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Protein Coding Gene : Spout1 SPOUT domain containing methyltransferase 1

Primary Identifier  MGI:106544 Organism  mouse, laboratory
Chromosome  2 NCBI Gene Number  227695
Mgi Type  protein coding gene
description  FUNCTION: Automated description from the Alliance of Genome Resources (Release 7.1.0)

Predicted to enable miRNA binding activity. Predicted to be involved in maintenance of centrosome location and miRNA processing. Predicted to act upstream of with a positive effect on post-transcriptional regulation of gene expression. Predicted to act upstream of or within cell division and methylation. Predicted to be located in chromosome, centromeric region; cytoplasm; and cytoskeleton. Predicted to be active in kinetochore; mitotic spindle; and spindle pole centrosome. Is expressed in embryo and extraembryonic component. Orthologous to human SPOUT1 (SPOUT domain containing methyltransferase 1).
PHENOTYPE: Mice homozygous for a knock-out allele exhibit embryonic lethality before implantation. Heterozygotes show reduced spontaneous apoptosis of differentiating spermatogonia as well as reduced apoptosis and nuclear DNA fragmentation in splenocytes, thymocytes and MEFs in response to apoptotic stimuli. [provided by MGI curators]
  • synonyms:
  • D2Wsu81e,
  • Spout1,
  • DNA segment, Chr 2, Wayne State University 81, expressed,
  • expressed sequence AL033358,
  • MGD-MRK-34238,
  • SPOUT domain containing methyltransferase 1,
  • MGI:2139144,
  • AL033358

Features --> Cross References

Genome

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Canonical gene --> CDSs in specific strains.

Canonical gene --> Exons in specific strains

Canonical gene --> Strain-specific IDs, biotypes, and locations

Canonical gene --> Transcripts in specific strains.

Features --> Overlapping features

Proteins

Gene --> Proteins

Function

Mouse features --> Functions (GO terms)

Homology

Genes --> Homologs

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Gene --> Protein-Protein Interactions

Expression

Gene --> Expression annotations

Phenotype

Genes/Features --> Phenotypes (MP terms)

Disease

Mouse features --> Human diseases

Literature

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