Chu Tehyen, Chiu Michael, Zhang Elisa, Kunes Sam
Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
Dev Cell. 2006 May;10(5):635-46. doi: 10.1016/j.devcel.2006.03.003.
The developmental signal Hedgehog is distributed to two receptive fields by the photoreceptor neurons of the developing Drosophila retina. Delivery to the retina propagates ommatidial development across a precursor field. Transport along photoreceptor axons induces the development of postsynaptic neurons in the brain. Hedgehog is composed of N-terminal and C-terminal domains that dissociate in an autoproteolytic reaction that attaches cholesterol to the N-terminal cleavage product. Here, we show that the N-terminal domain is targeted to the retina when synthesized in the absence of the C-terminal domain. In contrast to studies that have focused on cholesterol as a determinant of subcellular localization, we find that the C-terminal domain harbors a conserved motif that overrides retinal localization, sending most of the autocleavage products into vesicles bound for growth cones or synapses. Competition between targeting signals at the opposite ends of Hedgehog apparently controls the match between eye and brain development.
发育信号刺猬蛋白(Hedgehog)由发育中的果蝇视网膜的光感受器神经元分布到两个感受野。传递至视网膜会在前体区域传播小眼发育。沿光感受器轴突的运输诱导大脑中突触后神经元的发育。刺猬蛋白由N端和C端结构域组成,它们在一种将胆固醇连接到N端切割产物的自催化反应中解离。在此,我们表明在没有C端结构域的情况下合成时,N端结构域会靶向视网膜。与专注于胆固醇作为亚细胞定位决定因素的研究不同,我们发现C端结构域含有一个保守基序,该基序会覆盖视网膜定位,将大多数自切割产物送入前往生长锥或突触的囊泡中。刺猬蛋白两端靶向信号之间的竞争显然控制着眼睛和大脑发育之间的匹配。