| Literature DB >> 31369569 |
Carlotta Abbà1, Rita Campanelli1, Paolo Catarsi1, Laura Villani1, Vittorio Abbonante2, Melania Antonietta Sesta3, Giovanni Barosi1, Vittorio Rosti1, Margherita Massa3.
Abstract
Primary Myelofibrosis (PMF) is a myeloproliferative disorder associated with JAK2V617F, Calreticulin (CALR) indels, and MPLW515L/K mutations activating the tyrosine kinase JAK2 and its downstream signaling pathway. The nature of signaling abnormalities in primary cells from PMF patients is poorly understood, since most of the work has been performed in cell lines or animal models. By flow cytometry we measured constitutive and cytokine induced phosphorylation of STAT5, STAT3, and ERK1/2 in circulating CD34+ cells from 57 patients with PMF (20 with prefibrotic-PMF) and 13 healthy controls (CTRLs). Levels of constitutive and TPO induced p-STAT5, and IL6 induced p-STAT3 were higher in patients than in CTRLs. Constitutive p-STAT5 values were lower in CALR than homozygous JAK2V617F mutated CD34+ cells from PMF patients. Moreover, constitutive p-STAT5 and IL6 induced p-STAT3 values correlated directly with circulating CD34+ cell number/L, and inversely with the frequency of circulating CD34+ cells expressing CXCR4. Constitutive p-STAT5 values of CD34+ cells were also inversely correlated with hemoglobin levels. When the patients were divided according with presence/absence of JAK2V617F mutation, all the correlations described characterized the JAK2V617F+ patients with prefibrotic-PMF (P-PMF). In conclusion, increased constitutive p-STAT5 and IL6 induced p-STAT3 values in circulating CD34+ cells characterize patients with PMF. Constitutive p-STAT5 and IL6 induced p-STAT3 values correlate with circulating CD34+ cell number/L, the frequency of circulating CD34+ cells expressing CXCR4 and hemoglobin levels within the prefibrotic JAK2V617F+ patient population. Our data point toward a complex activation of STAT5-dependent pathways in the stem/progenitor cell compartment, that characterize the phenotypic diversity of PMF.Entities:
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Year: 2019 PMID: 31369569 PMCID: PMC6675063 DOI: 10.1371/journal.pone.0220189
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Demographic, hematological and genetic characteristics of the study population with primary myelofibrosis at the time of peripheral blood sampling (n = 57).
| n/57 | ||
|---|---|---|
| 31 | (54.4%) | |
| 57 | 53.0 (31–76) | |
| 37 | 22.8 (17.5–37.5) | |
| 57 | 81.0 (0–389) | |
| 57 | 12.6 (7.6–17.1) | |
| 57 | 8.5 (2.7–45) | |
| 19 | 2.0 (1–15) | |
| 20 | 1.0 (1–6) | |
| 57 | 549 (75–25560) | |
| 57 | 439 (49–1243) | |
| 57 | 120 (90–756) | |
| 57 | 26.0 (0.9–1849) | |
| 34 | (59.7%) | |
| 22 | (38.6%) | |
| 12 | (21.1%) | |
| 19 | (33.3%) | |
| 14 | (24.6%) | |
| 5 | (8.7%) | |
| 4 | (7%) |
Fig 1STAT3/STAT5 constitutive and cytokine induced phosphorylation in CD34+ cells.
Evaluation of constitutive p-STAT5 (A), TPO induced p-STAT5 (B), and IL6 induced p-STAT3 (C) in circulating CD34+ cells of patients with primary myelofibrosis (PMF) and healthy subjects (CTRLs). Median values are shown as solid lines.
Fig 2STAT3/STAT5 constitutive and cytokine induced phosphorylation analysis by flow cytometry.
Cytofluorimetric plots of CD34+ cell gating in a representative patient with primary myelofibrosis (PMF) (A) and a healthy subject (CTRL) (E). Overlay histograms show the isotype control (light grey) and constitutive p-STAT5 (B and F), TPO induced p-STAT5 (C and G) and IL6 induced p-STAT3 (D and H) signals.
Fig 3STAT5 evaluation.
Assessment of STAT5 by flow cytometry (A) in CD34+ cells from patients with primary myelofibrosis (PMF) (n = 5) and healthy subjects (CTRLs) (n = 5). Western blot analysis of STAT5 in CD34+ cells derived from CTRLs and patients with primary myelofibrosis (PMF); membranes were probed with anti-STAT5 antibody (CST 94205) and with anti-α-tubulin antibody (Abcam ab52866) as loading control (B for one representative patient and CTRL). Densitometric analysis of STAT5/α-tubulin ratio (n = 5 CTRLs, n = 5 PMF) (C).
Fig 4Constitutive STAT5 phosphorylation and disease genotypes.
Constitutive p-STAT5 signal in circulating CD34+ cells of healthy subjects (CTRLs) and of patients with primary myelofibrosis (PMF) divided according with the genotype (A) and according with the genotype and the allele burden within the JAK2+ patients (B). Median values are shown as solid lines.
Fig 5Constitutive STAT5 phosphorylation correlates with JAK2V617 allele burden.
Significant direct correlation between constitutive p-STAT5 MFI values in PB CD34+ cells and JAK2 mutated allele burden in patients with PMF (A). The same correlation is shown in patients with prefibrotic-PMF (P-PMF) (B) and overt primary myelofibrosis (PMF) (C).
Fig 6Correlations between constitutive p-STAT5 MFI values and disease parameters.
Significant direct correlation between constitutive p-STAT5 MFI values in PB CD34+ cells and hemoglobin levels (A), CD34+ expressing CXCR4 frequency (B), and the absolute number of circulating CD34+ cells (C) in JAK2+ patients with PMF.
Correlations between constitutive p-STAT5, TPO induced p-STAT5, and IL6 induced p-STAT3 MFI values and disease parameters tested in circulating CD34+ cells of CALR+ patients with PMF.
| Hb | CD34+CXCR4+frequency | Chol | CD34+ cells x106L | ||
|---|---|---|---|---|---|
| R | 0.08 | -0.2 | 0.2 | ||
| p | 0.7 | 0.5 | 0.5 | ||
| R | 0.4 | -0.26 | -0.46 | 0.03 | |
| p | 0.11 | 0.35 | 0.29 | 0.9 | |
| R | 0.09 | -0.3 | -0.4 | 0.24 | |
| p | 0.7 | 0.26 | 0.34 | 0.35 |
Hemoglobin: Hb Cholesterol: Chol
Correlations between CD34+ cell constitutive p-STAT5 MFI values and disease progression markers in patients with prefibrotic-PMF (P-PMF) or overt PMF.
| Hb | CD34+CXCR4+frequency | CD34+ cells x106L | |||
|---|---|---|---|---|---|
| P-PMF | R | ||||
| n = 13 | p | ||||
| PMF | R | -0.27 | -0.37 | ||
| n = 21 | p | 0.24 | 0.1 |
Hemoglobin: Hb Cholesterol: Chol