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Zinc-finger Nuclease Enhanced Gene Targeting in Human Embryonic Stem Cells
Published on: August 23, 2014
lncRNA-operated stem cell fate control: RPS3 mediates the in situ Gm16751-Zhx3 interactome to program spermatogonial
Weijun Gao1, Bo Xu2, Wenzhi Ma1
1School of Basic Medical Sciences, Key Laboratory of Fertility Preservation and Maintenance of Ministry of Education, Ningxia Medical University, Yinchuan, 750004, China.
Background:
Long non-coding RNAs (lncRNAs) play pivotal regulatory roles in mammalian male gametogenesis. Advances in high-throughput technologies have demonstrated that lncRNAs orchestrate robust, flexible, and context-specific gene regulatory networks through dynamic interactions with proteins, DNA, and RNA, modulating transcriptional and post-transcriptional processes. However, the mechanistic role of in situ lncRNA-mRNA interactions in spermatogonial stem cell (SSC) differentiation remains poorly understood.
Methods:
The differentially expressed transcripts, including lncRNA, mRNA and circRNA, were systematically identified through long RNA sequencing (LongRNA-seq). RNA-RNA in situ interactions were subsequently mapped using RNA in situ conformation sequencing (RIC-seq) technology. The Gm16751-Zhx3 interaction was validated using single-molecule fluorescence in situ hybridization (smFISH), coupled with RNA antisense purification followed by quantitative PCR (RAP-qPCR), and dual-luciferase reporter assay. Its functional impact on SSC differentiation was assessed via EdU staining, apoptosis assay, mRNA stability assay, RAP-qPCR, respectively. Liquid chromatography-tandem mass spectrometry (LC-MS) and RNA immunoprecipitation-qPCR (RIP-qPCR) were employed to screen and identify the RNA-binding protein (RBP) interacting with Gm16751 and Zhx3. Crosslinking immunoprecipitation followed by qPCR (CLIP-qPCR) further identified specific binding sequences. The regulation of RBP on the differentiation of SSC was verified using RAP-qPCR, RIP-qPCR, puromycin incorporation assay, and RNA stability assay.
Results:
We employed RIC-seq and LongRNA-seq to systematically identify a functional interaction between lncRNA Gm16751 and Zhx3 mRNA during SSC differentiation, which was further visualized via a Circos plot. Mechanistically, we demonstrated that Gm16751 enhances the mRNA stability of Zhx3, thereby promoting SSC differentiation. Furthermore, mass spectrometry analysis revealed that RPS3 (Ribosomal Protein S3) serves as a critical RBP that bridges the interaction between Gm16751 and Zhx3, ultimately stabilizing Zhx3 mRNA and modulating SSC differentiation.
Conclusions:
Our study identified a novel lncRNA-mRNA interaction pair, Gm16751/Zhx3, which is mediated by RPS3 and facilitates the differentiation of SSC. This discovery provides important mechanistic insights into the regulation of male germ cell development and offers a new perspective for understanding molecular controls in spermatogenesis.
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