Department of Chemistry, College of Arts and Sciences, The University of Alabama at Birmingham, Birmingham, Alabama, USA.
Department of Biomedical Engineering, The University of Alabama at Birmingham, Birmingham, Alabama, USA.
Protein Sci. 2023 May;32(5):e4643. doi: 10.1002/pro.4643.
Electronegative clusters (ENCs) made up of acidic residues and/or phosphorylation sites are the most abundant repetitive sequences in RNA-binding proteins. Previous studies have indicated that ENCs inhibit RNA binding for structured RNA-binding domains (RBDs). However, this is not the case for the unstructured RBD in histone pre-mRNA stem-loop binding protein (SLBP). The SLBP RBD contains 70 amino acids and is followed by a phosphorylatable ENC. ENC phosphorylation increases RNA-binding affinity of SLBP to the sub-picomolar range. In this study, we use NMR and molecular dynamics simulations to elucidate the mechanism for this tight binding. Our NMR data demonstrate that the ENC transiently folds apo SLBP into an RNA-bound resembling state. We find that in the RNA-bound state, the phosphorylated ENC interacts with the loop region opposite to the RNA-binding site. This allosteric interaction stabilizes the complex and therefore enhances RNA binding. To evaluate the generality of our findings, we graft an ENC onto endoribonuclease homolog 1's first double-stranded RNA-binding motif (DRBM1), an unstructured RBD that shares no homology with SLBP. We find that the engineered ENC increases the folded species of DRBM1 and inhibits RNA binding. On the contrary, introducing basic residues to DRBM1 makes the domain more unfolded, enhances RNA binding, and mitigates the inhibitory effect of the engineered ENC. In summary, our study suggests that ENCs promote folding of unstructured RNA-binding domains, and their effects on RNA binding depend on the electropositive charges on the RBD surface.
带负电的簇(ENCs)由酸性残基和/或磷酸化位点组成,是 RNA 结合蛋白中最丰富的重复序列。以前的研究表明,ENCs 抑制了结构 RNA 结合域(RBD)的 RNA 结合。然而,对于组蛋白前体 mRNA 发夹结合蛋白(SLBP)中的无结构 RBD 并非如此。SLBP RBD 包含 70 个氨基酸,其后是一个可磷酸化的 ENC。ENC 磷酸化增加了 SLBP 对亚皮摩尔范围 RNA 的结合亲和力。在这项研究中,我们使用 NMR 和分子动力学模拟来阐明这种紧密结合的机制。我们的 NMR 数据表明,ENC 瞬时将 apo SLBP 折叠成类似于 RNA 结合的状态。我们发现,在 RNA 结合状态下,磷酸化的 ENC 与 RNA 结合位点相反的环区相互作用。这种变构相互作用稳定了复合物,从而增强了 RNA 的结合。为了评估我们发现的普遍性,我们将 ENC 嫁接到内切核酸酶同源物 1 的第一个双链 RNA 结合基序(DRBM1)上,DRBM1 是一个与 SLBP 没有同源性的无结构 RBD。我们发现,工程 ENC 增加了 DRBM1 的折叠物种并抑制了 RNA 结合。相反,在 DRBM1 中引入碱性残基会使结构域更加展开,增强 RNA 结合,并减轻工程 ENC 的抑制作用。总之,我们的研究表明,ENCs 促进了无结构 RNA 结合结构域的折叠,其对 RNA 结合的影响取决于 RBD 表面的正电荷。