Nucleoporin 205kD
Primary_assembly X: 19,852,214-19,859,379 forward strand.
This transcript has 10 exons and is annotated with 8 domains and features.
This transcript is a product of gene FBgn0031078 Show transcript tableHide transcript table
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Nucleoporin 205kD
Primary_assembly X: 19,852,214-19,859,379 forward strand.
This transcript has 10 exons and is annotated with 8 domains and features.
This transcript is a product of gene FBgn0031078 Show transcript tableHide transcript table
Name | Transcript ID | bp | Protein | Translation ID | Biotype | UniProt | RefSeq | Flags |
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Nup205-RB | FBtr0074798 | 6470 | 2090aa | FBpp0074567 | Gene/transcipt that contains an open reading frame (ORF).Protein coding | A9YI09 A9YI11 A9YI14 Q8IQV9 | - | A single transcript chosen for a gene which is the most conserved, most highly expressed, has the longest coding sequence and is represented in other key resources, such as NCBI and UniProt. This is defined in detail on http://www.ensembl.org/info/genome/genebuild/canonical.htmlEnsembl Canonical, APPRIS P2: Where the APPRIS core modules are unable to choose a clear principal variant (approximately 25% of human protein coding genes), the database chooses two or more of the CDS variants as "candidates" to be the principal variant. APPRIS is a system to annotate alternatively spliced transcripts based on a range of computational methods to identify the most functionally important transcript(s) of a gene. APPRIS P2, |
Nup205-RA | FBtr0074799 | 6401 | 2067aa | FBpp0074568 | Gene/transcipt that contains an open reading frame (ORF).Protein coding | A9YI10 Q9VWB8 | - | APPRIS ALT2: For genes in which the APPRIS core modules are unable to choose a clear principal isoform, the ALT1 is the candidate transcript(s) models that appear to be conserved in fewer than three tested species. APPRIS is a system to annotate alternatively spliced transcripts based on a range of computational methods to identify the most functionally important transcript(s) of a gene. APPRIS ALT2, |
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Ensembl Metazoa release 58 - January 2024 © EMBL-EBI EMBL-EBI
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