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  • 11.0 [archived version]
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FTSJ1 FTSJ1 PPM1D PPM1D ZNHIT2 ZNHIT2 NHP2 NHP2 NOP10 NOP10 ILKAP ILKAP PPM1L PPM1L RUVBL1 RUVBL1 MRTO4 MRTO4 RUVBL2 RUVBL2 NAF1 NAF1 DKC1 DKC1 DGCR8 DGCR8 DROSHA DROSHA GAR1 GAR1 FTSJ3 FTSJ3 TRUB2 TRUB2 PPM1K PPM1K SHQ1 SHQ1 TRUB1 TRUB1 TAB1 TAB1 PPM1F PPM1F KNOP1 KNOP1 FTSJ2 FTSJ2 PP2D1 PP2D1 PPM1E PPM1E
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
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colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
some 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
Your Input:
TAB1TGF-beta-activated kinase 1 and MAP3K7-binding protein 1; May be an important signaling intermediate between TGFB receptors and MAP3K7/TAK1. May play an important role in mammalian embryogenesis (504 aa)
KNOP1Lysine rich nucleolar protein 1 (458 aa)
GAR1H/ACA ribonucleoprotein complex subunit 1; Required for ribosome biogenesis and telomere maintenance. Part of the H/ACA small nucleolar ribonucleoprotein (H/ACA snoRNP) complex, which catalyzes pseudouridylation of rRNA. This involves the isomerization of uridine such that the ribose is subsequently attached to C5, instead of the normal N1. Each rRNA can contain up to 100 pseudouridine ("psi") residues, which may serve to stabilize the conformation of rRNAs. May also be required for correct processing or intranuclear trafficking of TERC, the RNA component of the telomerase reverse tran [...] (217 aa)
FTSJ2rRNA methyltransferase 2, mitochondrial; S-adenosyl-L-methionine-dependent 2’-O-ribose methyltransferase that catalyzes the formation of 2’-O- methyluridine at position 1369 (Um1369) in the 16S mitochondrial large subunit ribosomal RNA (mtLSU rRNA), a universally conserved modification in the peptidyl transferase domain of the mtLSU rRNA; Belongs to the class I-like SAM-binding methyltransferase superfamily. RNA methyltransferase RlmE family (246 aa)
ILKAPIntegrin-linked kinase-associated serine/threonine phosphatase 2C; Protein phosphatase that may play a role in regulation of cell cycle progression via dephosphorylation of its substrates whose appropriate phosphorylation states might be crucial for cell proliferation. Selectively associates with integrin linked kinase (ILK), to modulate cell adhesion and growth factor signaling. Inhibits the ILK-GSK3B signaling axis and may play an important role in inhibiting oncogenic transformation; Belongs to the PP2C family (392 aa)
DGCR8Microprocessor complex subunit DGCR8; Component of the microprocessor complex that acts as a RNA- and heme-binding protein that is involved in the initial step of microRNA (miRNA) biogenesis. Component of the microprocessor complex that is required to process primary miRNA transcripts (pri-miRNAs) to release precursor miRNA (pre-miRNA) in the nucleus. Within the microprocessor complex, DGCR8 function as a molecular anchor necessary for the recognition of pri-miRNA at dsRNA-ssRNA junction and directs DROSHA to cleave 11 bp away form the junction to release hairpin-shaped pre-miRNAs that [...] (773 aa)
PPM1FProtein phosphatase 1F; Dephosphorylates and concomitantly deactivates CaM- kinase II activated upon autophosphorylation, and CaM-kinases IV and I activated upon phosphorylation by CaM-kinase kinase. Promotes apoptosis; Belongs to the PP2C family (454 aa)
NAF1H/ACA ribonucleoprotein complex non-core subunit NAF1; RNA-binding protein required for the maturation of box H/ACA snoRNPs complex and ribosome biogenesis. During assembly of the H/ACA snoRNPs complex, it associates with the complex and disappears during maturation of the complex and is replaced by NOLA1/GAR1 to yield mature H/ACA snoRNPs complex. Probably competes with NOLA1/GAR1 for binding with DKC1/NOLA4 (494 aa)
