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首页> 外文期刊>Russian journal of bioorganic chemistry >Effect of a Heterodimeric Complex of the Transcription Factors SoxD (Sox15) and Xanf1 on the Formation of the Xanf1 Gene Expression Zone during the Early Development of the Forebrain in the Spur-Toed Frog
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Effect of a Heterodimeric Complex of the Transcription Factors SoxD (Sox15) and Xanf1 on the Formation of the Xanf1 Gene Expression Zone during the Early Development of the Forebrain in the Spur-Toed Frog

机译:转录因子SoxD(SOX15)和XANF1在刺激性青蛙早期XANF1基因表达区中形成XANF1基因表达区的影响

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摘要

The effect of a protein complex consisting of the homeodomain transcription factor Xanf1 and the HMG-containing transcription factor SoxD (homologue Sox15 in human and mouse, group G of the Sox family) on the formation of a spatial pattern of the Xanf1 gene expression has been studied. The Xanf1 factor determines the early development of the forebrain, and the disturbance of its expression results in the reduction of this part of the brain; the pan-neural factor SoxD is necessary for the formation of the neuroectoderm at the earliest stages of development. The study of the functioning of a complex of these factors is important for understanding the molecular bases of the formation of the nervous system. The functional role of the formation of the SoxD-Xanf1 complex directly in developing embryos of the spur-toed frog Xenopus laevis has been studied using the method of in situ hybridization with probes to Xanf1 mRNA. The analysis of changes in the Xanf1 gene expression by the action of the heterodimeric complex suggests that the inhibitory effect of the repressor Xanf1 on the transcription of its own gene is neutralized in the anterior zone at the neurula stage where it is functionally necessary for the stabilization of the cellular status as the anterior forebrain neuroectoderm.
机译:蛋白质复合物由同源域转录因子XANF1和含HMG的转录因子SoxD(人和小鼠的同源SOX15,SOX系列的同源SOX15)的影响已经存在于XANF1基因表达的空间模式的形成上研究过。 XANF1因子决定了前脑的早期发展,表达的干扰导致脑的这部分减少;泛神经因子SOXD对于在发育的最早阶段形成神经外胚层的必要条件是必要的。对这些因素复杂的功能的研究对于理解神经系统形成的分子碱很重要。使用原位杂交方法与XANF1 mRNA原位杂交的方法研究了直接在刺激性青蛙Xenopus Laevis的开发胚胎中形成的功能作用。异二聚体复合物作用的XANF1基因表达的变化的分析表明,抑制剂XANF1对其自身基因转录的抑制作用在神经水平阶段的前区中和,在功能上是必要的稳定化细胞身份作为前前脑神经外胚层霉菌的特性。

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