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Hox/Pbx和Brn结合位点在体外和体内介导Pax3的表达。

Hox/Pbx and Brn binding sites mediate Pax3 expression in vitro and in vivo.

作者信息

Pruitt Steven C, Bussman Amy, Maslov Alexander Y, Natoli Thomas A, Heinaman Roy

机构信息

Department of Molecular and Cellular Biology, Roswell Park Cancer Institute, Elm and Carlton Streets, Buffalo, NY 14263, USA.

出版信息

Gene Expr Patterns. 2004 Oct;4(6):671-85. doi: 10.1016/j.modgep.2004.04.006.

Abstract

Pax3 is a paired-homeodomain class transcription factor that serves a role in dorsal-ventral and medial-lateral patterning during vertebrate embryogenesis. Its expression is localized to dorsal domains within the developing neural tube and lateral domains within the developing somite. Additionally, modulation of its expression occurs along the rostral-caudal axis. Previous studies [Development 124 (1997) 617] have localized sequence elements required for expression of Pax3 in the neural tube and neural crest to a 1.6 kbp promoter fragment. In the present study, four discrete DNA elements within the 1.6 kbp promoter fragment are shown by electrophoretic mobility shift assays (EMSA) to exhibit sequence specific interactions with proteins present in nuclear extracts from P19 EC cells induced to express Pax3 by treatment with retinoic acid (RA). Proteins interacting at each of these elements are identified based on biochemical purification using DNA affinity chromatography or a candidate approach. These identifications were confirmed by the ability of specific antibodies to super-shift DNA-protein complexes in EMSA. Two of the four DNA sequence elements are shown to interact with the neural specific Pou-domain class III transcription factors Brn1 and Brn2. The remaining sites contain either consensus binding elements for heterodimers of Pbx and an anterior set of Hox family members, from paralogous groups 1-5, or monomeric Meis and are shown to interact with members of the Pbx and Meis families. Ectopic expression of Brn2 plus HoxA1 but not either factor alone, is sufficient to induce efficient expression from the endogenous Pax3 promoter in P19 EC stem cells under conditions where they would not otherwise express Pax3. Finally, in transgenic mice, mutation of either of the Pou-domain protein binding sites results in reduced expression throughout the neural tube while mutation of the Pbx/Hox binding site results in loss of expression in the anterior domain in which Hox family members from paralogous groups 1-5 are expressed. These observations demonstrate that binding elements for both neural and anterior-posterior position specific transcription factors mediate domains of Pax3 expression.

摘要

Pax3是一种配对同源结构域类转录因子,在脊椎动物胚胎发育过程中参与背腹和内外模式形成。其表达定位于发育中的神经管内的背侧区域以及发育中的体节内的外侧区域。此外,其表达的调节沿头尾轴发生。先前的研究[《发育》124(1997)617]已将神经管和神经嵴中Pax3表达所需的序列元件定位到一个1.6kbp的启动子片段。在本研究中,通过电泳迁移率变动分析(EMSA)表明,1.6kbp启动子片段内的四个离散DNA元件与用视黄酸(RA)处理诱导表达Pax3的P19 EC细胞核提取物中存在的蛋白质表现出序列特异性相互作用。基于使用DNA亲和色谱的生化纯化或候选方法,鉴定了在这些元件中的每一个上相互作用的蛋白质。这些鉴定通过特异性抗体在EMSA中使DNA-蛋白质复合物超迁移的能力得到证实。四个DNA序列元件中的两个显示与神经特异性Pou结构域III类转录因子Brn1和Brn2相互作用。其余位点包含Pbx与来自旁系同源组1-5的一组前部Hox家族成员的异二聚体的共有结合元件,或单体Meis,并显示与Pbx和Meis家族的成员相互作用。在P19 EC干细胞中,在它们否则不会表达Pax3的条件下,Brn2加HoxA1的异位表达但不是单独任何一个因子的异位表达,足以诱导内源性Pax3启动子的有效表达。最后,在转基因小鼠中,Pou结构域蛋白结合位点中的任何一个发生突变都会导致整个神经管中的表达降低,而Pbx/Hox结合位点发生突变会导致在表达来自旁系同源组1-5的Hox家族成员的前部区域中表达缺失。这些观察结果表明,神经和前后位置特异性转录因子的结合元件介导了Pax3表达的区域。

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