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Epitranscriptomics & Cancer Adaptation : A.David

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Our research work focuses on the contribution of post-transcriptional mechanisms on cancer cell adaptation, in particular RNA epigenetic & translational control.

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Added by alainmange
Group name PlateformePP2I
Item Type Journal Article
Title Targeting the splicing isoforms of spleen tyrosine kinase affects the viability of colorectal cancer cells
Creator Denis et al.
Author Vincent Denis
Author Nadège Cassagnard
Author Maguy Del Rio
Author Emmanuel Cornillot
Author Nicole Bec
Author Christian Larroque
Author Laura Jeanson
Author Marta Jarlier
Author Bruno Robert
Author Céline Gongora
Author Pierre Martineau
Author Piona Dariavach
Abstract Spleen tyrosine kinase (Syk) expression have been both positively and negatively associated with tumorigenesis. Our goal was to evaluate the contribution of Syk and its two splice variants, full length Syk (L) and short isoform Syk (S), in the tumor biology of colorectal cancer cells (CRC). The analysis of Syk expression in primary human colorectal tumors, as well as the analysis of TCGA database, revealed a high Syk mRNA expression score in colorectal cancer tumors, suggesting a tumor promotor role of Syk in CRC. Our analysis showed that Syk (L) isoform is highly expressed in the majority of the tumor tissues and that it remains expressed in tumors in which global Syk expression is downregulated, suggesting the dependence of tumors to Syk (L) isoform. We also identified a small cluster of tumor tissues, which express a high proportion of Syk (S) isoform. This specific cluster is associated with overexpressed genes related to translation and mitochondria, and down regulated genes implicated in the progression of mitosis. For our functional studies, we used short hairpin RNA tools to target the expression of Syk in CRC cells bearing the activating K-Ras (G13D) mutation. Our results showed that while global Syk knock down increases cell proliferation and cell motility, Syk (L) expression silencing affects the viability and induces the apoptosis of the cells, confirming the dependence of cells on Syk (L) isoform for their survival. Finally, we report the promising potential of compound C-13, an original non-enzymatic inhibitor of Syk isolated in our group. In vitro studies showed that C-13 exerts cytotoxic effects on Syk-positive CRC cells by inhibiting their proliferation and their motility, and by inducing their apoptosis, while Syk-negative cell lines viability was not affected. Moreover, the oral and intraperitoneal administration of C-13 reduced the tumor growth of CRC DLD-1 cells xenografts in Nude mice in vivo.
Publication PloS One
Volume 17
Issue 9
Pages e0274390
Date 2022
Journal Abbr PLoS One
Language eng
DOI 10.1371/journal.pone.0274390
ISSN 1932-6203
Library Catalog PubMed
Extra PMID: 36103569 PMCID: PMC9473616
Tags Animals, author, Colorectal Neoplasms, Humans, Mice, Mice, Nude, original, pp2i, Protein Isoforms, RNA Splicing, Syk Kinase
Date Added 2022/09/26 - 14:27:47
Date Modified 2022/12/14 - 14:54:40
Notes and Attachments PubMed entry (Attachment)


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