Jukam David, Viets Kayla, Anderson Caitlin, Zhou Cyrus, DeFord Peter, Yan Jenny, Cao Jinshuai, Johnston Robert J
Center for Developmental Genetics, Department of Biology, New York University, 100 Washington Square East, New York, NY 10003-6688, USA.
Department of Biology, Johns Hopkins University, 3400 N. Charles Street, Baltimore, MD 21218-2685, USA.
Development. 2016 Jul 1;143(13):2389-97. doi: 10.1242/dev.134700. Epub 2016 May 25.
The Hippo pathway is crucial for not only normal growth and apoptosis but also cell fate specification during development. What controls Hippo pathway activity during cell fate specification is incompletely understood. In this article, we identify the insulator protein BEAF-32 as a regulator of Hippo pathway activity in Drosophila photoreceptor differentiation. Though morphologically uniform, the fly eye is composed of two subtypes of R8 photoreceptor neurons defined by expression of light-detecting Rhodopsin proteins. In one R8 subtype, active Hippo signaling induces Rhodopsin 6 (Rh6) and represses Rhodopsin 5 (Rh5), whereas in the other subtype, inactive Hippo signaling induces Rh5 and represses Rh6. The activity state of the Hippo pathway in R8 cells is determined by the expression of warts, a core pathway kinase, which interacts with the growth regulator melted in a double-negative feedback loop. We show that BEAF-32 is required for expression of warts and repression of melted Furthermore, BEAF-32 plays a second role downstream of Warts to induce Rh6 and prevent Rh5 fate. BEAF-32 is dispensable for Warts feedback, indicating that BEAF-32 differentially regulates warts and Rhodopsins. Loss of BEAF-32 does not noticeably impair the functions of the Hippo pathway in eye growth regulation. Our study identifies a context-specific regulator of Hippo pathway activity in post-mitotic neuronal fate, and reveals a developmentally specific role for a broadly expressed insulator protein.
河马通路不仅对正常生长和细胞凋亡至关重要,而且在发育过程中对细胞命运的决定也起着关键作用。目前,人们对细胞命运决定过程中控制河马通路活性的因素还不完全清楚。在本文中,我们确定了绝缘子蛋白BEAF-32是果蝇光感受器分化过程中河马通路活性的调节因子。果蝇的眼睛虽然在形态上是均匀的,但由两种亚型的R8光感受器神经元组成,这两种亚型由光检测视紫红质蛋白的表达来定义。在一种R8亚型中,活跃的河马信号诱导视紫红质6(Rh6)并抑制视紫红质5(Rh5),而在另一种亚型中,不活跃的河马信号诱导Rh5并抑制Rh6。R8细胞中河马通路的活性状态由核心通路激酶warts的表达决定,warts与生长调节因子melted在一个双负反馈回路中相互作用。我们发现BEAF-32是warts表达和melted抑制所必需的。此外,BEAF-32在Warts的下游发挥第二个作用,诱导Rh6并阻止Rh5命运的发生。BEAF-32对于Warts反馈是可有可无的,这表明BEAF-32以不同的方式调节warts和视紫红质。BEAF-32的缺失并不会明显损害河马通路在眼睛生长调节中的功能。我们的研究确定了有丝分裂后神经元命运中河马通路活性的一个特定背景调节因子,并揭示了一种广泛表达的绝缘子蛋白在发育过程中的特定作用。