Chaouki Ahmad Sami, Salz Helen K
Department of Genetics, School of Medicine, Case Western Reserve University, Cleveland, Ohio, United States of America.
PLoS Genet. 2006 Dec 8;2(12):e178. doi: 10.1371/journal.pgen.0020178.
The sequence of the SPF45 protein is significantly conserved, yet functional studies have identified it as a splicing factor in animal cells and as a DNA-repair protein in plants. Using a combined genetic and biochemical approach to investigate this apparent functional discrepancy, we unify and validate both of these studies by demonstrating that the Drosophila melanogaster protein is bifunctional, with independent functions in DNA repair and splicing. We find that SPF45 associates with the U2 snRNP and that mutations that remove the C-terminal end of the protein disrupt this interaction. Although animals carrying this mutation are viable, they are nevertheless compromised in their ability to regulate Sex-lethal splicing, demonstrating that Sex-lethal is an important physiological target of SPF45. Furthermore, these mutant animals exhibit phenotypes diagnostic of difficulties in recovering from exogenously induced DNA damage. The conclusion that SPF45 functions in the DNA-repair pathway is strengthened by finding both genetic and physical interactions between SPF45 and RAD201, a previously uncharacterized member of the RecA/Rad51 protein family. Together with our finding that the fly SPF45 protein increases the survival rate of mutagen-treated bacteria lacking the RecG helicase, these studies provide the tantalizing suggestion that SPF45 has an ancient and evolutionarily conserved role in DNA repair.
SPF45蛋白的序列具有显著的保守性,但功能研究表明,它在动物细胞中是一种剪接因子,而在植物中是一种DNA修复蛋白。我们采用遗传学和生物化学相结合的方法来研究这一明显的功能差异,通过证明果蝇蛋白具有双功能,在DNA修复和剪接中具有独立功能,从而统一并验证了这两项研究。我们发现SPF45与U2 snRNP相关联,去除该蛋白C末端的突变会破坏这种相互作用。尽管携带这种突变的动物能够存活,但它们调节性致死剪接的能力却受到损害,这表明性致死是SPF45的一个重要生理靶点。此外,这些突变动物表现出从外源性诱导的DNA损伤中恢复困难的诊断性表型。通过发现SPF45与RAD201(RecA/Rad51蛋白家族中一个先前未被表征的成员)之间的遗传和物理相互作用,进一步强化了SPF45在DNA修复途径中发挥作用的结论。连同我们发现果蝇SPF45蛋白提高了缺乏RecG解旋酶的经诱变处理细菌的存活率,这些研究提供了一个诱人的线索,即SPF45在DNA修复中具有古老且进化上保守的作用。