Das Gishnu, Reynolds-Kenneally Jessica, Mlodzik Marek
Department of Molecular, Cell and Developmental Biology, Mount Sinai School of Medicine, One Gustave L. Levy Place, New York, NY 10029, USA.
Dev Cell. 2002 May;2(5):655-66. doi: 10.1016/s1534-5807(02)00147-8.
Planar cell polarity is established in the Drosophila eye through distinct fate specification of photoreceptors R3 and R4 by a two-tiered mechanism employing Fz and Notch signaling: Fz signaling specifies R3 and induces Dl to activate Notch in R4. We show that the atypical cadherin Flamingo (Fmi) plays critical, but distinct, roles in both R3 and R4. Fmi is first enriched at equatorial cell borders of R3/R4, positively interacting with Fz/Dsh. Subsequently, Fmi is upregulated in R4 by Notch and functions to downregulate Dl expression by antagonizing Fz signaling. This in turn amplifies and enforces the initial Fz-signaling bias in the R3/R4 pair. Our results reveal differences in the planar cell polarity genetic circuitry between the eye and the wing.
平面细胞极性在果蝇眼睛中通过一种利用Fz和Notch信号传导的两层机制,对感光细胞R3和R4进行不同的命运指定来建立:Fz信号传导指定R3并诱导Dl激活R4中的Notch。我们表明,非典型钙黏蛋白火烈鸟(Fmi)在R3和R4中都发挥着关键但不同的作用。Fmi首先在R3/R4的赤道细胞边界富集,与Fz/Dsh正向相互作用。随后,Fmi在R4中被Notch上调,并通过拮抗Fz信号传导来下调Dl表达。这反过来又放大并强化了R3/R4对中最初的Fz信号偏向。我们的结果揭示了眼睛和翅膀之间平面细胞极性遗传回路的差异。