| Literature DB >> 29784053 |
Wei Du1, Xiaoli Li2, Andrew F Wilson2, Qishen Pang3,4.
Abstract
Although p53 mutations are common in solid tumors, such mutations are found at a lower frequency in hematologic malignancies. In the genetic disorder Fanconi anemia (FA), p53 has been proposed as an important pathophysiological factor for two important hematologic hallmarks of the disease: bone marrow failure and leukemogenesis. Here we show that low levels of the p53 protein enhance the capacity of leukemic stem cells from FA patients to repopulate immunodeficient mice. Furthermore, boosting p53 protein levels with the use of the small molecule Nutlin-3 reduced leukemia burden in recipient mice. These results demonstrate that the level of p53 protein plays a crucial role in FA leukemogenesis.Entities:
Keywords: Fanconi anemia; Leukemic stem cells; Leukemogenesis; Nutlin-3; p53
Mesh:
Substances:
Year: 2018 PMID: 29784053 PMCID: PMC5963145 DOI: 10.1186/s13287-018-0882-5
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1Effect of p53 protein level on human FA leukemia cells. a The levels of p53 protein in FA AML cells. BM cells from three healthy donors and five FA AML patients were subjected to immunoblot analysis using antibodies specific for total p53, phosphor-p53 (P-p53), or β-actin. The relative levels of total p53 or of P-p53 to β-actin are indicated below the blot. b Comparison of human cells engrafted in the BM of NSGS recipient mice. Mice were transplanted by intra-femoral injection with 1–3 × 106 BM cells from three healthy donors and five FA AML patients. Assessment of xenografts in the BM of the recipient mice was performed 12 weeks after transplantation by BM aspiration and flow cytometry (n = 5 per group). c BM cells from the recipient mice in b were subjected to flow cytometric analysis for human cell contents 12 weeks post-transplant. Quantification of myeloid (CD33+) and lymphoid (CD19+) cells in total human engraftment (hCD45+) (n = 5 per group). d Survival of transplant recipients. Cells (5 × 106) isolated from the bone marrow of the primary recipients in b were injected intrafemorally into each NSGS secondary recipient mouse (n = 6–10 for each group). The survival of recipient mice was analyzed with a Kaplan–Meier plot. e The levels of p53 protein in human-derived BM cells (hCD45+) from three surviving recipients (non-leuk) and three leukemic recipients (Leuk) transplanted with the AML-4 cells were analyzed by immunoblotting using antibodies for p53 or β-actin. The relative levels of p53 to β-actin are indicated below the blot. The error bars and asterisks in Fig. 1c represent means ± SD and ∗p < 0.05; ∗∗p < 0.01,respectively
Fig. 2Targeted increase of p53 protein level ameliorates FA leukemia burden. a Nutlin-3 treatment ameliorates splenomegaly. We transplanted 1–3 × 106 BM cells from the AML-3 patient by intra-femoral injection into sublethally irradiated NSGS recipient mice. The mice were treated with Nutlin-3 at a dose of 50 mg/kg daily beginning at 6 weeks post-transplant for 2 weeks. Quantification of spleen weights and representative spleen images of the recipient mice are shown (n = 6 per group). b Nutlin-3 treatment inhibits myeloid expansion. BM cells from the recipient mice in a were subjected to flow cytometric analysis for human cell contents. Quantification of myeloid (CD33+) cells in total human engraftment (hCD45+) is shown (n = 6 mice per group). c Nutlin-3 treatment elevates p53 protein level. The levels p53 protein in human-derived BM cells (hCD45+) from three vehicle-treated and three Nutlin-3-treated recipient mice in a were analyzed by immunoblotting using antibodies for p53 or β-actin. The relative levels of p53 to β-actin are indicated below the blot. d Nutlin-3 treatment delays leukemia development. Cells (5 × 106) isolated from the BM of the primary recipients in a were injected intrafemorally into each NSGS secondary recipient m ouse (n = 6–9 for each group). Survival of the recipients was monitored and plotted by Kaplan–Meier curve method. The error bars and asterisks in Fig. 2a, b represent means ± SD and ∗p < 0.05, respectively