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These reference sequences exist independently of genome builds. Explain
These reference sequences are curated independently of the genome
annotation cycle, so their versions may not match the RefSeq versions in the current
genome build. Identify version mismatches by comparing the version of the RefSeq in
this section to the one reported in Genomic regions,
transcripts, and products above.
mRNA and Protein(s)
-
NM_001108429.2 → NP_001101899.2 RNA-binding protein 27 isoform 2
Status: VALIDATED
- Description
- Transcript Variant: This variant (2) lacks an alternate exon as well as a portion of the coding region compared to variant 1. The encoded isoform (2) is shorter than isoform 1.
- Source sequence(s)
-
CK842888, JAXUCZ010000018
- UniProtKB/TrEMBL
- A0A8I5ZN77, F1M1R4
- Related
- ENSRNOP00000079719.1, ENSRNOT00000108854.2
- Conserved Domains (5) summary
-
- PRK03918
Location:751 → 878
- PRK03918; DNA double-strand break repair ATPase Rad50
- pfam00642
Location:277 → 299
- zf-CCCH; Zinc finger C-x8-C-x5-C-x3-H type (and similar)
- pfam15991
Location:606 → 770
- G_path_suppress; G-protein pathway suppressor
- cl02562
Location:7 → 72
- PWI; PWI domain
- cl17169
Location:544 → 619
- RRM_SF; RNA recognition motif (RRM) superfamily
-
NM_001372344.1 → NP_001359273.1 RNA-binding protein 27 isoform 1
Status: VALIDATED
- Description
- Transcript Variant: This variant (1) represents the longer transcript and encodes the longer isoform (1).
- Source sequence(s)
-
CK842888, JAXUCZ010000018
- UniProtKB/TrEMBL
- A0A8I5ZS16, F1M1R4
- Conserved Domains (6) summary
-
- PRK03918
Location:806 → 933
- PRK03918; DNA double-strand break repair ATPase Rad50
- cd12517
Location:599 → 674
- RRM_RBM27; RNA recognition motif of vertebrate RNA-binding protein 27 (RBM27)
- pfam00642
Location:277 → 299
- zf-CCCH; Zinc finger C-x8-C-x5-C-x3-H type (and similar)
- pfam15991
Location:661 → 825
- G_path_suppress; G-protein pathway suppressor
- cl02562
Location:7 → 72
- PWI; PWI domain
- cl17169
Location:971 → 1013
- RRM_SF; RNA recognition motif (RRM) superfamily