Gozani O, Feld R, Reed R
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Genes Dev. 1996 Jan 15;10(2):233-43. doi: 10.1101/gad.10.2.233.
A critical step in the pre-mRNA splicing reaction is the stable binding of U2 snRNP to the branchpoint sequence (BPS) to form the A complex. The multimeric U2 snRNP protein complexes SF3a and SF3b are required for A complex assembly, but their specific roles in this process are not known. Saccharomyces cerevisiae homologs of all of the SF3a, but none of the SF3b, subunits have been identified. Here we report the isolation of a cDNA encoding the mammalian SF3b subunit SAP 145 and the identification of its probable yeast homolog (29% identity). This first indication that the homology between yeast and metazoan A complex proteins can be extended to SF3b adds strong new evidence that the mechanism of A complex assembly is highly conserved. To investigate this mechanism in the mammalian system we analyzed proteins that cross-link to 32P-site-specifically labeled pre-mRNA in the A complex. This analysis revealed that SAP 145, together with four other SF3a/SF3b subunits, UV cross-links to pre-mRNA in a 20-nucleotide region upstream of the BPS. Mutation of this region, which we have designated the anchoring site, has no apparent effect on U2 snRNP binding. In contrast, when a 2'O methyl oligonucleotide complementary to the anchoring site is added to the spliceosome assembly reaction, A complex assembly and cross-linking of the SF3a/SF3b subunits are blocked. These data indicate that sequence-independent binding of the highly conserved SF3a/SF3b subunits upstream of the branch site is essential for anchoring U2 snRNP to pre-mRNA.
前体mRNA剪接反应中的一个关键步骤是U2 snRNP与分支点序列(BPS)稳定结合以形成A复合物。多聚体U2 snRNP蛋白复合物SF3a和SF3b是A复合物组装所必需的,但它们在这一过程中的具体作用尚不清楚。已鉴定出所有SF3a亚基的酿酒酵母同源物,但未鉴定出任何SF3b亚基的同源物。在此,我们报告了编码哺乳动物SF3b亚基SAP 145的cDNA的分离及其可能的酵母同源物的鉴定(同源性为29%)。酵母与后生动物A复合物蛋白之间的同源性可扩展至SF3b,这一首次发现为A复合物组装机制高度保守增添了强有力的新证据。为了在哺乳动物系统中研究这一机制,我们分析了在A复合物中与32P位点特异性标记的前体mRNA交联的蛋白质。该分析表明,SAP 145与其他四个SF3a/SF3b亚基一起,在BPS上游20个核苷酸区域与前体mRNA发生紫外线交联。我们将该区域命名为锚定位点,该位点的突变对U2 snRNP结合没有明显影响。相反,当将与锚定位点互补的2'O甲基寡核苷酸添加到剪接体组装反应中时,A复合物组装以及SF3a/SF3b亚基的交联被阻断。这些数据表明,分支位点上游高度保守的SF3a/SF3b亚基的序列非依赖性结合对于将U2 snRNP锚定到前体mRNA至关重要。