1 - 25 of
1,599
results
for domain:"RRM (RNA recognition motif) domain*"
in UniProtKB
Browse by
taxonomy,
keyword,
gene ontology,
enzyme class or
pathway |
Reduce sequence redundancy to
100%,
90% or
50% |
Customize display | Download... |
›
Show only reviewed
(UniProtKB/Swiss-Prot) or unreviewed
(UniProtKB/TrEMBL) entries
› Add columns: Domains
| All | Accession |
Entry name
![]() | Status |
Protein names
![]() |
Gene names
![]() |
Organism
![]() |
Length
![]() |
|---|---|---|---|---|---|---|---|
| Q9NQ94 | A1CF_HUMAN | ![]() | APOBEC1 complementation factor (APOBEC1-stimulating protein) | A1CF (ACF) (ASP) | Homo sapiens (Human) | 594 | |
| Q5YD48 | A1CF_MOUSE | ![]() | APOBEC1 complementation factor (APOBEC1-stimulating protein) | A1cf (Acf) (Asp) | Mus musculus (Mouse) | 595 | |
| Q5R9H4 | A1CF_PONAB | ![]() | APOBEC1 complementation factor (APOBEC1-stimulating protein) | A1CF (ACF) | Pongo abelii (Sumatran orangutan) | 587 | |
| Q923K9 | A1CF_RAT | ![]() | APOBEC1 complementation factor (APOBEC1-stimulating protein) | A1cf (Acf) (Asp) | Rattus norvegicus (Rat) | 594 | |
| A2XAE3 | A2XAE3_ORYSI | ![]() | Putative uncharacterized protein | OsI_09222 | Oryza sativa subsp. indica (Rice) | 289 | |
| A3FQN8 | A3FQN8_CRYPV | ![]() | Eukaryotic translation initiation factor | cgd4_1030 | Cryptosporidium parvum Iowa II | 352 | |
| A4D210 | A4D210_HUMAN | ![]() | Eukaryotic translation initiation factor 3, subunit 9 eta, 116kDa (Eukaryotic translation initiation factor 3, subunit 9 eta, 116kDa, isoform CRA_b) | EIF3S9 (hCG_1998988) (tcag7.544) | Homo sapiens (Human) | 775 | |
| A4H988 | A4H988_LEIBR | ![]() | Translation initiation factor, putative | LbrM17_V2.1450 | Leishmania braziliensis | 709 | |
| A4HXK6 | A4HXK6_LEIIN | ![]() | Translation initiation factor, putative | LinJ17.1410 | Leishmania infantum | 709 | |
| A4RZD3 | A4RZD3_OSTLU | ![]() | Predicted protein (Fragment) | OSTLU_6420 | Ostreococcus lucimarinus (strain CCE9901) | 264 | |
| A4S7N8 | A4S7N8_OSTLU | ![]() | Predicted protein | OSTLU_51414 | Ostreococcus lucimarinus (strain CCE9901) | 713 | |
| A5AG44 | A5AG44_VITVI | ![]() | Putative uncharacterized protein | VITISV_037535 | Vitis vinifera (Grape) | 306 | |
| A5AVF9 | A5AVF9_VITVI | ![]() | Putative uncharacterized protein | VITISV_043976 | Vitis vinifera (Grape) | 311 | |
| A5BDZ1 | A5BDZ1_VITVI | ![]() | Putative uncharacterized protein | VITISV_017587 | Vitis vinifera (Grape) | 719 | |
| A5K5V3 | A5K5V3_PLAVI | ![]() | Eukaryotic translation initiation factor 3 subunit 4, putative | PVX_089625 | Plasmodium vivax | 269 | |
| A5K9I2 | A5K9I2_PLAVI | ![]() | Eukaryotic translation initiation factor 3 subunit 9, putative | PVX_080365 | Plasmodium vivax | 716 | |
| A6R0X9 | A6R0X9_AJECN | ![]() | Putative uncharacterized protein | HCAG_03286 | Ajellomyces capsulata (strain NAm1 / WU24) (Darling's disease fungus) (Histoplasma capsulatum) | 737 | |
| A6REW8 | A6REW8_AJECN | ![]() | Putative uncharacterized protein | HCAG_08183 | Ajellomyces capsulata (strain NAm1 / WU24) (Darling's disease fungus) (Histoplasma capsulatum) | 288 | |
| A6ZEA0 | A6ZEA0_ARTAN | ![]() | Eukaryotic translation initiation factor (Fragment) | TIF3B1 | Artemisia annua (Sweet wormwood) | 236 | |
| A7AQH9 | A7AQH9_BABBO | ![]() | Translation initiation factor 3 subunit, putative | BBOV_IV004370 | Babesia bovis | 268 | |
| A7ATL9 | A7ATL9_BABBO | ![]() | Eukaryotic translation initiation factor 3 subunit, putative | BBOV_II003250 | Babesia bovis | 732 | |
| A7NYS4 | A7NYS4_VITVI | ![]() | Chromosome chr6 scaffold_3, whole genome shotgun sequence | GSVIVT00024233001 | Vitis vinifera (Grape) | 296 | |
| A7P685 | A7P685_VITVI | ![]() | Chromosome chr4 scaffold_6, whole genome shotgun sequence | GSVIVT00032818001 | Vitis vinifera (Grape) | 162 | |
| A7PIN6 | A7PIN6_VITVI | ![]() | Chromosome chr13 scaffold_17, whole genome shotgun sequence | GSVIVT00018411001 | Vitis vinifera (Grape) | 301 | |
| A7PNS9 | A7PNS9_VITVI | ![]() | Chromosome chr8 scaffold_23, whole genome shotgun sequence | GSVIVT00021377001 | Vitis vinifera (Grape) | 293 |

Browse by
Reduce sequence redundancy to






