Webb Christopher J, Wise Jo Ann
Department of Molecular Biology and Microbiology, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44106-4960, USA.
Mol Cell Biol. 2004 May;24(10):4229-40. doi: 10.1128/MCB.24.10.4229-4240.2004.
The small subunit of U2AF, which functions in 3' splice site recognition, is more highly conserved than its heterodimeric partner yet is less thoroughly investigated. Remarkably, we find that the small subunit of Schizosaccharomyces pombe U2AF (U2AF(SM)) can be replaced in vivo by its human counterpart, demonstrating that the conservation extends to function. Precursor mRNAs accumulate in S. pombe following U2AF(SM) depletion in a time frame consistent with a role in splicing. A comprehensive mutational analysis reveals that all three conserved domains are required for viability. Notably, however, a tryptophan in the pseudo-RNA recognition motif implicated in a key contact with the large subunit by crystallographic data is dispensable whereas amino acids implicated in RNA recognition are critical. Mutagenesis of the two zinc-binding domains demonstrates that they are neither equivalent nor redundant. Finally, two- and three-hybrid analyses indicate that mutations with effects on large-subunit interactions are rare whereas virtually all alleles tested diminished RNA binding by the heterodimer. In addition to demonstrating extraordinary conservation of U2AF small-subunit function, these results provide new insights into the roles of individual domains and residues.
U2AF的小亚基在3'剪接位点识别中发挥作用,其保守性高于其异二聚体伙伴,但研究不够深入。值得注意的是,我们发现粟酒裂殖酵母U2AF的小亚基(U2AF(SM))在体内可被其人类对应物替代,这表明这种保守性延伸到了功能上。在U2AF(SM)缺失后,前体mRNA在粟酒裂殖酵母中积累,其时间框架与剪接中的作用一致。全面的突变分析表明,所有三个保守结构域都是生存能力所必需的。然而,值得注意的是,晶体学数据表明与大亚基有关键接触的假RNA识别基序中的一个色氨酸是可有可无的,而与RNA识别有关的氨基酸是至关重要的。对两个锌结合结构域的诱变表明它们既不等同也不是冗余的。最后,双杂交和三杂交分析表明,影响大亚基相互作用的突变很少见,而几乎所有测试的等位基因都降低了异二聚体与RNA的结合。除了证明U2AF小亚基功能具有非凡的保守性外,这些结果还为各个结构域和残基的作用提供了新的见解。