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Ikaros基因敲除小鼠中的多种造血缺陷和延迟的珠蛋白转换

Multiple hematopoietic defects and delayed globin switching in Ikaros null mice.

作者信息

Lopez Rocio A, Schoetz Stuti, DeAngelis Kathryn, O'Neill David, Bank Arthur

机构信息

Department of Genetics and Development, College of Physicians and Surgeons, Columbia University, New York, NY 10032, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Jan 22;99(2):602-7. doi: 10.1073/pnas.022412699.

Abstract

We have previously reported the structure of a chromatin remodeling complex (PYR complex) with Ikaros as its DNA binding subunit that is specifically present in adult murine and human hematopoietic cells. We now show that homozygous Ikaros "knockout" (null) mice lack the PYR complex, demonstrating the requirement for Ikaros in the formation of the complex on DNA. Heterozygous Ikaros null mice have about half as much PYR complex, indicating a dosage effect for both Ikaros and PYR complex. We also show that Ikaros null mice have multiple hematopoietic cell defects including anemia and megakaryocytic abnormalities, in addition to previously reported lymphoid and stem cell defects. The null mice also have a delay in murine embryonic to adult beta-globin switching and a delay in human gamma to beta switching, consistent with a previously suggested role for PYR complex in this process. Lastly, cDNA array analyses indicate that several hematopoietic cell-specific genes in all blood lineages are either up- or down-regulated in 14-day embryos from Ikaros null as compared with wild-type mice. These results indicate that Ikaros and PYR complex function together in vivo at many adult hematopoietic cell-specific genes and at intergenic sites, affecting their expression and leading to pleiotropic hematopoietic defects.

摘要

我们之前报道过一种染色质重塑复合物(PYR复合物)的结构,其DNA结合亚基为Ikaros,该复合物特异性存在于成年小鼠和人类造血细胞中。我们现在发现,纯合Ikaros“敲除”(缺失)小鼠缺乏PYR复合物,这表明Ikaros对于该复合物在DNA上的形成是必需的。杂合Ikaros缺失小鼠的PYR复合物含量约为正常小鼠的一半,这表明Ikaros和PYR复合物存在剂量效应。我们还发现,Ikaros缺失小鼠除了之前报道的淋巴细胞和干细胞缺陷外,还存在多种造血细胞缺陷,包括贫血和巨核细胞异常。缺失小鼠在小鼠胚胎向成年β-珠蛋白转换以及人类γ向β转换过程中也出现延迟,这与之前认为PYR复合物在此过程中发挥作用的观点一致。最后,cDNA阵列分析表明,与野生型小鼠相比,Ikaros缺失小鼠14天胚胎中所有血细胞谱系的几个造血细胞特异性基因均上调或下调。这些结果表明,Ikaros和PYR复合物在体内共同作用于许多成年造血细胞特异性基因和基因间位点,影响它们的表达并导致多效性造血缺陷。

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