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促红细胞生成素诱导的SKT6细胞血红蛋白化是由促红细胞生成素或催乳素受体的最小细胞质结构域介导的,而不涉及GATA-1或EKLF的调节。

Epo-induced hemoglobinization of SKT6 cells is mediated by minimal cytoplasmic domains of the Epo or prolactin receptors without modulation of GATA-1 or EKLF.

作者信息

Reese T T, Gregory R C, Sharlow E R, Pacifici R E, Crouse J A, Todokoro K, Wojchowski D M

机构信息

Graduate Program in Pathobiology, Pennsylvania State University, University Park 16802, USA.

出版信息

Growth Factors. 1997;14(2-3):161-76. doi: 10.3109/08977199709021518.

Abstract

Interaction of erythropoietin with its type 1 receptor is essential to the development of late erythroid progenitor cells. Through the ectopic expression of receptor mutants in lymphoid and myeloid cell lines, insight has been gained regarding effectors that regulate Epo-induced proliferation. In contrast, effectors that regulate Epo-induced differentiation events (e.g. globin gene expression) are largely undefined. For in vitro studies of this pathway, erythroleukemic SKT6 cell sublines have been isolated which stably and efficiently hemoglobinize in response to Epo. Epo rapidly activated Jak2, STAT5 and detectably STATs 1 and 3, while no effects on GATA-1, EKLF or STAT5 expression were observed. Finally, efficient hemoglobinization of SKT6 cells was shown to be mediated by chimeric receptors comprised of the EGF receptor extracellular domain and truncated cytoplasmic subdomains of either the Epo receptor or the prolactin Nb2 receptor. This work further establishes SKT6 cells as an important model for studies of Epo-stimulated differentiation, and shows that this signaling pathway is promoted by a limited set of membrane-proximal receptor domains and effectors.

摘要

促红细胞生成素与其1型受体的相互作用对于晚期红系祖细胞的发育至关重要。通过在淋巴和髓系细胞系中异位表达受体突变体,人们对调节促红细胞生成素诱导增殖的效应器有了深入了解。相比之下,调节促红细胞生成素诱导分化事件(如珠蛋白基因表达)的效应器在很大程度上尚不明确。为了对该途径进行体外研究,已分离出红白血病SKT6细胞亚系,它们在促红细胞生成素的作用下能稳定且高效地血红蛋白化。促红细胞生成素迅速激活Jak2、STAT5以及可检测到的STAT1和STAT3,而未观察到对GATA-1、EKLF或STAT5表达有影响。最后,SKT6细胞的高效血红蛋白化被证明是由嵌合受体介导的,这些嵌合受体由表皮生长因子受体胞外结构域和促红细胞生成素受体或催乳素Nb2受体的截短胞质亚结构域组成。这项工作进一步确立了SKT6细胞作为促红细胞生成素刺激分化研究的重要模型,并表明该信号通路由一组有限的膜近端受体结构域和效应器所促进。

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