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Sox6 增强了人类红系祖细胞中的红细胞分化。

Sox6 enhances erythroid differentiation in human erythroid progenitors.

机构信息

Dipartimento di Biotecnologie e Bioscienze, Università di Milano-Bicocca, Piazza della Scienza 2, Milan, Italy.

出版信息

Blood. 2011 Mar 31;117(13):3669-79. doi: 10.1182/blood-2010-04-282350. Epub 2011 Jan 24.

Abstract

Sox6 belongs to the Sry (sex-determining region Y)-related high-mobility-group-box family of transcription factors, which control cell-fate specification of many cell types. Here, we explored the role of Sox6 in human erythropoiesis by its overexpression both in the erythroleukemic K562 cell line and in primary erythroid cultures from human cord blood CD34+ cells. Sox6 induced significant erythroid differentiation in both models. K562 cells underwent hemoglobinization and, despite their leukemic origin, died within 9 days after transduction; primary erythroid cultures accelerated their kinetics of erythroid maturation and increased the number of cells that reached the final enucleation step. Searching for direct Sox6 targets, we found SOCS3 (suppressor of cytokine signaling-3), a known mediator of cytokine response. Sox6 was bound in vitro and in vivo to an evolutionarily conserved regulatory SOCS3 element, which induced transcriptional activation. SOCS3 overexpression in K562 cells and in primary erythroid cells recapitulated the growth inhibition induced by Sox6, which demonstrates that SOCS3 is a relevant Sox6 effector.

摘要

Sox6 属于 Sry(性别决定区 Y)相关的高迁移率族盒转录因子家族,它控制着许多细胞类型的细胞命运特化。在这里,我们通过在红白血病 K562 细胞系和人脐血 CD34+细胞的原代红细胞培养物中过度表达 Sox6,来探索 Sox6 在人类红细胞生成中的作用。 Sox6 在这两种模型中均诱导显著的红细胞分化。 K562 细胞发生血红蛋白化,尽管它们具有白血病的起源,但在转导后 9 天内死亡;原代红细胞培养物加速了它们的红细胞成熟动力学,并增加了达到最终去核步骤的细胞数量。为了寻找 Sox6 的直接靶标,我们发现了 SOCS3(细胞因子信号转导抑制剂-3),它是一种已知的细胞因子反应介质。 Sox6 在体外和体内与 SOCS3 的一个进化上保守的调节元件结合,从而诱导转录激活。 SOCS3 在 K562 细胞和原代红细胞中的过表达重现了 Sox6 诱导的生长抑制,这表明 SOCS3 是 Sox6 的一个相关效应物。

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