Instituto de Bioingeniería, Universidad Miguel Hernández, Campus de Elche, 03202 Elche, Alicante, Spain.
Nucleic Acids Res. 2022 Jun 10;50(10):5513-5527. doi: 10.1093/nar/gkac338.
Efficient splicing requires a balance between high-fidelity splice-site (SS) selection and speed. In Saccharomyces cerevisiae, Pre-mRNA processing factor 8 (Prp8) helps to balance precise SS selection and rapid, efficient intron excision and exon joining. argonaute1-52 (ago1-52) and incurvata13 (icu13) are hypomorphic alleles of the Arabidopsis thaliana genes ARGONAUTE1 (AGO1) and AUXIN RESISTANT6 (AXR6) that harbor point mutations creating a novel 3'SS and 5'SS, respectively. The spliceosome recognizes these novel SSs, as well as the intact genuine SSs, producing a mixture of wild-type and aberrant mature mRNAs. Here, we characterized five novel mutant alleles of PRP8 (one of the two Arabidopsis co-orthologs of yeast Prp8), naming these alleles morphology of ago1-52 suppressed5 (mas5). In the mas5-1 background, the spliceosome preferentially recognizes the intact genuine 3'SS of ago1-52 and 5'SS of icu13. Since point mutations that damage genuine SSs make the spliceosome prone to recognizing cryptic SSs, we also tested alleles of four genes carrying damaged genuine SSs, finding that mas5-1 did not suppress their missplicing. The mas5-1 and mas5-3 mutations represent a novel class of missplicing suppressors that increase splicing fidelity by hampering the use of novel SSs, but do not alter general pre-mRNA splicing.
有效的剪接需要在高保真剪接位点 (SS) 选择和速度之间取得平衡。在酿酒酵母中,前体 mRNA 加工因子 8 (Prp8) 有助于平衡精确的 SS 选择和快速、有效的内含子切除和外显子连接。argonaute1-52 (ago1-52) 和 incurvata13 (icu13) 是拟南芥基因 ARGONAUTE1 (AGO1) 和 AUXIN RESISTANT6 (AXR6) 的功能缺失突变体等位基因,它们分别携带点突变,分别创建了一个新的 3'SS 和 5'SS。剪接体识别这些新的 SS 以及完整的真实 SS,产生野生型和异常成熟 mRNA 的混合物。在这里,我们表征了 PRP8 的五个新的突变体等位基因(酵母 Prp8 的两个拟南芥共直系同源物之一),将这些等位基因命名为 ago1-52 抑制 5 型 (mas5)。在 mas5-1 背景下,剪接体优先识别 ago1-52 的完整真实 3'SS 和 icu13 的 5'SS。由于破坏真实 SS 的点突变使剪接体易于识别隐蔽 SS,我们还测试了携带受损真实 SS 的四个基因的等位基因,发现 mas5-1 并没有抑制它们的错误剪接。mas5-1 和 mas5-3 突变代表了一类新的错配抑制因子,它们通过阻碍新 SS 的使用来提高剪接保真度,但不改变一般的前体 mRNA 剪接。