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CACCC 结合蛋白 KLF3/BKLF 抑制了一组 KLF1/EKLF 靶基因,并在体内红细胞成熟过程中发挥重要作用。

The CACCC-binding protein KLF3/BKLF represses a subset of KLF1/EKLF target genes and is required for proper erythroid maturation in vivo.

机构信息

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, New South Wales, Australia.

出版信息

Mol Cell Biol. 2012 Aug;32(16):3281-92. doi: 10.1128/MCB.00173-12. Epub 2012 Jun 18.

Abstract

The CACCC-box binding protein erythroid Krüppel-like factor (EKLF/KLF1) is a master regulator that directs the expression of many important erythroid genes. We have previously shown that EKLF drives transcription of the gene for a second KLF, basic Krüppel-like factor, or KLF3. We have now tested the in vivo role of KLF3 in erythroid cells by examining Klf3 knockout mice. KLF3-deficient adults exhibit a mild compensated anemia, including enlarged spleens, increased red pulp, and a higher percentage of erythroid progenitors, together with elevated reticulocytes and abnormal erythrocytes in the peripheral blood. Impaired erythroid maturation is also observed in the fetal liver. We have found that KLF3 levels rise as erythroid cells mature to become TER119(+). Consistent with this, microarray analysis of both TER119(-) and TER119(+) erythroid populations revealed that KLF3 is most critical at the later stages of erythroid maturation and is indeed primarily a transcriptional repressor. Notably, many of the genes repressed by KLF3 are also known to be activated by EKLF. However, the majority of these are not currently recognized as erythroid-cell-specific genes. These results reveal the molecular and physiological function of KLF3, defining it as a feedback repressor that counters the activity of EKLF at selected target genes to achieve normal erythropoiesis.

摘要

CACCC 结合蛋白红系 Krüppel 样因子(EKLF/KLF1)是一种主调控因子,指导许多重要的红系基因的表达。我们之前已经表明,EKLF 驱动第二个 Krüppel 样因子,即基本 Krüppel 样因子或 KLF3 的基因转录。现在,我们通过检查 Klf3 敲除小鼠来测试 KLF3 在红细胞中的体内作用。KLF3 缺陷的成年小鼠表现出轻微的代偿性贫血,包括脾脏肿大、红髓增加以及红细胞前体的比例增加,同时外周血中的网织红细胞和异常红细胞增多。在胎肝中也观察到红细胞成熟受损。我们发现 KLF3 水平随着红细胞的成熟而升高,成为 TER119(+)。与此一致的是,对 TER119(-)和 TER119(+)红细胞群体的微阵列分析表明,KLF3 在红细胞成熟的后期阶段最为关键,实际上主要是转录抑制因子。值得注意的是,许多被 KLF3 抑制的基因也被 EKLF 激活。然而,其中大多数目前并不被认为是红细胞特异性基因。这些结果揭示了 KLF3 的分子和生理功能,将其定义为一种反馈抑制剂,可在选定的靶基因上抵消 EKLF 的活性,以实现正常的红细胞生成。

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