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Understanding mechanisms of epigenetic regulation in embryonic stem cells (ESCs) is of fundamental importance for stem cell and developmental biology. Here we identify Spic, a member of the ETS family of transcription factors, as a specific marker of ground state pluripotency. We show that Spic is r...
ORGANISM(S): Mus musculus (Mouse) 
2025-05-06 | PXD039213 | Pride
Splenic red pulp macrophages (RPM) degrade senescent erythrocytes and recycle heme-associated iron. The transcription factor Spic is selectively expressed by RPM and is required for their development, but the physiologic stimulus inducing Spic is unknown. Here, we report that Spic also regulated the...
ORGANISM(S): Mus musculus 
Spic is required for the differentiation of metaphocyte progenitor cells
Splenic red pulp macrophages (RPM) degrade senescent erythrocytes and recycle heme-associated iron. The transcription factor Spic is selectively expressed by RPM and is required for their development, but the physiologic stimulus inducing Spic is unknown. Here, we report that Spic also regulated the...
ORGANISM(S): Mus musculus 
2014-03-14 | GSE53796 | GEO
Splenic red pulp macrophages (RPM) degrade senescent erythrocytes and recycle heme-associated iron. The transcription factor Spic is selectively expressed by RPM and is required for their development, but the physiologic stimulus inducing Spic is unknown. Here, we report that Spic also regulated the...
ORGANISM(S): Mus musculus 
(RNA-seq) Spic regulates one-carbon metabolism and histone methylation in ground-state pluripotency
(ATAC-seq_and_ChIP-seq) Spic regulates one-carbon metabolism and histone methylation in ground-state pluripotency
Metaphocytes are tissue-resident myeloid-like cells of non-hematopoietic origin in zebrafish barrier tissues. How metaphocytes acquire myeloid cell properties from non-hematopoietic precursors during the development remains unknown. Here we show that metaphocytes are in situ generated from local pro...
ORGANISM(S): Danio rerio 
2023-04-08 | GSE228732 | GEO
Understanding mechanisms of epigenetic regulation in embryonic stem cells (ESCs) is of fundamental importance for stem cell and developmental biology. Here we identify Spic, a member of the ETS family of transcription factors, as a specific marker of ground state pluripotency. We show that Spic is r...
ORGANISM(S): Mus musculus 
2023-09-06 | GSE222053 | GEO
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