Rimini R, Pontiggia A, Spada F, Ferrari S, Harley V R, Goodfellow P N, Bianchi M E
DIBIT, San Raffaele Scientific Institute, Milano, Italy.
Philos Trans R Soc Lond B Biol Sci. 1995 Nov 29;350(1333):215-20. doi: 10.1098/rstb.1995.0154.
In mammals, sex determination is caused by the Y-chromosome gene SRY. The DNA-binding domain of human SRY protein is similar to those of the chromatin protein HMG1. Like HMG1, SRY binds to kinked DNA structures, and bends linear DNA sharply upon binding. We analysed the biochemical properties of mutant SRY proteins from five patients with complete gonadal dysgenesis: two bind and bend DNA almost normally, two bind inefficiently but bend DNA normally, and one binds DNA with almost normal affinity but produces a different angle. The mutations with moderate effect on complex formation can be transmitted to progeny, the ones with severe effects on either binding or bending are de novo. The angle induced by SRY depends on the exact DNA sequence, thus discriminating different target sites. We suggest that the exact spatial arrangement of the nucleoprotein complex organized by SRY in chromatin is essential for the expression of genes involved in testis differentiation.
在哺乳动物中,性别决定由Y染色体基因SRY引起。人类SRY蛋白的DNA结合结构域与染色质蛋白HMG1的相似。与HMG1一样,SRY与扭结的DNA结构结合,并在结合时使线性DNA急剧弯曲。我们分析了5例完全性性腺发育不全患者的突变SRY蛋白的生化特性:2例结合并弯曲DNA的能力几乎正常,2例结合效率低但弯曲DNA正常,1例以几乎正常的亲和力结合DNA但产生不同的角度。对复合物形成有中等影响的突变可遗传给后代,对结合或弯曲有严重影响的突变则是新发的。SRY诱导的角度取决于确切的DNA序列,从而区分不同的靶位点。我们认为,SRY在染色质中组织的核蛋白复合物的确切空间排列对于参与睾丸分化的基因的表达至关重要。