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通过优化染色质免疫沉淀技术鉴定发育中小鼠前脑和视网膜中直接的Dlx同源结构域靶点。

Identification of a direct Dlx homeodomain target in the developing mouse forebrain and retina by optimization of chromatin immunoprecipitation.

作者信息

Zhou Qing-Ping, Le Trung Ngoc, Qiu Xiangguo, Spencer Virginia, de Melo Jimmy, Du Guoyan, Plews Margot, Fonseca Mario, Sun Jian Min, Davie James R, Eisenstat David D

机构信息

Manitoba Institute of Cell Biology, 675 McDermot Avenue, Winnipeg, Manitoba, Canada.

出版信息

Nucleic Acids Res. 2004 Feb 9;32(3):884-92. doi: 10.1093/nar/gkh233. Print 2004.

Abstract

Understanding homeobox gene specificity and function has been hampered by the lack of proven direct transcriptional targets during development. Dlx genes are expressed in the developing forebrain, retina, craniofacial structures and limbs. Dlx1/Dlx2 double knockout mice die at birth with multiple defects including abnormal forebrain development and decreased Dlx5 and Dlx6 expression. We have successfully applied chromatin immunoprecipitation (ChIP) to identify a direct transcriptional target of DLX homeoproteins from embryonic tissues in vivo. We optimized cross-linking conditions to enrich for protein-DNA complexes, then using specific high affinity DLX antibodies captured immunoenriched DLX genomic DNA transcriptional targets. DLX homeobox proteins bind differentially to the Dlx5/Dlx6 intergenic enhancer in newborn retina (DLX2) and embryonic striatum (DLX1, DLX2) in situ. Reporter gene assays demonstrated the functional significance of the binding of DLX proteins to this regulatory element, confirmed in vitro by electrophoretic mobility shift assays, using tissue extracts or recombinant DLX proteins. ChIP provides the best approach to identify direct Dlx homeoprotein targets from developing tissues in situ. The use of this technology will advance our understanding of Dlx gene function in the vertebrate in vivo and can be applied to examine targets of other homeobox genes and other classes of transcription factors.

摘要

由于在发育过程中缺乏经证实的直接转录靶点,对同源框基因特异性和功能的理解受到了阻碍。Dlx基因在发育中的前脑、视网膜、颅面结构和四肢中表达。Dlx1/Dlx2双敲除小鼠出生时死亡,伴有多种缺陷,包括前脑发育异常以及Dlx5和Dlx6表达降低。我们已成功应用染色质免疫沉淀(ChIP)技术在体内从胚胎组织中鉴定出DLX同源结构域蛋白的直接转录靶点。我们优化了交联条件以富集蛋白质-DNA复合物,然后使用特异性高亲和力DLX抗体捕获免疫富集的DLX基因组DNA转录靶点。DLX同源框蛋白在新生视网膜(DLX2)和胚胎纹状体(DLX1、DLX2)中原位与Dlx5/Dlx6基因间增强子的结合存在差异。报告基因检测证明了DLX蛋白与该调控元件结合的功能意义,这在体外通过电泳迁移率变动分析得到证实,使用的是组织提取物或重组DLX蛋白。ChIP为在原位从发育组织中鉴定直接的Dlx同源结构域蛋白靶点提供了最佳方法。这项技术的应用将增进我们对脊椎动物体内Dlx基因功能的理解,并且可用于研究其他同源框基因和其他转录因子类别的靶点。

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