Corty Megan M, Tam Justina, Grueber Wesley B
Department of Neuroscience, Columbia University Medical Center, 630 W. 168th St. P&S 12-403, New York, NY 10032, USA Department of Physiology and Cellular Biophysics, Columbia University Medical Center, 630 W. 168th St. P&S 12-403, New York, NY 10032, USA.
Department of Physiology and Cellular Biophysics, Columbia University Medical Center, 630 W. 168th St. P&S 12-403, New York, NY 10032, USA.
Development. 2016 Apr 15;143(8):1351-62. doi: 10.1242/dev.130906.
Neurons display a striking degree of functional and morphological diversity, and the developmental mechanisms that underlie diversification are of significant interest for understanding neural circuit assembly and function. We find that the morphology of Drosophila sensory neurons is diversified through a series of suppressive transcriptional interactions involving the POU domain transcription factors Pdm1 (Nubbin) and Pdm2, the homeodomain transcription factor Cut, and the transcriptional regulators Scalloped and Vestigial. Pdm1 and Pdm2 are expressed in a subset of proprioceptive sensory neurons and function to inhibit dendrite growth and branching. A subset of touch receptors show a capacity to express Pdm1/2, but Cut represses this expression and promotes more complex dendritic arbors. Levels of Cut expression are diversified in distinct sensory neurons by selective expression of Scalloped and Vestigial. Different levels of Cut impact dendritic complexity and, consistent with this, we show that Scalloped and Vestigial suppress terminal dendritic branching. This transcriptional hierarchy therefore acts to suppress alternative morphologies to diversify three distinct types of somatosensory neurons.
神经元表现出显著程度的功能和形态多样性,而构成这种多样性基础的发育机制对于理解神经回路的组装和功能具有重要意义。我们发现,果蝇感觉神经元的形态通过一系列抑制性转录相互作用得以多样化,这些相互作用涉及POU结构域转录因子Pdm1(Nubbin)和Pdm2、同源结构域转录因子Cut以及转录调节因子Scalloped和Vestigial。Pdm1和Pdm2在一部分本体感觉神经元中表达,其功能是抑制树突的生长和分支。一部分触觉感受器具有表达Pdm1/2的能力,但Cut会抑制这种表达并促进更复杂的树突分支。通过Scalloped和Vestigial的选择性表达,Cut在不同的感觉神经元中的表达水平呈现多样化。不同水平的Cut影响树突复杂性,与此一致的是,我们发现Scalloped和Vestigial会抑制树突末端分支。因此,这种转录层级作用于抑制其他形态,以使三种不同类型的躯体感觉神经元多样化。