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The purpose of this study was to analyze genome wide effects of long term L1TD1 silencing in embryonal carcinoma cell line (NT2D1) and to identify molecular level mechanismis of L1TD1 function and determine its possible role in pluripotency and self-renewal Six clones from NT2D1 cell line stably exp...
ORGANISM(S): Homo sapiens 
Pluripotency factors are known to be abnormally expressed cancer cells, which often correlate with poor prognosis. The molecular mechanisms by which pluripotency factors contribute to tumor aggressiveness are yet to be elucidated. The pluripotency marker L1TD1 interacts with other pluripotency facto...
2024-02-09 | PXD040803 | Pride
L1TD1 is a domesticated transposon protein which a RNA-binding capacity. In this project, we aim to investigate the mechanisms through which L1TD1 acts on its RNA targets. First, we first aim to identify the de novo RNA targets of L1TD1 and then is to analyze how proteomics and transcriptomics chang...
ORGANISM(S): Homo sapiens (Human) 
2025-02-11 | PXD047402 | Pride
Dissolution of RNA condensates by the embryonic stem cell protein L1TD1 [CLIP-seq]
Dissolution of RNA condensates by the embryonic stem cell protein L1TD1 [RNA-seq]
In this study, we aimed at determining RNA interactors of L1TD1 RNPs. To achieve this, DNMT1 KO and DNMT1 L1TD1 DKO HAP1 cells were generated by Crispr/Cas9 gene editing tool and L1TD1 RIP was performed by using these cell lines. Our study reveals a comprehensive analysis of differentially enriched ...
ORGANISM(S): Homo sapiens 
2025-01-01 | GSE254459 | GEO
L1TD1 is a cytoplasmic RNA-binding protein that is specifically expressed in pluripotent stem cells and, unlike its mouse paralogue, is essential for the maintenance of stemness in human cells. Although L1TD1 is the only known domesticated gene from a LINE-1 (L1) retroelement, the functional legacy ...
ORGANISM(S): Homo sapiens 
2023-04-26 | GSE227855 | GEO
L1TD1 is a cytoplasmic RNA-binding protein that is specifically expressed in pluripotent stem cells and, unlike its mouse paralogue, is essential for the maintenance of stemness in human cells. Although L1TD1 is the only known domesticated gene from a LINE-1 (L1) retroelement, the functional legacy ...
ORGANISM(S): Homo sapiens 
2023-04-26 | GSE227854 | GEO
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