Fanto M, Weber U, Strutt D I, Mlodzik M
EMBL, Developmental Biology Programme, Heidelberg, Germany.
Curr Biol. 2000 Aug 24;10(16):979-88. doi: 10.1016/s0960-9822(00)00645-x.
The small GTPases Rac and Rho act as cellular switches in many important biological processes. In the fruit fly Drosophila, RhoA participates in the establishment of planar polarity, a process mediated by the receptor Frizzled (Fz). Thus far, analysis of Rac in this process has not been possible because of the absence of mutant Rac alleles. Here, we have investigated the role of Rac and Rho in establishing the polarity of ommatidia in the Drosophila eye.
By expressing a dominant negative or a constitutively activated form of Rac1, we interfered specifically with Rac signaling and disrupted ommatidial polarity. The resulting defects were similar to the loss/gain-of-function phenotypes typical of tissue-polarity genes. Through genetic interaction and rescue experiments involving a polarity-specific, loss-of-function dishevelled (dsh) allele, we found that Rac1 acts downstream of Dsh in the Fz signaling pathway, but upstream of, or in parallel to, RhoA. Rac signaled to the nucleus through the Jun N-terminal kinase (JNK) cascade in this process. By generating point mutations in the effector loop of RhoA, we found that RhoA also signals to the nucleus during the establishment of ommatidial polarity. Nevertheless, Rac and RhoA activated transcription of distinct target genes.
Rac is specifically required downstream of Dsh in the Fz pathway. It functions upstream or in parallel to RhoA and both signal to the nucleus, through distinct effectors, to establish planar polarity in the Drosophila eye.
小GTP酶Rac和Rho在许多重要的生物学过程中充当细胞开关。在果蝇中,RhoA参与平面极性的建立,这一过程由受体卷曲蛋白(Fz)介导。迄今为止,由于缺乏Rac突变等位基因,无法对这一过程中的Rac进行分析。在此,我们研究了Rac和Rho在果蝇眼睛小眼极性建立中的作用。
通过表达显性负性或组成型激活形式的Rac1,我们特异性地干扰了Rac信号传导并破坏了小眼极性。由此产生的缺陷类似于组织极性基因典型的功能丧失/功能获得表型。通过涉及极性特异性、功能丧失的散乱(dsh)等位基因的遗传相互作用和拯救实验,我们发现Rac1在Fz信号通路中作用于Dsh的下游,但在RhoA的上游或与之平行。在此过程中,Rac通过Jun N端激酶(JNK)级联向细胞核发出信号。通过在RhoA的效应环中产生点突变,我们发现RhoA在小眼极性建立过程中也向细胞核发出信号。然而,Rac和RhoA激活不同靶基因的转录。
Rac在Fz通路中Dsh的下游是特异性必需的。它在RhoA的上游或与之平行发挥作用,二者都通过不同的效应器向细胞核发出信号,以在果蝇眼睛中建立平面极性。