Department of Microbiology and Molecular Medicine, CMU, Faculty of Medicine, University of Geneva, Geneva, Switzerland.
Nucleic Acids Res. 2024 Jul 22;52(13):7809-7824. doi: 10.1093/nar/gkae511.
RNA helicases-central enzymes in RNA metabolism-often feature intrinsically disordered regions (IDRs) that enable phase separation and complex molecular interactions. In the bacterial pathogen Pseudomonas aeruginosa, the non-redundant RhlE1 and RhlE2 RNA helicases share a conserved REC catalytic core but differ in C-terminal IDRs. Here, we show how the IDR diversity defines RhlE RNA helicase specificity of function. Both IDRs facilitate RNA binding and phase separation, localizing proteins in cytoplasmic clusters. However, RhlE2 IDR is more efficient in enhancing REC core RNA unwinding, exhibits a greater tendency for phase separation, and interacts with the RNase E endonuclease, a crucial player in mRNA degradation. Swapping IDRs results in chimeric proteins that are biochemically active but functionally distinct as compared to their native counterparts. The RECRhlE1-IDRRhlE2 chimera improves cold growth of a rhlE1 mutant, gains interaction with RNase E and affects a subset of both RhlE1 and RhlE2 RNA targets. The RECRhlE2-IDRRhlE1 chimera instead hampers bacterial growth at low temperatures in the absence of RhlE1, with its detrimental effect linked to aberrant RNA droplets. By showing that IDRs modulate both protein core activities and subcellular localization, our study defines the impact of IDR diversity on the functional differentiation of RNA helicases.
RNA 解旋酶——RNA 代谢中的核心酶——通常具有内在无序区域(IDR),使相分离和复杂的分子相互作用成为可能。在细菌病原体铜绿假单胞菌中,非冗余的 RhlE1 和 RhlE2 RNA 解旋酶具有保守的 REC 催化核心,但 C 末端 IDR 不同。在这里,我们展示了 IDR 多样性如何定义 RhlE RNA 解旋酶的功能特异性。这两个 IDR 都促进 RNA 结合和相分离,使蛋白质定位于细胞质簇中。然而,RhlE2 IDR 在增强 REC 核心 RNA 解旋方面更有效,表现出更大的相分离趋势,并与 RNase E 内切核酸酶相互作用,后者是 mRNA 降解中的关键酶。交换 IDR 会导致嵌合蛋白具有生物化学活性,但与天然蛋白相比功能不同。RECRhlE1-IDRRhlE2 嵌合体改善了 rhlE1 突变体的冷生长,增强了与 RNase E 的相互作用,并影响了 RhlE1 和 RhlE2 RNA 靶标的一部分。相反,RECRhlE2-IDRRhlE1 嵌合体在没有 RhlE1 的情况下阻碍了细菌在低温下的生长,其有害影响与异常 RNA 液滴有关。通过表明 IDR 调节蛋白质核心活性和亚细胞定位,我们的研究定义了 IDR 多样性对 RNA 解旋酶功能分化的影响。