of O_0.5 (p-value = 0.043) and OKS_0.5 (p-value = 0.023).