Department of Biochemistry, Indian Institute of Science, Bangalore, 560012, India.
Nat Commun. 2022 Apr 19;13(1):2077. doi: 10.1038/s41467-022-29715-5.
P-bodies are conserved mRNP complexes that are implicated in determining mRNA fate by affecting translation and mRNA decay. In this report, we identify RGG-motif containing translation repressor protein Sbp1 as a disassembly factor of P-bodies since disassembly of P-bodies is defective in Δsbp1. RGG-motif is necessary and sufficient to rescue the PB disassembly defect in Δsbp1. Binding studies using purified proteins revealed that Sbp1 physically interacts with Edc3 and Sbp1-Edc3 interaction competes with Edc3-Edc3 interaction. Purified Edc3 forms assemblies, promoted by the presence of RNA and NADH and the addition of purified Sbp1, but not the RGG-deletion mutant, leads to significantly decreased Edc3 assemblies. We further note that the aggregates of human EWSR1 protein, implicated in neurodegeneration, are more persistent in the absence of Sbp1 and overexpression of EWSR1 in Δsbp1 leads to a growth defect. Taken together, our observations suggest a role of Sbp1 in disassembly, which could apply to disease-relevant heterologous protein-aggregates.
P 体是保守的 mRNP 复合物,通过影响翻译和 mRNA 降解来决定 mRNA 的命运。在本报告中,我们确定富含 RGG 基序的翻译抑制蛋白 Sbp1 是 P 体的解体因子,因为 P 体的解体在 Δsbp1 中存在缺陷。RGG 基序是拯救 Δsbp1 中 PB 解体缺陷所必需和充分的。使用纯化蛋白进行的结合研究表明,Sbp1 与 Edc3 发生物理相互作用,并且 Sbp1-Edc3 相互作用与 Edc3-Edc3 相互作用竞争。在存在 RNA 和 NADH 的情况下,纯化的 Edc3 形成组装体,并且添加纯化的 Sbp1,但不是 RGG 缺失突变体,导致 Edc3 组装体显著减少。我们进一步注意到,与神经退行性变有关的人类 EWSR1 蛋白的聚集体在缺乏 Sbp1 的情况下更持久,并且在 Δsbp1 中过表达 EWSR1 会导致生长缺陷。总之,我们的观察结果表明 Sbp1 在解体中的作用,这可能适用于与疾病相关的异源蛋白聚集体。