Zhao J J, Lazzarini R A, Pick L
Brookdale Center for Molecular Biology, Mount Sinai School of Medicine, New York, NY 10029, USA.
EMBO J. 1996 Mar 15;15(6):1313-22.
The Hox genes are clustered in evolutionarily conserved complexes and encode DNA binding proteins that determine positional identity. Ubiquitous expression of fly or mammalian Hox proteins in Drosophila embryos provides an assay for gene function, since different Hox genes induce characteristic homeotic transformations. Drosophila Sex combs reduced (Scr) and its murine cognate Hox-a5 produce identical transformations in transgenic flies. To study the contributions of domains conserved between the two proteins, truncated versions of mouse Hox-a5 were assayed for their ability to activate transcription in cultured cells and to induce homeotic transformation and activate target gene expression in transgenic embryos. The homeodomain is essential for protein function and/or nuclear targeting; the N-terminal region contributes to transcription activity and transformation potential in the embryo, but plays no role in determining functional specificity. The YPWM motif is essential for biological specificity, although it does not contribute to transcriptional activation potential. It was recently shown that the Hox-a5 YPWM motif is necessary for in vitro interactions with the co-factor Pbx1. Our results suggest that this type of protein-protein interaction may be essential for the biological activities of Hox-a5 and Scr.
Hox基因簇集在进化上保守的复合体中,编码决定位置身份的DNA结合蛋白。由于不同的Hox基因会诱导特征性的同源异型转化,因此在果蝇胚胎中普遍表达果蝇或哺乳动物的Hox蛋白可用于基因功能分析。果蝇的性梳减少基因(Scr)及其小鼠同源基因Hox-a5在转基因果蝇中产生相同的转化。为了研究这两种蛋白质之间保守结构域的作用,检测了小鼠Hox-a5的截短版本在培养细胞中激活转录的能力,以及在转基因胚胎中诱导同源异型转化和激活靶基因表达的能力。同源异型结构域对于蛋白质功能和/或核靶向至关重要;N端区域对胚胎中的转录活性和转化潜能有贡献,但在确定功能特异性方面不起作用。YPWM基序对于生物学特异性至关重要,尽管它对转录激活潜能没有贡献。最近发现,Hox-a5的YPWM基序对于与辅因子Pbx1的体外相互作用是必需的。我们的结果表明,这种类型的蛋白质-蛋白质相互作用可能对Hox-a5和Scr的生物学活性至关重要。