Chandry P S, Belfort M
Wadsworth Center for Laboratories and Research, New York State Department of Health, Albany 12201.
Genes Dev. 1987 Nov;1(9):1028-37. doi: 10.1101/gad.1.9.1028.
A collection of 100 td mutants defective in phage T4 thymidylate synthase (TS) production was screened for splicing impairments. Splicing-defective mutants were identified by a rapid assay developed to detect imbalances in the td protein products (TS, the exon ligation product, and NH2TS, encoded by the pre-mRNA). Thirteen selected mutants, confirmed to be splicing defective by an RNA-oligodeoxynucleotide hybridization assay, were all shown to be inhibited in the first step of the group I splicing pathway, cleavage at the 5' splice site. Of these, only one, SC99, appeared to be a specificity mutant. Whereas the 12 other mutants had sequence changes within the functionally important 5' and 3' domains of the intron, SC99 was shown to be an exon mutant. The G----A change at residue -3 of the upstream exon of SC99 resulted in loss of normal 5' splice site recognition. Furthermore, activation of a remote cryptic splice site at residue -29 of the upstream exon and missplicing of mRNA that is deleted for 29 nucleotides of the 5' exon are characteristic for this mutant. These results underscore the role of exon sequences in guiding the fidelity of the splicing reaction and they raise provocative questions about the alignment of introns within exon contexts that are consistent with accurate splicing and synthesis of an intact gene product.
筛选了100个在噬菌体T4胸苷酸合成酶(TS)产生方面存在缺陷的td突变体,以检测其剪接缺陷。通过一种快速检测方法鉴定剪接缺陷突变体,该方法用于检测td蛋白产物(TS、外显子连接产物和由前体mRNA编码的NH2TS)的失衡情况。通过RNA - 寡脱氧核苷酸杂交分析确认的13个选定突变体,均显示在I组剪接途径的第一步,即5'剪接位点的切割受到抑制。其中,只有一个突变体SC99似乎是一个特异性突变体。其他12个突变体在内含子功能重要的5'和3'结构域内有序列变化,而SC99被证明是一个外显子突变体。SC99上游外显子第 - 3位残基处的G→A变化导致正常5'剪接位点识别丧失。此外,上游外显子第 - 29位残基处一个遥远的隐蔽剪接位点的激活以及5'外显子缺失29个核苷酸的mRNA错配剪接是该突变体的特征。这些结果强调了外显子序列在指导剪接反应保真度方面的作用,并且它们引发了关于外显子环境中内含子排列的一些引人深思的问题,这些问题与完整基因产物的准确剪接和合成是一致的。