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RPS28 and DMRTB1
Number of citations of the paper that reports this interaction (PubMedID
34133714
)
84
Data Source:
BioGRID
(two hybrid)
RPS28
DMRTB1
Description
ribosomal protein S28
DMRT like family B with proline rich C-terminal 1
Image
No pdb structure
GO Annotations
Cellular Component
Nucleus
Nucleoplasm
Nucleolus
Cytoplasm
Endoplasmic Reticulum
Rough Endoplasmic Reticulum
Cytosol
Ribosome
Small Ribosomal Subunit
Cytosolic Ribosome
Cytosolic Small Ribosomal Subunit
Small-subunit Processome
Synapse
Extracellular Exosome
Cytoplasmic Side Of Rough Endoplasmic Reticulum Membrane
Ribonucleoprotein Complex
Chromatin
Nucleus
Molecular Function
RNA Binding
Structural Constituent Of Ribosome
Protein Binding
RNA Polymerase II Cis-regulatory Region Sequence-specific DNA Binding
DNA-binding Transcription Factor Activity, RNA Polymerase II-specific
DNA Binding
Protein Binding
Sequence-specific DNA Binding
Metal Ion Binding
Biological Process
Ribosomal Small Subunit Assembly
Cytoplasmic Translation
RRNA Processing
Translation
Maturation Of SSU-rRNA
Ribosome Biogenesis
Ribosomal Small Subunit Biogenesis
Regulation Of DNA-templated Transcription
Regulation Of Transcription By RNA Polymerase II
Sex Differentiation
Pathways
L13a-mediated translational silencing of Ceruloplasmin expression
Peptide chain elongation
SRP-dependent cotranslational protein targeting to membrane
SRP-dependent cotranslational protein targeting to membrane
Viral mRNA Translation
Selenocysteine synthesis
Major pathway of rRNA processing in the nucleolus and cytosol
Translation initiation complex formation
Formation of a pool of free 40S subunits
Formation of the ternary complex, and subsequently, the 43S complex
Ribosomal scanning and start codon recognition
GTP hydrolysis and joining of the 60S ribosomal subunit
Eukaryotic Translation Termination
Regulation of expression of SLITs and ROBOs
Response of EIF2AK4 (GCN2) to amino acid deficiency
SARS-CoV-1 modulates host translation machinery
SARS-CoV-2 modulates host translation machinery
Nonsense Mediated Decay (NMD) independent of the Exon Junction Complex (EJC)
Nonsense Mediated Decay (NMD) enhanced by the Exon Junction Complex (EJC)
PELO:HBS1L and ABCE1 dissociate a ribosome on a non-stop mRNA
ZNF598 and the Ribosome-associated Quality Trigger (RQT) complex dissociate a ribosome stalled on a no-go mRNA
Drugs
Artenimol
Diseases
GWAS
Cerebrospinal fluid AB1-42 levels (
28247064
)
Response to statin therapy (
20339536
)
Interacting Genes
19 interacting genes:
CCNDBP1
CEBPA
CTBP2
DMRTB1
EEF1G
EXOSC8
HMGB2
HSF2BP
KRTAP1-1
KRTAP10-3
KRTAP10-7
KRTAP10-8
KRTAP2-4
KRTAP4-12
NOTCH2NLA
PFDN1
RBFOX2
UNKL
WEE2-AS1
90 interacting genes:
ALG13
ANKHD1
BAG4
BCAS2
C1orf94
CCND3
CDKN2D
CPEB2
CPSF7
CTBP1
CTBP2
EWSR1
EXOSC1
EXOSC5
EXOSC7
EYA2
FXR2
HNRNPUL1
IL16
INCA1
KAT5
KIF21B
KRT81
KRTAP19-5
KRTAP19-6
KRTAP21-2
KRTAP8-1
LARP4B
LENG8
MAZ
MBNL1
MRPL44
MSI2
MTPAP
NCKIPSD
NEDD9
