Quijano Janine C, Wisotzkey Robert G, Tran Nancy Lan, Huang Yunxian, Stinchfield Michael J, Haerry Theodor E, Shimmi Osamu, Newfeld Stuart J
School of Life Sciences, Arizona State University.
Dept. Biological Sciences, California State University-East Bay.
Mol Biol Evol. 2016 Oct;33(10):2621-32. doi: 10.1093/molbev/msw132. Epub 2016 Jul 8.
Secreted ligands in the Dpp/BMP family drive dorsal-ventral (D/V) axis formation in all Bilaterian species. However, maternal factors regulating Dpp/BMP transcription in this process are largely unknown. We identified the BTB domain protein longitudinals lacking-like (lolal) as a modifier of decapentaplegic (dpp) mutations. We show that Lolal is evolutionarily related to the Trithorax group of chromatin regulators and that lolal interacts genetically with the epigenetic factor Trithorax-like during Dpp D/V signaling. Maternally driven Lolal(HA) is found in oocytes and translocates to zygotic nuclei prior to the point at which dpp transcription begins. lolal maternal and zygotic mutant embryos display significant reductions in dpp, pMad, and zerknullt expression, but they are never absent. The data suggest that lolal is required to maintain dpp transcription during D/V patterning. Phylogenetic data revealed that lolal is an evolutionarily new gene present only in insects and crustaceans. We conclude that Lolal is the first maternal protein identified with a role in dpp D/V transcriptional maintenance, that Lolal and the epigenetic protein Trithorax-like are essential for Dpp D/V signaling and that the architecture of the Dpp D/V pathway evolved in the arthropod lineage after the separation from vertebrates via the incorporation of new genes such as lolal.
Dpp/BMP家族中分泌的配体驱动所有两侧对称动物物种的背腹(D/V)轴形成。然而,在此过程中调节Dpp/BMP转录的母体因子在很大程度上尚不清楚。我们鉴定出BTB结构域蛋白longitudinals lacking-like(lolal)作为decapentaplegic(dpp)突变的修饰因子。我们表明Lolal在进化上与染色质调节因子的三胸复合物相关,并且在Dpp D/V信号传导过程中,lolal与表观遗传因子Trithorax-like发生遗传相互作用。母体驱动的Lolal(HA)在卵母细胞中被发现,并在dpp转录开始之前转移到合子核中。lolal母体和合子突变胚胎在dpp、pMad和zerknullt表达上显著降低,但它们从未完全缺失。数据表明,lolal是D/V模式形成过程中维持dpp转录所必需的。系统发育数据显示,lolal是仅存在于昆虫和甲壳类动物中的一个进化上新基因。我们得出结论,Lolal是首个被鉴定出在dpp D/V转录维持中起作用的母体蛋白,Lolal和表观遗传蛋白Trithorax-like对Dpp D/V信号传导至关重要,并且Dpp D/V途径的结构在节肢动物谱系与脊椎动物分离后,通过纳入lolal等新基因而进化。