Department of Chemistry, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Department of Medicine, Division of Hematology/Oncology, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Protein Sci. 2024 Aug;33(8):e5117. doi: 10.1002/pro.5117.
In eukaryotes, pre-mRNA splicing is vital for RNA processing and orchestrated by the spliceosome, whose assembly starts with the interaction between U1-70K and SR proteins. Despite the significance of the U1-70K/SR interaction, the dynamic nature of the complex and the challenges in obtaining soluble U1-70K have impeded a comprehensive understanding of the interaction at the structural level for decades. We overcome the U1-70K solubility issues, enabling us to characterize the interaction between U1-70K and SRSF1, a representative SR protein. We unveil specific interactions: phosphorylated SRSF1 RS with U1-70K BAD1, and SRSF1 RRM1 with U1-70K RRM. The RS/BAD1 interaction plays a dominant role, whereas the interaction between the RRM domains further enhances the stability of the U1-70K/SRSF1 complex. The RRM interaction involves the C-terminal extension of U1-70K RRM and the conserved acid patches on SRSF1 RRM1 that is involved in SRSF1 phase separation. Our circular dichroism spectra reveal that BAD1 adapts an α-helical conformation and RS is intrinsically disordered. Intriguingly, BAD1 undergoes a conformation switch from α-helix to β-strand and random coil upon RS binding. In addition to the regulatory mechanism via SRSF1 phosphorylation, the U1-70K/SRSF1 interaction is also regulated by U1-70K BAD1 phosphorylation. We find that U1-70K phosphorylation inhibits the U1-70K and SRSF1 interaction. Our structural findings are validated through in vitro splicing assays and in-cell saturated domain scanning using the CRISPR method, providing new insights into the intricate regulatory mechanisms of pre-mRNA splicing.
在真核生物中,前体 mRNA 剪接对于 RNA 加工至关重要,由剪接体(spliceosome)协调,其组装始于 U1-70K 与 SR 蛋白之间的相互作用。尽管 U1-70K/SR 相互作用意义重大,但复合物的动态性质以及获得可溶性 U1-70K 的挑战,使得人们几十年来一直无法在结构水平上全面了解这种相互作用。我们克服了 U1-70K 的可溶性问题,使我们能够描述 U1-70K 与 SR 蛋白代表 SRSF1 之间的相互作用。我们揭示了特定的相互作用:磷酸化的 SRSF1 RS 与 U1-70K 的 BAD1,以及 SRSF1 的 RRM1 与 U1-70K 的 RRM。RS/BAD1 相互作用起主导作用,而 RRM 结构域之间的相互作用进一步增强了 U1-70K/SRSF1 复合物的稳定性。RRM 相互作用涉及 U1-70K RRM 的 C 末端延伸和 SRSF1 RRM1 上的保守酸性斑块,该斑块参与 SRSF1 的相分离。我们的圆二色光谱表明,BAD1 适应 α-螺旋构象,而 RS 则是固有无序的。有趣的是,BAD1 在与 RS 结合后会发生从 α-螺旋到 β-链和无规卷曲的构象转变。除了通过 SRSF1 磷酸化的调节机制外,U1-70K/SRSF1 相互作用还受 U1-70K BAD1 磷酸化的调节。我们发现 U1-70K 磷酸化抑制了 U1-70K 和 SRSF1 的相互作用。我们的结构发现通过体外剪接测定和使用 CRISPR 方法的细胞内饱和域扫描得到了验证,为前体 mRNA 剪接的复杂调控机制提供了新的见解。