NIF3L1
NIP7
NXF1
PARD6G
PATL1
PEF1
PKP2
PPIL3
PRMT2
PRPF39
PRPF6
PRR3
PRRC2B
QKI
RAMAC
RBFOX1
RBFOX2
RBM14
RBM22
RBM42
RBM7
RBPMS
RPA2
RPS28
SECISBP2
SF1
SF3B4
SFPQ
SH3RF1
SLAIN1
SLIRP
SNRPA
SNRPB
SNRPC
SNRPN
SNW1
SORBS3
SRSF2
TENT5A
TEX10
TLE5
TNRC6A
TOX
TRNAU1AP
TSG101
TXNL4A
UBL5
UNKL
VASP
WBP4
YTHDF1
YTHDF3
ZC3H10
ZMAT5
Entrez ID
6234
63948
HPRD ID
04731
16828
Ensembl ID
ENSG00000233927
ENSG00000143006
Uniprot IDs
B2R4R9
P62857
I6L9A0
Q96MA1
PDB IDs
4UG0
4V6X
5A2Q
5AJ0
5FLX
5LKS
5OA3
5T2C
5VYC
6FEC
6G18
6G4S
6G4W
6G51
6G53
6G5H
6G5I
6IP5
6IP6
6IP8
6OLE
6OLF
6OLG
6OLI
6OLZ
6OM0
6OM7
6QZP
6XA1
6Y0G
6Y2L
6Y57
6YBS
6Z6L
6Z6M
6Z6N
6ZLW
6ZM7
6ZME
6ZMI
6ZMO
6ZMT
6ZMW
6ZN5
6ZOJ
6ZOL
6ZON
6ZP4
6ZUO
6ZV6
6ZVH
6ZVJ
6ZXD
6ZXE
6ZXF
6ZXG
6ZXH
7A09
7K5I
7MQ8
7MQ9
7MQA
7QP6
7QP7
7R4X
7TQL
7WTT
7WTU
7WTV
7WTW
7WTX
7WTZ
7WU0
7XNX
7XNY
8G5Y
8G5Z
8G60
8G61
8G6J
8GLP
8IFD
8IFE
8JDJ
8JDK
8JDL
8JDM
8K2C
8OZ0
8PJ1
8PJ2
8PJ3
8PJ4
8PJ5
8PJ6
8PPK
8PPL
8QOI
8RG0
8T4S
8UKB
8XP2
8XP3
8XSX
8XSY
8XSZ
8XXL
8XXM
8XXN
8Y0W
8Y0X
8YOO
8YOP
8ZDB
8ZDC
8ZDD
9BKD
9BLN
9C3H
9G8M
9G8O
Enriched GO Terms of Interacting Partners
?
Keratin Filament
Intermediate Filament
DNA-binding Transcription Factor Binding
White Fat Cell Differentiation
RNA Binding
MRNA Processing
RNA Processing
MRNA Metabolic Process
RNA Splicing
Nucleic Acid Binding
MRNA Splicing, Via Spliceosome
RNA Splicing, Via Transesterification Reactions
RNA Metabolic Process
Nucleic Acid Metabolic Process
Spliceosomal Complex
Regulation Of MRNA Metabolic Process
Nucleus
MRNA Binding
Nucleobase-containing Compound Metabolic Process
Regulation Of RNA Splicing
Nucleoplasm
Cytoplasmic Stress Granule
Regulation Of MRNA Splicing, Via Spliceosome
Protein Binding
Regulation Of MRNA Processing
U1 SnRNP
Macromolecule Metabolic Process
U4/U6 X U5 Tri-snRNP Complex
Catalytic Step 2 Spliceosome
Negative Regulation Of Macromolecule Metabolic Process
U2-type Prespliceosome
Regulation Of Alternative MRNA Splicing, Via Spliceosome
Regulation Of Macromolecule Metabolic Process
U5 SnRNP
Spliceosomal Complex Assembly
Negative Regulation Of Metabolic Process
U2-type Precatalytic Spliceosome
Negative Regulation Of RNA Metabolic Process
Protein-RNA Complex Assembly
Transcription Corepressor Activity
Negative Regulation Of Macromolecule Biosynthetic Process
Regulation Of Primary Metabolic Process
Membraneless Organelle Assembly
Nucleolar Exosome (RNase Complex)
Negative Regulation Of MRNA Metabolic Process
U2-type Catalytic Step 2 Spliceosome
Intermediate Filament
Negative Regulation Of Biosynthetic Process
Regulation Of Gene Expression
Ribonucleoprotein Complex
Negative Regulation Of Nucleobase-containing Compound Metabolic Process
Cytoplasm
Regulation Of Metabolic Process
Cytoplasmic Exosome (RNase Complex)
Tagcloud
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Tagcloud (Difference)
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Tagcloud (Intersection)
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