Zhang Zhen, Sui Pengfei, Dong Aiwu, Hassell John, Cserjesi Peter, Chen You-Tzung, Behringer Richard R, Sun Xin
Laboratory of Genetics, University of Wisconsin-Madison, Madison, WI 53706, USA.
Development. 2010 Oct;137(20):3417-26. doi: 10.1242/dev.051789. Epub 2010 Sep 8.
Preaxial polydactyly (PPD) is a common limb-associated birth defect characterized by extra digit(s) in the anterior autopod. It often results from ectopic sonic hedgehog (Shh) expression in the anterior limb bud. Although several transcription factors are known to restrict Shh expression to the posterior limb bud, how they function together remains unclear. Here we provide evidence from mouse conditional knockout limb buds that the bHLH family transcription factor gene Twist1 is required to inhibit Shh expression in the anterior limb bud mesenchyme. More importantly, we uncovered genetic synergism between Twist1 and the ETS family transcription factor genes Etv4 and Etv5 (collectively Etv), which also inhibit Shh expression. Biochemical data suggest that this genetic interaction is a result of direct association between TWIST1 and ETV proteins. Previous studies have shown that TWIST1 functions by forming homodimers or heterodimers with other bHLH factors including HAND2, a key positive regulator of Shh expression. We found that the PPD phenotype observed in Etv mutants is suppressed by a mutation in Hand2, indicative of genetic antagonism. Furthermore, overexpression of ETV proteins influences the dimerization of these bHLH factors. Together, our data suggest that through biochemical interactions, the Shh expression regulators ETV, TWIST1 and HAND2 attain a precise balance to establish anterior-posterior patterning of the limb.
轴前多指(PPD)是一种常见的与肢体相关的出生缺陷,其特征是在手部前侧出现多指。它通常是由于前肢芽中异位的音猬因子(Shh)表达所致。尽管已知几种转录因子可将Shh表达限制在后肢芽中,但它们如何协同发挥作用仍不清楚。在这里,我们从小鼠条件性敲除肢体芽中获得证据,表明bHLH家族转录因子基因Twist1是抑制前肢芽间充质中Shh表达所必需的。更重要的是,我们发现了Twist1与ETS家族转录因子基因Etv4和Etv5(统称为Etv)之间的基因协同作用,它们也抑制Shh表达。生化数据表明,这种基因相互作用是TWIST1与ETV蛋白直接结合的结果。先前的研究表明,TWIST1通过与包括HAND2(Shh表达的关键正向调节因子)在内的其他bHLH因子形成同二聚体或异二聚体来发挥作用。我们发现,Etv突变体中观察到的PPD表型被Hand2中的突变所抑制,这表明存在基因拮抗作用。此外,ETV蛋白的过表达会影响这些bHLH因子的二聚化。总之,我们的数据表明,通过生化相互作用,Shh表达调节因子ETV、TWIST1和HAND2达到精确平衡,以建立肢体的前后模式。