miR-203 and miR-221 regulate SOCS1 and SOCS3 in essential thrombocythemia

被引:0
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作者
A Navarro
S Pairet
A Álvarez-Larrán
A Pons
G Ferrer
R Longarón
C Fernández-Rodríguez
L Camacho
M Monzó
C Besses
B Bellosillo
机构
[1] Molecular Oncology and Embryology Laboratory,Department of Pathology
[2] Human Anatomy Unit,Department of Hematology
[3] School of Medicine,undefined
[4] University of Barcelona,undefined
[5] IDIBAPS,undefined
[6] Hospital del Mar,undefined
[7] IDIBAPS,undefined
[8] Grup de Recerca Clínica Aplicada en Neoplàsies Hematològiques,undefined
[9] IMIM (Hospital del Mar Medical Research Institute),undefined
[10] IDIBAPS,undefined
[11] Hospital del Mar,undefined
[12] IDIBAPS,undefined
[13] Institute of Hematology and Oncology,undefined
[14] Hospital Clinic,undefined
[15] IDIBAPS,undefined
来源
Blood Cancer Journal | 2016年 / 6卷
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学科分类号
摘要
The biological basis of essential thrombocythemia (ET) patients lacking known mutations is still unknown. MicroRNAs (miRNA) regulate hematopoietic differentiation and are deregulated in several hematopoietic malignancies. However, miRNA expression in ET patients has been poorly explored. We performed miRNA profiling in platelets from 19 ET patients and 10 healthy controls. Hierarchical cluster analysis showed two well-separated clusters between patients and controls, indicating that ET platelets had a characteristic 70-miRNA signature (P<0.0001), 68 of which were downregulated. According to the mutational status, three differentially expressed miRNAs, miR-15a (P=0.045), miR-150 (P=0.001) and miR-519a (P=0.036), were identified. A 40-miRNA signature was identified characterizing JAK2V617F-positive ET patients. Eight genes, whose interaction with the miRNAs could activate the JAK/STAT pathway were identified. An inverse correlation was observed between miRNAs expression and their target genes for SOCS1 and miR-221, SOCS3 and miR-221, SOCS3 and miR-203, and PTPN11 and miR-23a. All three miRNAs were upregulated in JAK2V617F-negative ET patients. SOCS1 and SOCS3 were validated as targets of miR-221 and miR-203, respectively. In summary, our study shows that platelets from JAK2V617F-negative ET patients harbor a specific miRNA signature that can participate in the modulation of the JAK/STAT pathway through regulation of key genes as SOCS1 and SOCS3.
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页码:e406 / e406
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