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Human tumors often contain slowly proliferating cancer cells that resist treatment but we do not know precisely how these cells arise. We show that rapidly proliferating cancer cells can divide asymmetrically to produce slowly proliferating “G0-like” progeny that are enriched following chemotherapy ...
ORGANISM(S): Homo sapiens 
Cell lines geneticially engineered to undergo conditional asymmetric self-renewal were used to identify genes whose expression is asymmetric self-renewal associated (ASRA). Non-random sister chromatid segregation occurs concordantly with asymmetric self-renewal in these cell lines. Asymmetric self-...
ORGANISM(S): Mus musculus 
Asymmetric partitioning of fate-determinants is a mechanism that contributes to T cell differentiation. However, it remained unclear whether the ability of T cells to divide asymmetrically is influenced by their differentiation state, as well as if enforcing asymmetric cell division rates would have...
ORGANISM(S): Mus musculus 
Asymmetric division of cortex/endodermal initials (CEI) in the Arabidopsis root generates two layers of ground tissue and is controlled by a finely orchestrated interplay between the transcription factors, SHORT ROOT (SHR) and SCARECROW (SCR). To understand the dynamics of the SHR/SCR regulatory ne...
ORGANISM(S): Arabidopsis thaliana 
WhiA is a highly unusual transcriptional regulator related to a family of eukaryotic homing endonucleases. WhiA is required for sporulation in the filamentous bacterium Streptomyces, but WhiA homologues of unknown function are also found throughout the Gram-positive bacteria. To better understand th...
ORGANISM(S): Streptomyces venezuelae 
Islr regulates satellite cells asymmetric division through Sparc/p-ERK1/2 signaling pathway
Fate induction in CD8 chimeric antigen receptor T-cells through asymmetric cell division
Gene expression of CD8 T cell progenies generated via asymmetric cell division
APT1 regulates the asymmetric partitioning of Notch and Wnt signaling during cell division
Asymmetric division in a two-cell-like state rejuvenates embryonic stem cells
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