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Zfp281(ZBP-99)在红细胞发育过程中与 Zfp148(ZBP-89)发挥功能冗余作用。

Zfp281 (ZBP-99) plays a functionally redundant role with Zfp148 (ZBP-89) during erythroid development.

机构信息

Division of Pediatric Hematology-Oncology, Boston Children's Hospital/Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA.

Harry Perkins Institute of Medical Research, QEII Medical Centre, Nedlands and Centre for Medical Research, University of Western Australia, Perth, WA, Australia.

出版信息

Blood Adv. 2019 Aug 27;3(16):2499-2511. doi: 10.1182/bloodadvances.2018030551.

Abstract

Erythroid maturation requires the concerted action of a core set of transcription factors. We previously identified the Krüppel-type zinc finger transcription factor Zfp148 (also called ZBP-89) as an interacting partner of the master erythroid transcription factor GATA1. Here we report the conditional knockout of Zfp148 in mice. Global loss of Zfp148 results in perinatal lethality from nonhematologic causes. Selective Zfp148 loss within the hematopoietic system results in a mild microcytic and hypochromic anemia, mildly impaired erythroid maturation, and delayed recovery from phenylhydrazine-induced hemolysis. Based on the mild erythroid phenotype of these mice compared with GATA1-deficient mice, we hypothesized that additional factor(s) may complement Zfp148 function during erythropoiesis. We show that Zfp281 (also called ZBP-99), another member of the Zfp148 transcription factor family, is highly expressed in murine and human erythroid cells. Zfp281 knockdown by itself results in partial erythroid defects. However, combined deficiency of Zfp148 and Zfp281 causes a marked erythroid maturation block. Zfp281 physically associates with GATA1, occupies many common chromatin sites with GATA1 and Zfp148, and regulates a common set of genes required for erythroid cell differentiation. These findings uncover a previously unknown role for Zfp281 in erythroid development and suggest that it functionally overlaps with that of Zfp148 during erythropoiesis.

摘要

红细胞成熟需要一组核心转录因子的协同作用。我们之前确定了 Krüppel 型锌指转录因子 Zfp148(也称为 ZBP-89)作为主红细胞转录因子 GATA1 的相互作用伙伴。在这里,我们报告了 Zfp148 在小鼠中的条件敲除。Zfp148 的全局缺失导致围产期因非血液原因而死亡。造血系统内的选择性 Zfp148 缺失导致轻度小细胞低色素性贫血、红细胞成熟轻度受损以及苯肼诱导的溶血后恢复延迟。基于这些小鼠与 GATA1 缺陷型小鼠相比,红细胞表型较轻,我们假设在红细胞生成过程中,其他因子可能补充 Zfp148 的功能。我们表明,Zfp281(也称为 ZBP-99),Zfp148 转录因子家族的另一个成员,在鼠和人红细胞中高度表达。Zfp281 的敲低本身导致部分红细胞缺陷。然而,Zfp148 和 Zfp281 的联合缺失导致明显的红细胞成熟阻滞。Zfp281 与 GATA1 物理结合,与 GATA1 和 Zfp148 占据许多共同的染色质位点,并调节红细胞分化所需的一组共同基因。这些发现揭示了 Zfp281 在红细胞发育中的先前未知作用,并表明它在红细胞生成过程中与 Zfp148 的功能重叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f251/6712527/70dae6c1884d/advances030551absf1.jpg

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