Strapps W R, Tomlinson A
Department of Genetics and Development, Center for Neurobiology and Behavior, College of Physicians and Surgeons, Columbia University, 701 West 168 Street, Room 602, New York, NY 10032, USA.
Development. 2001 Dec;128(23):4829-35. doi: 10.1242/dev.128.23.4829.
In Drosophila, two closely related serpentine receptors, Frizzled (Fz) and D-Frizzled2 (Fz2) are able to act as receptors for the secreted Wnt peptide, Wingless (Wg). In addition to transducing the Wg signal, Fz (but not Fz2) is able to transduce a second, unidentified signal that mediates planar polarity. Much attention has been focused on the structure of the N-termini of the Fz-class receptors and their role in ligand binding. Experiments using techniques of high-level expression have suggested a role for the C-termini in specifying which of the two second messenger systems the receptors are able to activate (M. Boutros, J. Mihaly, T. Bouwmeeste and M. Mlodzik (2000). Science 288, 1825-1828). We argue here that experiments involving high level expression of the receptors cannot be adequately interpreted and we have tested the ability of the receptors and chimeric forms when driven at moderate levels to rescue loss of function of the fz and fz2 genes. Under these conditions we find that all receptors tested will function as Wg receptors, but only a subset show the ability to rescue the polarity pathway. The presence of this subset implies that the N terminus is necessary but not sufficient and suggests that the ability to transduce the polarity signal is widely distributed throughout the protein.
在果蝇中,两种密切相关的蛇形受体,卷曲蛋白(Fz)和D-卷曲蛋白2(Fz2)能够作为分泌型Wnt肽无翅型(Wg)的受体。除了转导Wg信号外,Fz(而非Fz2)还能够转导另一种未明确的信号,该信号介导平面极性。许多注意力都集中在Fz类受体N端的结构及其在配体结合中的作用上。利用高水平表达技术进行的实验表明,C端在确定受体能够激活的两种第二信使系统中的哪一种方面发挥作用(M. 布特罗斯、J. 米哈利、T. 布乌梅斯特和M. 姆洛齐克(2000年)。《科学》288卷,1825 - 1828页)。我们在此认为,涉及受体高水平表达的实验无法得到充分解释,并且我们已经测试了在中等水平驱动时受体及其嵌合形式拯救fz和fz2基因功能丧失的能力。在这些条件下,我们发现所有测试的受体都能作为Wg受体发挥作用,但只有一部分显示出拯救极性途径的能力。这一部分的存在意味着N端是必要的但不是充分的,并表明转导极性信号的能力广泛分布于整个蛋白质中。