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斑马鱼纽扣头样因子Bts1是中后脑发育过程中pax2.1表达的早期调节因子。

The zebrafish buttonhead-like factor Bts1 is an early regulator of pax2.1 expression during mid-hindbrain development.

作者信息

Tallafuss A, Wilm T P, Crozatier M, Pfeffer P, Wassef M, Bally-Cuif L

机构信息

Zebrafish Neurogenetics Junior Research Group, Institute of Virology, Technical University-Munich, Trogerstrasse 4b, 81675 Munich, Germany.

出版信息

Development. 2001 Oct;128(20):4021-34. doi: 10.1242/dev.128.20.4021.

Abstract

Little is known about the factors that control the specification of the mid-hindbrain domain (MHD) within the vertebrate embryonic neural plate. Because the head-trunk junction of the Drosophila embryo and the MHD have patterning similarities, we have searched for vertebrate genes related to the Drosophila head gap gene buttonhead (btd), which in the fly specifies the head-trunk junction. We report here the identification of a zebrafish gene which, like btd, encodes a zinc-finger transcriptional activator of the Sp-1 family (hence its name, bts1 for btd/Sp-related-1) and shows a restricted expression in the head. During zebrafish gastrulation, bts1 is transcribed in the posterior epiblast including the presumptive MHD, and precedes in this area the expression of other MHD markers such as her5, pax2.1 and wnt1. Ectopic expression of bts1 combined to knock-down experiments demonstrate that Bts1 is both necessary and sufficient for the induction of pax2.1 within the anterior neural plate, but is not involved in regulating her5, wnt1 or fgf8 expression. Our results confirm that early MHD development involves several genetic cascades that independently lead to the induction of MHD markers, and identify Bts1 as a crucial upstream component of the pathway selectively leading to pax2.1 induction. In addition, they imply that flies and vertebrates, to control the development of a boundary embryonic region, have probably co-opted a similar strategy: the restriction to this territory of the expression of a Btd/Sp-like factor.

摘要

关于控制脊椎动物胚胎神经板中脑-后脑区域(MHD)特化的因素,我们所知甚少。由于果蝇胚胎的头-躯干连接处与MHD具有模式相似性,我们寻找了与果蝇头部间隙基因纽扣头(btd)相关的脊椎动物基因,该基因在果蝇中决定头-躯干连接处的形成。我们在此报告鉴定出一种斑马鱼基因,它与btd一样,编码一种Sp-1家族的锌指转录激活因子(因此将其命名为bts1,即btd/Sp相关-1),并且在头部有局限性表达。在斑马鱼原肠胚形成过程中,bts1在包括假定的MHD的后缘外胚层中转录,并且在该区域先于其他MHD标记物如her5、pax2.1和wnt1的表达。bts1的异位表达与敲除实验相结合表明,Bts1对于在前神经板中诱导pax2.1既是必需的也是充分的,但不参与调节her5、wnt1或fgf8的表达。我们的结果证实,早期MHD发育涉及几个独立导致MHD标记物诱导的遗传级联反应,并确定Bts1是选择性导致pax2.1诱导途径的关键上游成分。此外,这意味着果蝇和脊椎动物在控制胚胎边界区域的发育时,可能采用了类似的策略:将Btd/Sp样因子的表达限制在该区域。

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