Department of Biology, Indiana State University, Terre Haute, IN, 47809, USA.
The Center for Genomic Advocacy, Indiana State University, Terre Haute, IN, 47809, USA.
Sci Rep. 2021 Feb 5;11(1):3221. doi: 10.1038/s41598-021-81894-1.
Forkhead (Fkh/Fox) domain transcription factors (TFs) mediate multiple cardiogenic processes in both mammals and Drosophila. We showed previously that the Drosophila Fox gene jumeau (jumu) controls three categories of cardiac progenitor cell division-asymmetric, symmetric, and cell division at an earlier stage-by regulating Polo kinase activity, and mediates the latter two categories in concert with the TF Myb. Those observations raised the question of whether other jumu-regulated genes also mediate all three categories of cardiac progenitor cell division or a subset thereof. By comparing microarray-based expression profiles of wild-type and jumu loss-of-function mesodermal cells, we identified nebbish (neb), a kinesin-encoding gene activated by jumu. Phenotypic analysis shows that neb is required for only two categories of jumu-regulated cardiac progenitor cell division: symmetric and cell division at an earlier stage. Synergistic genetic interactions between neb, jumu, Myb, and polo and the rescue of jumu mutations by ectopic cardiac mesoderm-specific expression of neb demonstrate that neb is an integral component of a jumu-regulated subnetwork mediating cardiac progenitor cell divisions. Our results emphasize the central role of Fox TFs in cardiogenesis and illustrate how a single TF can utilize different combinations of other regulators and downstream effectors to control distinct developmental processes.
叉头 (Fkh/Fox) 结构域转录因子 (TFs) 在哺乳动物和果蝇中均介导多种心脏发生过程。我们之前曾表明,果蝇 Fox 基因 jumeau (jumu) 通过调节 Polo 激酶活性来控制三类心脏祖细胞分裂——不对称分裂、对称分裂和更早阶段的细胞分裂,并与 TF Myb 共同调节后两类。这些观察结果提出了一个问题,即其他 jumu 调节的基因是否也介导所有三类心脏祖细胞分裂或其中的一部分。通过比较野生型和 jumu 功能丧失型中胚层细胞的基于微阵列的表达谱,我们鉴定了 nebbish (neb),这是一个被 jumu 激活的驱动蛋白编码基因。表型分析表明,neb 仅对两类 jumu 调节的心脏祖细胞分裂是必需的:对称分裂和更早阶段的细胞分裂。neb、jumu、Myb 和 polo 之间的协同遗传相互作用以及通过心脏中胚层特异性异位表达 neb 对 jumu 突变的挽救表明,neb 是介导心脏祖细胞分裂的 jumu 调节子网络的一个组成部分。我们的研究结果强调了 Fox TFs 在心脏发生中的核心作用,并说明了单个 TF 如何利用其他调节剂和下游效应物的不同组合来控制不同的发育过程。