Applied Biology Division, CSIR-Indian Institute of Chemical Technology, Uppal Road, Hyderabad 500 007, India.
Academy of Scientific and Innovative Research (AcSIR) Training and Development Complex, CSIR Campus, CSIR Road, Taramani, Chennai 600 113, India.
Open Biol. 2020 Sep;10(9):200029. doi: 10.1098/rsob.200029. Epub 2020 Sep 2.
Tailless is a committed transcriptional repressor and principal regulator of the brain and eye development in . Rpd3, the histone deacetylase, is an established repressor that interacts with co-repressors like Sin3a, Prospero, Brakeless and Atrophin. This study aims at deciphering the role of in embryonic segmentation and larval brain development in . It delineates the mechanism of Tailless regulation by , along with its interacting partners. There was a significant reduction in Tailless in heteroallelic mutant embryos, substantiating that Rpd3 is indispensable for the normal Tailless expression. The expression of the primary readout, Tailless was correlative to the expression of the neural cell adhesion molecule homologue, Fascilin2 (Fas2). Rpd3 also aids in the proper development of the mushroom body. Both Tailless and Fas2 expression are reported to be antagonistic to the epidermal growth factor receptor (EGFR) expression. The decrease in Tailless and Fas2 expression highlights that EGFR is upregulated in the larval mutants, hindering brain development. This study outlines the axis comprising Rpd3, dEGFR, Tailless and Fas2, which interact to fine-tune the early segmentation and larval brain development. Therefore, Rpd3 along with Tailless has immense significance in early embryogenesis and development of the larval brain.
无尾是一种有决心的转录抑制剂,是大脑和眼睛发育的主要调节剂。Rpd3,即组蛋白去乙酰化酶,是一种已被证实的抑制剂,它与 co-repressors 如 Sin3a、Prospero、Brakeless 和 Atrophin 相互作用。本研究旨在阐明在胚胎分段和幼虫大脑发育中的作用。它描述了由 Rpd3 调节的机制,以及其相互作用的伙伴。在杂合突变体胚胎中无尾的表达显著减少,这证实了 Rpd3 对于正常的无尾表达是不可或缺的。主要读出物的表达与神经细胞粘附分子同源物 Fascilin2 (Fas2) 的表达相关。Rpd3 还有助于蘑菇体的正常发育。无尾和 Fas2 的表达都被报道与表皮生长因子受体 (EGFR) 的表达呈拮抗关系。无尾和 Fas2 表达的减少表明,幼虫突变体中的 EGFR 上调,阻碍了大脑的发育。本研究概述了由 Rpd3、dEGFR、无尾和 Fas2 组成的轴,它们相互作用以微调早期分段和幼虫大脑发育。因此,Rpd3 与无尾一起在早期胚胎发生和幼虫大脑发育中具有重要意义。