Steven Robert, Zhang Lijia, Culotti Joseph, Pawson Tony
Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario M5G 1X5, Canada.
Genes Dev. 2005 Sep 1;19(17):2016-29. doi: 10.1101/gad.1319905.
In both Caenorhabditis elegans and Drosophila, UNC-73/Trio functions in axon guidance by signaling through the Rac GTPase to regulate cytoskeletal rearrangements necessary for growth cone migrations. Here, we show that the complex C. elegans unc-73 gene encodes at least eight differentially expressed UNC-73 intracellular protein isoforms. Previously reported mutations affecting UNC-73 isoforms encoding the Rac-specific RhoGEF-1 domain cause uncoordinated movement, correlating with defects in axon guidance. Mutations in isoforms encoding the Rho-specific RhoGEF-2 domain, which we describe here, result in L1 stage larval lethality with no associated axon guidance defects. Isoform-specific rescue experiments reveal separate functions for the various RhoGEF-2-containing UNC-73 isoforms, which would not likely be discovered by conventional genetic screening. UNC-73 D1 and D2 appear to function redundantly in pharynx muscle to regulate the rate and strength of pharynx pumping, and in the HSN neurons and vulval muscles to control egg laying. Isoforms C1, C2, E, and F act redundantly within the nervous system to regulate the speed of locomotion. The multiple UNC-73 isoforms containing Rac- and Rho-specific RhoGEF domains therefore have distinct physiological functions. In addition to its previously identified role involving RhoGEF-1 in migrating cells and growth cones, our data indicate that UNC-73 signals through RhoGEF-2 to regulate pharynx and vulva musculature and to modulate synaptic neurotransmission.
在秀丽隐杆线虫和果蝇中,UNC-73/Trio通过Rac GTP酶信号传导来调控轴突导向,从而调节生长锥迁移所需的细胞骨架重排。在此,我们表明复杂的秀丽隐杆线虫unc-73基因编码至少八种差异表达的UNC-73细胞内蛋白异构体。先前报道的影响编码Rac特异性RhoGEF-1结构域的UNC-73异构体的突变会导致不协调运动,这与轴突导向缺陷相关。我们在此描述的编码Rho特异性RhoGEF-2结构域的异构体中的突变会导致L1期幼虫致死,且无相关轴突导向缺陷。异构体特异性拯救实验揭示了各种含RhoGEF-2的UNC-73异构体的不同功能,这是传统遗传筛选不太可能发现的。UNC-73 D1和D2似乎在咽肌中发挥冗余作用,以调节咽泵的速率和强度,并在HSN神经元和外阴肌肉中控制产卵。异构体C1、C2、E和F在神经系统内发挥冗余作用,以调节运动速度。因此,含有Rac和Rho特异性RhoGEF结构域的多种UNC-73异构体具有不同的生理功能。除了其先前确定的在迁移细胞和生长锥中涉及RhoGEF-1的作用外,我们的数据表明UNC-73通过RhoGEF-2信号传导来调节咽和外阴肌肉组织,并调节突触神经传递。