Department of Biology, University of Texas at San Antonio, One UTSA Circle, San Antonio, TX, 78249, USA.
Department of Biology, University of Texas at San Antonio, One UTSA Circle, San Antonio, TX, 78249, USA.
Dev Biol. 2021 Jul;475:65-79. doi: 10.1016/j.ydbio.2021.02.009. Epub 2021 Mar 8.
Apoptosis is a fundamental remodeling process for most tissues during development. In this manuscript we examine a pro-apoptotic function for the Drosophila DNA binding protein Zfh-2 during development of the central nervous system (CNS) and appendages. In the CNS we find that a loss-of-function zfh-2 allele gives an overall reduction of apoptotic cells in the CNS, and an altered pattern of expression for the axonal markers 22C10 and FasII. This same loss-of-function zfh-2 allele causes specific cells in the NB7-3 lineage of the CNS that would normally undergo apoptosis to be inappropriately maintained, whereas a gain-of-function zfh-2 allele has the opposite effect, resulting in a loss of normal NB 7-3 progeny. We also demonstrate that Zfh-2 and Hunchback reciprocally repress each other's gene expression which limits apoptosis to later born progeny of the NB7-3 lineage. Apoptosis is also required for proper segmentation of the fly appendages. We find that Zfh-2 co-localizes with apoptotic cells in the folds of the imaginal discs and presumptive cuticular joints. A reduction of Zfh-2 levels with RNAi inhibits expression of the pro-apoptotic gene reaper, and produces abnormal joints in the leg, antenna and haltere. Apoptosis has previously been shown to be activated by Notch signaling in both the NB7-3 CNS lineage and the appendage joints. Our results indicate that Zfh-2 facilitates Notch-induced apoptosis in these structures.
细胞凋亡是大多数组织在发育过程中的基本重塑过程。在本手稿中,我们研究了果蝇 DNA 结合蛋白 Zfh-2 在中枢神经系统 (CNS) 和附肢发育过程中的促凋亡功能。在 CNS 中,我们发现功能丧失的 zfh-2 等位基因导致 CNS 中凋亡细胞的总体减少,以及轴突标记物 22C10 和 FasII 的表达模式发生改变。同一功能丧失的 zfh-2 等位基因导致通常会经历凋亡的 CNS NB7-3 谱系中的特定细胞被不恰当地维持,而功能获得的 zfh-2 等位基因则产生相反的效果,导致正常的 NB 7-3 后代丧失。我们还证明 Zfh-2 和 Hunchback 相互抑制对方的基因表达,从而将凋亡限制在 NB7-3 谱系中较晚出生的后代。凋亡对于果蝇附肢的正常分段也是必需的。我们发现 Zfh-2 与 imaginal 盘的褶皱中和假定的表皮关节中的凋亡细胞共定位。用 RNAi 降低 Zfh-2 水平会抑制促凋亡基因 reaper 的表达,并导致腿部、触角和平衡棒关节异常。先前的研究表明,在 NB7-3 CNS 谱系和附肢关节中,Notch 信号会激活凋亡。我们的结果表明 Zfh-2 促进了这些结构中 Notch 诱导的凋亡。