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集落刺激因子-1在双潜能NFS-60细胞系向单核细胞系定向分化过程中,会损害促红细胞生成素的增殖和分化信号。

Colony-stimulating factor-1 impairs both proliferation and differentiation signals of erythropoietin during the commitment of bipotential NFS-60 cell line to the monocytic lineage.

作者信息

Pawlak G, Valadoux-Delplanque C, Revol V, Bourette R P, Blanchet J P, Mouchiroud G

机构信息

Centre de Génétique Moléculaire et Cellulaire, Université Claude Bernard Lyon I, Villeurbanne, France.

出版信息

Exp Hematol. 1999 May;27(5):797-805. doi: 10.1016/s0301-472x(99)00013-2.

Abstract

The interleukin-3 (IL-3) dependent cell line NFS-60 contains bipotential progenitors that exhibit both erythroid and myelomonocytic potentials. In order to study their commitment to the monocytic lineage, NFS-60 cells were retrovirally transduced with mouse c-fms cDNA, which encodes the colony-stimulating factor-1 receptor (CSF-1R), resulting in the N-Fms cell line. N-Fms cells proliferated in response to CSF-1 with a growth rate similar to that obtained in response to IL-3 and progressively differentiated from myeloid blasts to monocytic cells within 3 days of culture. When maintained in IL-3, about 3% of N-Fms cells formed large hemoglobinized colonies in semisolid cultures supplemented with erythropoietin (EPO). However, this property was lost after a 24-hour cultivation in the presence of CSF-1 or, interestingly, both CSF-1 and IL-3. This loss of response to EPO was reverted following a brief passage (24 hours) in IL-3, but the rescued colonies did not undergo terminal erythrocytic differentiation. Furthermore, CSF-1 also affected proliferative response to EPO of N-Fms cells constitutively expressing EPO receptors. Our data strongly suggest that CSF-1 can suppress erythroid potential in bipotential N-Fms cells by altering proliferative and differentiation signal of EPO.

摘要

白细胞介素-3(IL-3)依赖的细胞系NFS-60含有具有红系和髓单核细胞系双潜能的祖细胞。为了研究它们向单核细胞系的定向分化,用编码集落刺激因子-1受体(CSF-1R)的小鼠c-fms cDNA通过逆转录病毒转导NFS-60细胞,从而得到N-Fms细胞系。N-Fms细胞对CSF-1有增殖反应,其生长速率与对IL-3的反应相似,并且在培养3天内从髓系母细胞逐渐分化为单核细胞。当在IL-3中培养时,约3%的N-Fms细胞在添加促红细胞生成素(EPO)的半固体培养物中形成大的血红蛋白化集落。然而,在CSF-1存在下培养24小时后,或者有趣的是,在CSF-1和IL-3同时存在下培养24小时后,这种特性丧失。在IL-3中短暂传代(24小时)后,对EPO的反应丧失得以恢复,但挽救的集落未经历终末红细胞分化。此外,CSF-1也影响组成性表达EPO受体的N-Fms细胞对EPO的增殖反应。我们的数据强烈表明,CSF-1可通过改变EPO的增殖和分化信号来抑制双潜能N-Fms细胞中的红系潜能。

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