Beccari Leonardo, Marco-Ferreres Raquel, Tabanera Noemi, Manfredi Anna, Souren Marcel, Wittbrodt Beate, Conte Ivan, Wittbrodt Jochen, Bovolenta Paola
Centro de Biología Molecular "Severo Ochoa," Consejo Superior de Investigaciones Científicas-Universidad Autónoma de Madrid, c/ Nicolas Cabrera 1, Madrid 28049, Spain,; Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), c/ Nicolas Cabrera 1, Madrid 28049, Spain; Instituto Cajal, Consejo Superior de Investigaciones Científicas, Avda. Dr. Arce 37, Madrid, 28002, Spain,.
Centro de Biología Molecular "Severo Ochoa," Consejo Superior de Investigaciones Científicas-Universidad Autónoma de Madrid, c/ Nicolas Cabrera 1, Madrid 28049, Spain,; Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), c/ Nicolas Cabrera 1, Madrid 28049, Spain; Instituto Cajal, Consejo Superior de Investigaciones Científicas, Avda. Dr. Arce 37, Madrid, 28002, Spain.
J Biol Chem. 2015 Nov 6;290(45):26927-26942. doi: 10.1074/jbc.M115.681254. Epub 2015 Sep 16.
A well integrated and hierarchically organized gene regulatory network is responsible for the progressive specification of the forebrain. The transcription factor Six3 is one of the central components of this network. As such, Six3 regulates several components of the network, but its upstream regulators are still poorly characterized. Here we have systematically identified such regulators, taking advantage of the detailed functional characterization of the regulatory region of the medaka fish Six3.2 ortholog and of a time/cost-effective trans-regulatory screening, which complemented and overcame the limitations of in silico prediction approaches. The candidates resulting from this search were validated with dose-response luciferase assays and expression pattern criteria. Reconfirmed candidates with a matching expression pattern were also tested with chromatin immunoprecipitation and functional studies. Our results confirm the previously proposed direct regulation of Pax6 and further demonstrate that Msx2 and Pbx1 are bona fide direct regulators of early Six3.2 distribution in distinct domains of the medaka fish forebrain. They also point to other transcription factors, including Tcf3, as additional regulators of different spatial-temporal domains of Six3.2 expression. The activity of these regulators is discussed in the context of the gene regulatory network proposed for the specification of the forebrain.
一个高度整合且层次有序的基因调控网络负责前脑的逐步特化。转录因子Six3是该网络的核心组成部分之一。因此,Six3调控网络的多个组成部分,但其上游调控因子仍未得到充分表征。在这里,我们利用青鳉鱼Six3.2直系同源基因调控区域的详细功能表征以及一种省时省钱的反式调控筛选方法,系统地鉴定了这些调控因子,该方法补充并克服了计算机预测方法的局限性。通过剂量反应荧光素酶测定和表达模式标准对此次搜索得到的候选因子进行了验证。对具有匹配表达模式且再次确认的候选因子也进行了染色质免疫沉淀和功能研究。我们的结果证实了先前提出的对Pax6的直接调控,并进一步证明Msx2和Pbx1是青鳉鱼前脑不同区域早期Six3.2分布的真正直接调控因子。它们还指出其他转录因子,包括Tcf3,是Six3.2表达不同时空域的额外调控因子。在为前脑特化提出的基因调控网络背景下讨论了这些调控因子的活性。