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Tob2 磷酸化调节全局 mRNA 周转以重塑转录组并影响细胞增殖。

Tob2 phosphorylation regulates global mRNA turnover to reshape transcriptome and impact cell proliferation.

机构信息

Department of Biochemistry and Molecular Biology, McGovern Medical School, The University of Texas Health Science Center at Houston, Houston, Texas 77030, USA.

出版信息

RNA. 2020 Sep;26(9):1143-1159. doi: 10.1261/rna.073528.119. Epub 2020 May 13.

Abstract

Tob2, an anti-proliferative protein, promotes deadenylation through recruiting Caf1 deadenylase to the mRNA poly(A) tail by simultaneously interacting with both Caf1 and poly(A)-binding protein (PABP). Previously, we found that changes in Tob2 phosphorylation can alter its PABP-binding ability and deadenylation-promoting function. However, it remained unknown regarding the relevant kinase(s). Moreover, it was unclear whether Tob2 phosphorylation modulates the transcriptome and whether the phosphorylation is linked to Tob2's anti-proliferative function. In this study, we found that c-Jun amino-terminal kinase (JNK) increases phosphorylation of Tob2 at many Ser/Thr sites in the intrinsically disordered region (IDR) that contains two separate PABP-interacting PAM2 motifs. JNK-induced phosphorylation or phosphomimetic mutations at these sites weaken the Tob2-PABP interaction. In contrast, JNK-independent phosphorylation of Tob2 at serine 254 (S254) greatly enhances Tob2 interaction with PABP and its ability to promote deadenylation. We discovered that both PAM2 motifs are required for Tob2 to display these features. Combining mass spectrometry analysis, poly(A) size-distribution profiling, transcriptome-wide mRNA turnover analyses, and cell proliferation assays, we found that the phosphomimetic mutation at S254 (S254D) enhances Tob2's association with PABP, leading to accelerated deadenylation and decay of mRNAs globally. Moreover, the Tob2-S254D mutant accelerates the decay of many transcripts coding for cell cycle related proteins and enhances anti-proliferation function. Our findings reveal a novel mechanism by which Ccr4-Not complex is recruited by Tob2 to the mRNA 3' poly(A)-PABP complex in a phosphorylation dependent manner to promote rapid deadenylation and decay across the transcriptome, eliciting transcriptome reprogramming and suppressed cell proliferation.

摘要

Tob2 是一种抗增殖蛋白,通过同时与 Caf1 和多聚(A)结合蛋白(PABP)相互作用,将 Caf1 脱腺苷酶募集到 mRNA 多聚(A)尾,从而促进脱腺苷化。之前,我们发现 Tob2 磷酸化的变化可以改变其与 PABP 的结合能力和促进脱腺苷化的功能。然而,相关激酶(s)尚不清楚。此外,Tob2 磷酸化是否调节转录组尚不清楚,以及磷酸化是否与 Tob2 的抗增殖功能有关。在这项研究中,我们发现 c-Jun 氨基末端激酶(JNK)在 Tob2 中含有两个独立的 PABP 相互作用 PAM2 基序的无规卷曲区域(IDR)中的许多丝氨酸/苏氨酸位点增加 Tob2 的磷酸化。JNK 诱导的这些位点的磷酸化或磷酸模拟突变削弱了 Tob2-PABP 相互作用。相比之下,JNK 独立于 Tob2 丝氨酸 254(S254)的磷酸化极大地增强了 Tob2 与 PABP 的相互作用及其促进脱腺苷化的能力。我们发现,这两个 PAM2 基序都是 Tob2 显示这些特征所必需的。通过结合质谱分析、多聚(A)大小分布分析、转录组范围的 mRNA 周转率分析和细胞增殖测定,我们发现 S254 的磷酸模拟突变(S254D)增强了 Tob2 与 PABP 的结合,导致 mRNA 整体脱腺苷化和衰减加速。此外,Tob2-S254D 突变体加速了许多编码细胞周期相关蛋白的转录物的衰减,并增强了抗增殖功能。我们的研究结果揭示了一种新的机制,即 Tob2 通过依赖于磷酸化的方式将 Ccr4-Not 复合物募集到 mRNA 3' 多聚(A)-PABP 复合物,以促进整个转录组的快速脱腺苷化和衰减,引发转录组重编程和抑制细胞增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f2d/7430666/7fb865ea7285/1143f01.jpg

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