van Amerongen Renée, Berns Anton
Netherlands Cancer Institute, Division of Molecular Genetics and Centre of Biomedical Genetics, Amsterdam, The Netherlands.
Cell Cycle. 2005 Aug;4(8):1065-72. Epub 2005 Aug 1.
Frat proteins are potent activators of canonical Wnt-signal transduction. By binding to GSK3, Frat prevents the phosphorylation and concomitant degradation of beta-catenin and allows the activation of downstream target genes by beta-catenin/TCF complexes. The identification of the Xenopus Frat homologue GBP as an essential component of the maternal Wnt-pathway during embryonic axis formation suggested that Frat might fulfill a similar role in higher vertebrates. As a result most, if not all, studies addressing Frat function have focused on its ability to bind GSK3 and induce signaling through beta-catenin/TCF. Consequently, Frat has been advocated as the "missing link" that bridged signaling from Dishevelled to GSK3 in the canonical Wnt-pathway. Recent mouse-knockout studies however, call for a reevaluation of the physiological role of Frat. Mice that lack all Frat-family members appear to be normal and display no obvious defects in beta-catenin/TCF signaling. This observation reopens the question as to how GSK3 activity is controlled in vertebrate canonical Wnt-signal transduction in view of the apparent dispensability of Frat. Here we will review the studies that have been conducted on Frat proteins to date, with a specific focus on those that implicate a role for Frat in Wnt-signal transduction. In addition, we will discuss potential alternatives for the endogenous function of Frat.
Frat蛋白是经典Wnt信号转导的强效激活剂。通过与糖原合成酶激酶3(GSK3)结合,Frat可防止β-连环蛋白的磷酸化及随之而来的降解,并使β-连环蛋白/TCF复合物能够激活下游靶基因。非洲爪蟾的Frat同源物GBP被鉴定为胚胎轴形成过程中母体Wnt信号通路的重要组成部分,这表明Frat在高等脊椎动物中可能发挥类似作用。因此,大多数(如果不是全部的话)针对Frat功能的研究都集中在其与GSK3结合并通过β-连环蛋白/TCF诱导信号传导的能力上。因此,Frat被认为是经典Wnt信号通路中从散乱蛋白(Dishevelled)到GSK3信号传导的“缺失环节”。然而,最近的小鼠基因敲除研究要求重新评估Frat的生理作用。缺乏所有Frat家族成员的小鼠似乎是正常的,并且在β-连环蛋白/TCF信号传导方面没有明显缺陷。鉴于Frat明显可有可无,这一观察结果重新开启了关于在脊椎动物经典Wnt信号转导中GSK3活性如何被控制的问题。在这里,我们将回顾迄今为止对Frat蛋白进行的研究,特别关注那些表明Frat在Wnt信号转导中发挥作用的研究。此外,我们还将讨论Frat内源性功能的潜在替代机制。