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阐明 LMO2 在人类红细胞中的作用。

Elucidation of the role of LMO2 in human erythroid cells.

机构信息

Department of Hematology and Rheumatology, Tohoku University Graduate School of Medicine, Sendai, Japan.

出版信息

Exp Hematol. 2013 Dec;41(12):1062-76.e1. doi: 10.1016/j.exphem.2013.09.003. Epub 2013 Sep 13.

Abstract

LIM-only protein 2 (LMO2) is a non-DNA-binding component of a protein complex containing master regulators of hematopoiesis, including GATA-1, SCL/TAL1, and LDB1. However, the role of LMO2 in human erythroid differentiation is unclear. LMO2 knockdown in hemin-treated K562 cells reduced the benzidine-positive cell ratio, suggesting that LMO2 retards hemin-mediated K562 cell differentiation. Microarray analysis using K562 cells after siRNA-mediated LMO2 knockdown indicated that 177 and 78 genes were upregulated and downregulated (>1.5-fold), respectively. The downregulated gene ensemble contained prototypical erythroid genes (HBB, SLC4A1). Whereas LMO2 knockdown did not affect GATA-1 or SCL/TAL1 expression, it resulted in significantly reduced chromatin occupancy of GATA-1, SCL/TAL1, and LDB1 at the β-globin locus control region and SLC4A1 locus in both K562 cells and human induced pluripotent stem cell-derived erythroid cells. Introduction of GATA-1 mutations, shown to impair direct interaction with LMO2, significantly diminished chromatin occupancy. On the other hand, knockdown of either SCL/TAL1 or LDB1 also resulted in significantly reduced chromatin occupancy of GATA-1 at endogenous loci, suggesting that impaired assembly of these components also affects GATA-1 chromatin occupancy. In an ex vivo model of erythroid differentiation from CD34(+) cells, LMO2 protein level peaked on day 5 and decreased at later stages of differentiation. The LMO2 expression pattern was similar to those of GATA-1 and SCL/TAL1. Furthermore, shRNA-mediated LMO2 knockdown in primary erythroblasts suggested that LMO2 regulates HBB, HBA, and SLC4A1 expression. LMO2 contributes to GATA-1 target gene expression by affecting assembly of the GATA-SCL/TAL1 complex components at endogenous loci.

摘要

LMO2 仅蛋白(LMO2)是造血主调控因子(包括 GATA-1、SCL/TAL1 和 LDB1)蛋白复合物的非 DNA 结合成分。然而,LMO2 在人类红细胞分化中的作用尚不清楚。用血红素处理 K562 细胞时敲低 LMO2,降低了联苯胺阳性细胞比例,表明 LMO2 延缓了血红素介导的 K562 细胞分化。用 siRNA 介导的 LMO2 敲低后的 K562 细胞进行微阵列分析,结果表明分别有 177 个和 78 个基因上调和下调(>1.5 倍)。下调的基因集包含典型的红细胞基因(HBB、SLC4A1)。虽然 LMO2 敲低不影响 GATA-1 或 SCL/TAL1 的表达,但导致 GATA-1、SCL/TAL1 和 LDB1 在 K562 细胞和人诱导多能干细胞衍生的红细胞细胞中的 β-珠蛋白基因调控区和 SLC4A1 基因座的染色质占有率显著降低。已显示 GATA-1 突变会损害与 LMO2 的直接相互作用,这会显著降低染色质占有率。另一方面,敲低 SCL/TAL1 或 LDB1 也会导致 GATA-1 在其内源基因座上的染色质占有率显著降低,表明这些成分的组装受损也会影响 GATA-1 染色质占有率。在 CD34+细胞的红细胞分化的体外模型中,LMO2 蛋白水平在第 5 天达到峰值,并在分化的后期阶段下降。LMO2 的表达模式与 GATA-1 和 SCL/TAL1 的表达模式相似。此外,在原代红细胞中用 shRNA 介导的 LMO2 敲低表明 LMO2 调节 HBB、HBA 和 SLC4A1 的表达。LMO2 通过影响 GATA-SCL/TAL1 复合物成分在其内源基因座上的组装,来促进 GATA-1 靶基因的表达。

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