| Literature DB >> 21234375 |
Juan Chen1, Zhan-Ping Shi, Juan Dong, Ting-Ting Liao, Yan-Peng Wang, Xue-Ping Sun, Zheng-Jie Yan, Xiao-Qiao Qian, Yu-Gui Cui, Zhi-Gang Xue, Guoping Fan, Jia-Yin Liu.
Abstract
Human primary fibroblasts are a popular type of somatic cells for the production of induced pluripotent stem (iPS) cells. Here we characterized biological properties of primary fibroblasts in terms of cell-growth rate, cytogenetic stability, and the number of inactive X chromosomes during long-term passaging. We produced eight lines of female human dermal fibroblasts (HDFs) and found normal karyotype and expected pattern of X chromosome inactivation (XCI) at low passages (Passage P1-5). However, four out of the eight HDF lines at high passage numbers (≥ P10) exhibited duplicated hallmarks of inactive X chromosome including two punctuate signals of histone H3 lysine 27 trimethylation (H3K27me3) and X inactive-specific transcript (XIST) RNA signals in approximately 8.5-18.5% of the cells. Our data suggest that the copy number of inactive X chromosomes in a subset of female HDF is increased by a two-fold. Consistently, DNA fluorescent in situ hybridization (FISH) identified 3-4 copies of X chromosomes in one nucleus in this subset of cells with two inactive Xs. We conclude that female HDF cultures exhibit a higher risk of genetic anomalies such as carrying an increased number of X chromosomes including both active and inactive X chromosomes at a high passage (≥ P10).Entities:
Year: 2010 PMID: 21234375 PMCID: PMC3017890 DOI: 10.1155/2010/289653
Source DB: PubMed Journal: Int J Cell Biol ISSN: 1687-8876
Figure 1Growth curves of 8 HDF lines. The growth curves of eight cultured HDF cells show delitescence at 0–24 hours, exponential growth phase at 24–96 hours and stationary phase at 96–144 hours after cell passage.
Figure 2Immunocytochemical (ICC) analysis of the number of inactive X chromosomes in HDF cultures. HDFs in passages 1, 5, and 10 showed one positively stained H3K27me3 punctate signal (arrow) in most nuclei. Two green signals (arrows), inactive of two inactive Xs, were observed in few of HDF cells at passage 10.
Quantitation of the percentage of HDF cells without, or with one or two punctate signal(s) for H3K27me3 staining in HDF no.1–8.
| Cell line | Passage 1 | Passage 5 | Passage 10 | ||||||
|---|---|---|---|---|---|---|---|---|---|
| S0 | S1 | S2 | S0 | S1 | S2 | S0 | S1 | S2 | |
| HDF-1 | 34 | 166 | 0 | 44 | 156 | 0 | 47 | 137 | 26 |
| HDF-2 | 28 | 172 | 0 | 38 | 162 | 0 | 37 | 131 | 32 |
| HDF-3 | 40 | 160 | 0 | 48 | 152 | 0 | 52 | 111 | 37 |
| HDF-4 | 26 | 174 | 0 | 31 | 169 | 0 | 80 | 120 | 0 |
| HDF-5 | 22 | 178 | 0 | 32 | 168 | 0 | 62 | 138 | 0 |
| HDF-6 | 42 | 158 | 0 | 44 | 156 | 0 | 64 | 136 | 0 |
| HDF-7 | 39 | 161 | 0 | 51 | 149 | 0 | 74 | 126 | 0 |
| HDF-8 | 24 | 176 | 0 | 41 | 159 | 0 | 67 | 116 | 17 |
S0, S1, and S2, respectively, represent zero, one, and two H3K27me3 signal(s) observed in each nucleus.
Figure 3XIST RNA FISH analysis of the number of inactive X chromosomes. FISH analysis of HDF cultures in passages 1, 5, and 10 showed that most of the nuclei counterstained with DAPI (in blue) have one small spot signal for XIST RNA (in red) in the merged image. This was in accordance with the results of the H3K27me3 ICC analysis in Figure 2.
Figure 4FISH analysis of the number of total X-chromosomes as well as the number of inactive Xs. The total number of X-chromosomes in HDF cells at passage 10 was detected by DNA FISH analysis of the centromeric region of X chromosome (green) and the number of inactive X chromosomes by XIST RNA FISH assay (red). Note that the double signals for XIST RNA are indicative of the two inactive Xs, which can be observed in cell nucleus with either quadruple-signals for X chromosome (A) or triple signals for X chromosome (B). Cell nucleus was counterstained with DAPI (blue).