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利用基因敲除小鼠的冗余分析(RDA)来鉴定在体内受PU.1和C/EBPα调控的髓系基因。

Use of RDA analysis of knockout mice to identify myeloid genes regulated in vivo by PU.1 and C/EBPalpha.

作者信息

Iwama A, Zhang P, Darlington G J, McKercher S R, Maki R, Tenen D G

机构信息

Hematology/Oncology Division and Department of Medicine, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, MA 02215, USA.

出版信息

Nucleic Acids Res. 1998 Jun 15;26(12):3034-43. doi: 10.1093/nar/26.12.3034.

Abstract

PU.1 and C/EBPalpha are transcription factors essential for normal myeloid development. Loss-of-function mutation of PU.1 leads to an absolute block in monocyte/macrophage development and abnormal granulocytic development while that of C/EBPalpha causes a selective block in neutrophilic differentiation. In order to understand these phenotypes, we studied the role of PU.1 and C/EBPalpha in the regulation of myeloid target genes in vivo . Northern blot analysis revealed that mRNAs encoding receptors for M-CSF, G-CSF and GM-CSF, were expressed at low levels in PU.1(-/-) fetal liver compared with wild type. To identify additional myeloid genes regulated by PU.1 and C/EBPalpha, we performed representational difference analysis (RDA), a PCR-based subtractive hybridization using fetal livers from wild type and PU.1 or C/EBPalpha knockout mice. By introducing a new modification of RDA, that of tissue-specific gene suppression, we could selectively identify a set of differentially expressed genes specific to myeloid cells. Differentially expressed genes included both primary and secondary granule protein genes. In addition, eight novel genes were identified that were upregulated in expression during myeloid differentiation. These methods provide a general strategy for elucidating the genes affected in murine knockout models.

摘要

PU.1和C/EBPα是正常髓系发育所必需的转录因子。PU.1的功能丧失突变导致单核细胞/巨噬细胞发育完全受阻以及粒细胞发育异常,而C/EBPα的功能丧失突变则导致嗜中性粒细胞分化选择性受阻。为了理解这些表型,我们在体内研究了PU.1和C/EBPα在髓系靶基因调控中的作用。Northern印迹分析显示,与野生型相比,编码M-CSF、G-CSF和GM-CSF受体的mRNA在PU.1(-/-)胎肝中的表达水平较低。为了鉴定受PU.1和C/EBPα调控的其他髓系基因,我们进行了代表性差异分析(RDA),这是一种基于PCR的消减杂交技术,使用野生型以及PU.1或C/EBPα基因敲除小鼠的胎肝。通过引入RDA的一种新修饰,即组织特异性基因抑制,我们能够选择性地鉴定出一组髓系细胞特异性差异表达基因。差异表达基因包括初级和次级颗粒蛋白基因。此外,还鉴定出八个在髓系分化过程中表达上调的新基因。这些方法为阐明小鼠基因敲除模型中受影响的基因提供了一种通用策略。

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