Fuchs Ota, Simakova Olga, Klener Pavel, Cmejlova Jana, Zivny Jan, Zavadil Jiri, Stopka Tomas
Institute of Hematology and Blood Transfusion, Prague, Czech Republic.
Blood Cells Mol Dis. 2002 Mar-Apr;28(2):221-33. doi: 10.1006/bcmd.2002.0487.
Patients with secondary myelodysplasias and acute myeloid leukemias (MDS/AML) frequently exhibit interstitial deletions of the chromosome-5q resulting in hemizygous loss of the transcription transactivator Smad5. Smad5 is a member of the signal transducer family conveying the pleiotropic TGF-gb/BMP cytokine signals with roles in development, cell growth control, and tumor progression. Here we present a study of the Smad5 expression and its functional role in leukemia cell lines as well as in primary CD34+ progenitors of MDS/AML patients and healthy individuals. Consistent Smad5 gene expression in these cell types and the gradual increase in its mRNA and protein levels in a model of induced erythroid differentiation of murine erythroleukemia (MEL) cells suggest a role of the gene in hematopoiesis. We show that bone morphogenetic protein 4 (BMP4) directs Smad5 activation in human hematopoietic cells, as monitored at the levels of protein phosphorylation, nuclear translocation, and specific transcription response. In vitro induction of normal human CD34+ cells by BMP4 results in significantly increased proliferation of erythroid progenitors (BFU-E) and formation of glycophorin-A+ cells, whereas perturbation of Smad5 expression by antisense oligonucleotides causes significantly decreased rates of BMP4-induced erythroid differentiation. We have not detected any effects of Smad5 inhibition on BMP4-stimulated progenitors of the granulocyteNmacrophage lineage. We propose that the BMP4/Smad5 signal transduction pathway activates hematopoietic differentiation programs that may be impaired in anemia manifestations in MDS and AML patients with Smad5 haploinsufficiency.
继发性骨髓增生异常综合征和急性髓系白血病(MDS/AML)患者常出现5号染色体q臂间质缺失,导致转录反式激活因子Smad5半合子缺失。Smad5是信号转导家族的成员,可传递多效性转化生长因子-β/骨形态发生蛋白(TGF-β/BMP)细胞因子信号,在发育、细胞生长控制和肿瘤进展中发挥作用。在此,我们展示了一项关于Smad5在白血病细胞系以及MDS/AML患者和健康个体的原代CD34+祖细胞中的表达及其功能作用的研究。这些细胞类型中Smad5基因表达一致,且在小鼠红白血病(MEL)细胞诱导红系分化模型中其mRNA和蛋白水平逐渐增加,提示该基因在造血过程中发挥作用。我们发现,骨形态发生蛋白4(BMP4)可在人造血细胞中激活Smad5,这可通过蛋白磷酸化、核转位和特异性转录反应水平进行监测。BMP4体外诱导正常人CD34+细胞可使红系祖细胞(BFU-E)增殖显著增加,并形成血型糖蛋白A+细胞,而反义寡核苷酸干扰Smad5表达则会导致BMP4诱导的红系分化率显著降低。我们未检测到Smad5抑制对BMP4刺激的粒细胞-巨噬细胞系祖细胞有任何影响。我们提出,BMP4/Smad5信号转导通路激活了造血分化程序,而在Smad5单倍体不足的MDS和AML患者的贫血表现中,该程序可能受损。