Peng X, Mount S M
Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Mol Cell Biol. 1995 Nov;15(11):6273-82. doi: 10.1128/MCB.15.11.6273.
SR proteins are essential for pre-mRNA splicing in vitro, act early in the splicing pathway, and can influence alternative splice site choice. Here we describe the isolation of both dominant and loss-of-function alleles of B52, the gene for a Drosophila SR protein. The allele B52ED was identified as a dominant second-site enhancer of white-apricot (wa), a retrotransposon insertion in the second intron of the eye pigmentation gene white with a complex RNA-processing defect. B52ED also exaggerates the mutant phenotype of a distinct white allele carrying a 5' splice site mutation (wDR18), and alters the pattern of sex-specific splicing at doublesex under sensitized conditions, so that the male-specific splice is favored. In addition to being a dominant enhancer of these RNA-processing defects, B52ED is a recessive lethal allele that fails to complement other lethal alleles of B52. Comparison of B52ED with the B52+ allele from which it was derived revealed a single change in a conserved amino acid in the beta 4 strand of the first RNA-binding domain of B52, which suggests that altered RNA binding is responsible for the dominant phenotype. Reversion of the B52ED dominant allele with X rays led to the isolation of a B52 null allele. Together, these results indicate a critical role for the SR protein B52 in pre-mRNA splicing in vivo.
SR蛋白对于体外前体mRNA剪接至关重要,在剪接途径中起早期作用,并可影响可变剪接位点的选择。在此,我们描述了果蝇SR蛋白基因B52的显性和功能丧失等位基因的分离。等位基因B52ED被鉴定为白杏色(wa)的显性第二位点增强子,白杏色是一种逆转座子插入眼色素沉着基因white的第二个内含子中,具有复杂的RNA加工缺陷。B52ED还会夸大携带5'剪接位点突变的另一个white等位基因(wDR18)的突变表型,并在敏感条件下改变双性基因处性别特异性剪接的模式,从而使雄性特异性剪接占优势。除了是这些RNA加工缺陷的显性增强子外,B52ED还是一个隐性致死等位基因,不能与B52的其他致死等位基因互补。将B52ED与其衍生的B52 +等位基因进行比较,发现B52第一个RNA结合结构域的β4链中一个保守氨基酸发生了单一变化,这表明RNA结合改变是导致显性表型的原因。用X射线使B52ED显性等位基因回复突变,导致分离出一个B52无效等位基因。总之,这些结果表明SR蛋白B52在体内前体mRNA剪接中起关键作用。