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SNRNP70 regulates the splicing of CD55 to promote osteosarcoma progression
Wenyue Li, Linzhu Wang, Wen Tian, Weihang Ji, Danyang Bing, Yan Wang, Bingqian Xu, Jiayue Feng, Peng Zhang, Haihai Liang, Yunyan Gu, Baofeng Yang
Wenyue Li, Linzhu Wang, Wen Tian, Weihang Ji, Danyang Bing, Yan Wang, Bingqian Xu, Jiayue Feng, Peng Zhang, Haihai Liang, Yunyan Gu, Baofeng Yang
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Research Article Cell biology Oncology

SNRNP70 regulates the splicing of CD55 to promote osteosarcoma progression

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Abstract

Osteosarcoma (OS) is the most common malignant bone tumor, characterized by a high propensity for metastasis. Recent studies have highlighted the role of alternative splicing in cancer metastasis, although the precise mechanisms underlying aberrant splicing in OS invasion and metastasis remain unclear. Here, we analyzed consistently differentially expressed genes and differentially alternative splicing events between primary and metastatic OS to identify potential genes associated with OS progression. U1 small nuclear ribonucleoprotein 70K (SNRNP70) emerged as both differentially expressed and spliced, with elevated SNRNP70 levels correlating with poor prognosis in pateints with OS. Functional experiments demonstrated that SNRNP70 overexpression enhanced the proliferation and metastasis of OS cells in vitro, while its depletion reduced these capabilities in vivo. Mechanistically, SNRNP70 directly interacted with CD55, modulating its alternative splicing and promoting tumor progression in OS. Additionally, metastatic OS samples exhibited increased infiltration of resting immune cells, and single-cell RNA sequencing revealed communication between SNRNP70-expressing osteoblastic cells and macrophages via the ADGRE5/CD55 signaling pathway. Overall, our results showed that SNRNP70 knockdown inhibited OS progression, which was associated with the splicing of CD55, indicating SNRNP70 as a promising target for OS treatment.

Authors

Wenyue Li, Linzhu Wang, Wen Tian, Weihang Ji, Danyang Bing, Yan Wang, Bingqian Xu, Jiayue Feng, Peng Zhang, Haihai Liang, Yunyan Gu, Baofeng Yang

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Figure 1

Transcriptional landscape of primary and metastatic OS.

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Transcriptional landscape of primary and metastatic OS.
(A) An UpSet plo...
(A) An UpSet plot displaying intersections of DEGs among 7 datasets in OS (bottom left). A radar chart showing the numbers of cDEGs in the 7 datasets (upper right). Violet color indicates downregulated cDEGs, while pink color indicates upregulated cDEGs. (B) A pie chart showing the percentages of DASEs for each type of AS in metastatic tissues compared to primary tissues (top). Five types of AS are depicted in the bottom diagram. (C) Multiple line graphs illustrating the numbers of DASEs, DASE parent genes, and the ratio between the two. The left y axis represents the number of DASE parent genes and DASEs, while the right y axis represents the ratio. The ratios represent the average number of events for one gene in each type of event. (D) A Venn diagram displaying the intersection of upregulated or downregulated cDEGs, DASE parent genes, and RBPs. (E) Metastatic differential regulatory network between RBPs, DASEs, and cDEGs (Pearson’s correlation analysis). Blue indicates downregulated genes and red indicates upregulated genes in metastatic samples. Regular octagons represent networks constructed using percentage spliced in values of splicing events, while circles and quadrangles represents networks based on gene expression values.

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