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Pancreatic neuroendocrine tumours (PanNETs) are a heterogeneous group of neoplasms arising in pancreatic islets and altering the hormone secreting function of neuroendocrine cells. Genome wide approaches have revealed the genomic landscape of PanNETs but have not explained their problematic hormone ...
ORGANISM(S): Homo sapiens (Human) 
2025-08-08 | PXD065389 | Pride
Regulation of retina microexons by srrm3 in zebrafish
To investigate the role of srrm3 as a regulator of retina microexons (RetMICs) we have sequenced adult retina from WT animals, and enucleated eyes from 5 dpf larvae WT and KO for srrm3.
ORGANISM(S): Danio rerio 
2022-07-01 | GSE180778 | GEO
The Bronx waltzer mutation in Srrm4, a gene that encodes a neuronal Ser/Arg (SR)-rich splicing factor, disrupts the expression of several alternative exons specifically in the inner ear. Here we show that the expression of SRRM3 in neurons limits the distribution of SRRM4-dependent splicing. In vitr...
ORGANISM(S): Mus musculus 
2018-07-01 | GSE71479 | GEO
The Bronx waltzer mutation in Srrm4, a gene that encodes a neuronal Ser/Arg (SR)-rich splicing factor, disrupts the expression of several alternative exons specifically in the inner ear. Here we show that the expression of SRRM3 in neurons limits the distribution of SRRM4-dependent splicing. In vitr...
ORGANISM(S): Mus musculus 
2018-07-01 | GSE71480 | GEO
Core splicing architecture and early spliceosomal recognition determine microexon sensitivity to SRRM3/4
Regulation of retina microexons by SRRM3, SRRM4 and MSI1 in human cell lines
Microexons are essential for proper functioning of neurons and pancreatic endocrine cells, where their inclusion depends on the splicing factors SRRM3/4. However, in pancreatic cells, their lower expression limits inclusion to only the most sensitive neuronal microexons. Although various cis-acting ...
ORGANISM(S): Homo sapiens 
2025-06-10 | GSE276143 | GEO
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