生物
基因敲除
分子生物学
核定位序列
基因沉默
基因表达
基因
细胞生物学
赫拉
细胞培养
遗传学
作者
Lukasz M. Szafron,Anna Balcerak,Ewa A. Grzybowska,Barbara Pieńkowska‐Grela,Anna Felisiak-Gołąbek,Agnieszka Podgórska,Magdalena Kulesza,Natalia Nowak,Paweł Pomorski,Juliusz Wysocki,Tymon Rubel,Agnieszka Dansonka‐Mieszkowska,Bożena Konopka,Martyna Łukasik,Jolanta Kupryjańczyk
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2015-05-15
卷期号:10 (5): e0127475-e0127475
被引量:53
标识
DOI:10.1371/journal.pone.0127475
摘要
CRNDE, recently described as the lncRNA-coding gene, is overexpressed at RNA level in human malignancies. Its role in gametogenesis, cellular differentiation and pluripotency has been suggested as well. Herein, we aimed to verify our hypothesis that the CRNDE gene may encode a protein product, CRNDEP. By using bioinformatics methods, we identified the 84-amino acid ORF encoded by one of two CRNDE transcripts, previously described by our research team. This ORF was cloned into two expression vectors, subsequently utilized in localization studies in HeLa cells. We also developed a polyclonal antibody against CRNDEP. Its specificity was confirmed in immunohistochemical, cellular localization, Western blot and immunoprecipitation experiments, as well as by showing a statistically significant decrease of endogenous CRNDEP expression in the cells with transient shRNA-mediated knockdown of CRNDE. Endogenous CRNDEP localizes predominantly to the nucleus and its expression seems to be elevated in highly proliferating tissues, like the parabasal layer of the squamous epithelium, intestinal crypts or spermatocytes. After its artificial overexpression in HeLa cells, in a fusion with either the EGFP or DsRed Monomer fluorescent tag, CRNDEP seems to stimulate the formation of stress granules and localize to them. Although the exact role of CRNDEP is unknown, our preliminary results suggest that it may be involved in the regulation of the cell proliferation. Possibly, CRNDEP also participates in oxygen metabolism, considering our in silico results, and the correlation between its enforced overexpression and the formation of stress granules. This is the first report showing the existence of a peptide encoded by the CRNDE gene.
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