Results 31 to 40 of about 5,408,362 (316)
The development of the mouse salivary gland involves a tip-driven process of branching morphogenesis that takes place in concert with differentiation into acinar, myoepithelial, and ductal (basal and luminal) sub -line-ages.
Bonkyoung Koo +7 more
core +1 more source
The UPR and cell fate at a glance [PDF]
In eukaryotic cells, secreted and resident proteins of the endomembrane system fold into their native structures within the endoplasmic reticulum (ER). The ER is a network of membranous tubules and sheets whose lumenal environment is crowded with molecular chaperones and protein-modification ...
Philip I, Merksamer, Feroz R, Papa
openaire +2 more sources
Many of the pathways that underlie the diversification of naive T cells into effector and memory subsets, and the maintenance of these populations, remain controversial. In recent years a variety of experimental tools have been developed that allow us to follow the fates of cells and their descendants.
De Boer, Rob J, Yates, Andrew J
openaire +3 more sources
Comparative Analysis of Nuclear Transfer Embryo Derived Mouse Embryonic Stem Cells. Part II: Gene regulation [PDF]
In a mouse model nuclear transfer embryo-derived embryonic stem cell lines (ntESCs) of various genetic backgrounds and donor cell types were compared with reference ESCs and analyzed comprehensively at molecular level as a second part of a larger study ...
Julianna Kobolak +17 more
core +1 more source
DNA Replication Stress and Cell Fate
Faithful genome duplication through DNA replication is pivotal for genome maintenance. A variety of stresses could challenge this fundamental process and therefore endanger the genome integrity and change the cell fate.
Deng, L +4 more
core +1 more source
Nonsense-Mediated RNA Decay Influences Human Embryonic Stem Cell Fate [PDF]
: Nonsense-mediated RNA decay (NMD) is a highly conserved pathway that selectively degrades specific subsets of RNA transcripts. Here, we provide evidence that NMD regulates early human developmental cell fate.
core +3 more sources
RSC and GRFs confer promoter directionality by restricting divergent noncoding transcription
We show that the chromatin remodelling complex RSC and general regulatory factors (GRFs) limit transcription in the noncoding divergent direction, thereby increasing the directionality of promoters.
Andrew CK Wu +5 more
doaj +1 more source
Delta-like 4 is indispensable in thymic environment specific for T cell development. [PDF]
The thymic microenvironment is required for T cell development in vivo. However, in vitro studies have shown that when hematopoietic progenitors acquire Notch signaling via Delta-like (Dll)1 or Dll4, they differentiate into the T cell lineage in the ...
Holländer, Georg +30 more
core +1 more source
Following the fate of cells in vivo [PDF]
Researchers are building better barcodes and combining spatial and temporal tools to trace cell lineages from the earliest stages of animal development—and beyond.
openaire +2 more sources
Nerve regeneration by interferon intervention in aging brain
Neural stem cells (NSCs) are shielded from viral infection by interferon (IFN) defense. As individuals age, activation of NSC decreases with a significant decline of stemness marker Sex‐determining region Y box 2 (Sox2) while IFN signaling enhances ...
Fanwen Wang, Duanqing Pei
doaj +1 more source

