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Artificial MiRNA Knockdown of Platelet Glycoprotein lbα: A Tool for Platelet Gene Silencing.

Thijs, T; Broos, K; Soenen, SJ; Vandenbulcke, A; Vanhoorelbeke, K; Deckmyn, H; Salles-Crawley, II (2015) Artificial MiRNA Knockdown of Platelet Glycoprotein lbα: A Tool for Platelet Gene Silencing. PLoS One, 10 (7). e0132899. ISSN 1932-6203 https://doi.org/10.1371/journal.pone.0132899
SGUL Authors: Salles-Crawley, Isabelle Irene

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Abstract

In recent years, candidate genes and proteins implicated in platelet function have been identified by various genomic approaches. To elucidate their exact role, we aimed to develop a method to apply miRNA interference in platelet progenitor cells by using GPIbα as a proof-of-concept target protein. After in silico and in vitro screening of siRNAs targeting GPIbα (siGPIBAs), we developed artificial miRNAs (miGPIBAs), which were tested in CHO cells stably expressing GPIb-IX complex and megakaryoblastic DAMI cells. Introduction of siGPIBAs in CHO GPIb-IX cells resulted in 44 to 75% and up to 80% knockdown of GPIbα expression using single or combined siRNAs, respectively. Conversion of siGPIBAs to miGPIBAs resulted in reduced silencing efficiency, which could however be circumvented by tandem integration of two hairpins targeting different regions of GPIBA mRNA where 72% GPIbα knockdown was achieved. CHO GPIb-IX cells transfected with the miGPIBA construct displayed a significant decrease in their ability to aggregate characterized by lower aggregate numbers and size compared to control CHO GPIb-IX cells. More importantly, we successfully silenced GPIbα in differentiating megakaryoblastic DAMI cells that exhibited morphological changes associated with actin organization. In conclusion, we here report the successful use of miRNA technology to silence a platelet protein in megakaryoblastic cells and demonstrate its usefulness in functional assays. Hence, we believe that artificial miRNAs are suitable tools to unravel the role of a protein of interest in stem cells, megakaryocytes and platelets, thereby expanding their application to novel fields of basic and translational research.

Item Type: Article
Additional Information: Copyright: © 2015 Thijs et al. This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited
Keywords: Animals, Blood Platelets, CHO Cells, Cricetinae, Cricetulus, Gene Expression, Gene Knockdown Techniques, Gene Silencing, Humans, MicroRNAs, Platelet Glycoprotein GPIb-IX Complex, RNA, Small Interfering, Transfection, Blood Platelets, CHO Cells, Animals, Humans, Cricetulus, Platelet Glycoprotein GPIb-IX Complex, MicroRNAs, RNA, Small Interfering, Transfection, Gene Expression, Gene Silencing, Cricetinae, Gene Knockdown Techniques, MD Multidisciplinary, General Science & Technology
SGUL Research Institute / Research Centre: Academic Structure > Molecular and Clinical Sciences Research Institute (MCS)
Journal or Publication Title: PLoS One
ISSN: 1932-6203
Language: eng
Dates:
DateEvent
15 July 2015Published
28 May 2015Accepted
Publisher License: Creative Commons: Attribution 4.0
Projects:
Project IDFunderFunder ID
FS/10/004/28165British Heart Foundationhttp://dx.doi.org/10.13039/501100000274
PG/14/90/31219British Heart Foundationhttp://dx.doi.org/10.13039/501100000274
PubMed ID: 26176854
Web of Science ID: WOS:000358197600175
Go to PubMed abstract
URI: https://openaccess.sgul.ac.uk/id/eprint/114221
Publisher's version: https://doi.org/10.1371/journal.pone.0132899

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