Sackler Institute of Graduate Biomedical Sciences, New York University School of Medicine, New York, NY 10016.
Center for Neural Science, New York University, New York, NY 10003.
Proc Natl Acad Sci U S A. 2021 May 4;118(18). doi: 10.1073/pnas.2001681118.
Loss of the fragile X mental retardation protein (FMRP) causes fragile X syndrome (FXS). FMRP is widely thought to repress protein synthesis, but its translational targets and modes of control remain in dispute. We previously showed that genetic removal of p70 S6 kinase 1 (S6K1) corrects altered protein synthesis as well as synaptic and behavioral phenotypes in FXS mice. In this study, we examined the gene specificity of altered messenger RNA (mRNA) translation in FXS and the mechanism of rescue with genetic reduction of S6K1 by carrying out ribosome profiling and RNA sequencing on cortical lysates from wild-type, FXS, S6K1 knockout, and double knockout mice. We observed reduced ribosome footprint (RF) abundance in the majority of differentially translated genes in the cortices of FXS mice. We used molecular assays to discover evidence that the reduction in RF abundance reflects an increased rate of ribosome translocation, which is captured as a decrease in the number of translating ribosomes at steady state and is normalized by inhibition of S6K1. We also found that genetic removal of S6K1 prevented a positive-to-negative gradation of alterations in translation efficiencies (RF/mRNA) with coding sequence length across mRNAs in FXS mouse cortices. Our findings reveal the identities of dysregulated mRNAs and a molecular mechanism by which reduction of S6K1 prevents altered translation in FXS.
脆性 X 智力低下蛋白(FMRP)的缺失导致脆性 X 综合征(FXS)。人们普遍认为 FMRP 抑制蛋白质合成,但它的翻译靶标和控制方式仍存在争议。我们之前的研究表明,基因敲除 p70 S6 激酶 1(S6K1)可纠正 FXS 小鼠中改变的蛋白质合成以及突触和行为表型。在这项研究中,我们通过对野生型、FXS、S6K1 敲除和双敲除小鼠的皮质裂解物进行核糖体分析和 RNA 测序,研究了 FXS 中改变的信使 RNA(mRNA)翻译的基因特异性以及 S6K1 基因敲低的拯救机制。我们观察到 FXS 小鼠皮质中大多数差异翻译基因的核糖体足迹(RF)丰度降低。我们使用分子测定法发现了证据,表明 RF 丰度的降低反映了核糖体易位率的增加,这反映为在稳态下翻译核糖体的数量减少,并通过 S6K1 的抑制得到了归一化。我们还发现,S6K1 的基因敲除可防止 FXS 小鼠皮质中翻译效率(RF/mRNA)随编码序列长度的变化从正到负的梯度变化。我们的研究结果揭示了失调的 mRNA 的身份以及 S6K1 减少可防止 FXS 中改变的翻译的分子机制。