NHP2H/ACA ribonucleoprotein complex subunit 2; Required for ribosome biogenesis and telomere maintenance. Part of the H/ACA small nucleolar ribonucleoprotein (H/ACA snoRNP) complex, which catalyzes pseudouridylation of rRNA. This involves the isomerization of uridine such that the ribose is subsequently attached to C5, instead of the normal N1. Each rRNA can contain up to 100 pseudouridine ("psi") residues, which may serve to stabilize the conformation of rRNAs. May also be required for correct processing or intranuclear trafficking of TERC, the RNA component of the telomerase reverse tran [...] (153 aa)
TRUB1Probable tRNA pseudouridine synthase 1; May be responsible for synthesis of pseudouridine from uracil in transfer RNAs (349 aa)
PPM1DProtein phosphatase 1D; Required for the relief of p53-dependent checkpoint mediated cell cycle arrest. Binds to and dephosphorylates ’Ser-15’ of TP53 and ’Ser-345’ of CHEK1 which contributes to the functional inactivation of these proteins. Mediates MAPK14 dephosphorylation and inactivation (605 aa)
ZNHIT2Zinc finger HIT-type containing 2 (403 aa)
PPM1EProtein phosphatase 1E; Protein phosphatase that inactivates multifunctional CaM kinases such as CAMK4 and CAMK2 (By similarity). Dephosphorylates and inactivates PAK. May play a role in the inhibition of actin fiber stress breakdown and in morphological changes driven by TNK2/CDC42. Dephosphorylates PRKAA2 (By similarity); Protein phosphatases, Mg2+/Mn2+ dependent (755 aa)
SHQ1Protein SHQ1 homolog; Required for the quantitative accumulation of H/ACA ribonucleoproteins (RNPs), including telomerase, probably through the stabilization of DKC1, from the time of its synthesis until its association with NOP10, NHP2, and NAF1 at the nascent H/ACA RNA (577 aa)
RUVBL1RuvB-like 1; May be able to bind plasminogen at cell surface and enhance plasminogen activation; AAA ATPases (456 aa)
FTSJ1Putative tRNA (cytidine(32)/guanosine(34)-2’-O)-methyltransferase; Methylates the 2’-O-ribose of nucleotides at positions 32 and 34 of the tRNA anticodon loop of substrate tRNAs; Belongs to the class I-like SAM-binding methyltransferase superfamily. RNA methyltransferase RlmE family. TRM7 subfamily (329 aa)
NOP10H/ACA ribonucleoprotein complex subunit 3; Required for ribosome biogenesis and telomere maintenance. Part of the H/ACA small nucleolar ribonucleoprotein (H/ACA snoRNP) complex, which catalyzes pseudouridylation of rRNA. This involves the isomerization of uridine such that the ribose is subsequently attached to C5, instead of the normal N1. Each rRNA can contain up to 100 pseudouridine ("psi") residues, which may serve to stabilize the conformation of rRNAs. May also be required for correct processing or intranuclear trafficking of TERC, the RNA component of the telomerase reverse tran [...] (64 aa)
DKC1H/ACA ribonucleoprotein complex subunit 4; Isoform 1- Required for ribosome biogenesis and telomere maintenance. Probable catalytic subunit of H/ACA small nucleolar ribonucleoprotein (H/ACA snoRNP) complex, which catalyzes pseudouridylation of rRNA. This involves the isomerization of uridine such that the ribose is subsequently attached to C5, instead of the normal N1. Each rRNA can contain up to 100 pseudouridine (’psi’) residues, which may serve to stabilize the conformation of rRNAs. Also required for correct processing or intranuclear trafficking of TERC, the RNA component of the t [...] (514 aa)
TRUB2Mitochondrial mRNA pseudouridine synthase TRUB2; Minor enzyme contributing to the conversion of uridine to pseudouridine (PSI) at position 390 in mitochondrial COXI (MT- CO1) mRNA and at position 697-699 in mitochondrial COXIII (MT-CO3) mRNA, modulating the efficiency of mitochondrial protein synthesis without changes in transcript abundance or stability (331 aa)
MRTO4mRNA turnover protein 4 homolog; Component of the ribosome assembly machinery. Nuclear paralog of the ribosomal protein P0, it binds pre-60S subunits at an early stage of assembly in the nucleolus, and is replaced by P0 in cytoplasmic pre-60S subunits and mature 80S ribosomes (239 aa)
PP2D1Protein phosphatase 2C like domain containing 1 (630 aa)
FTSJ3pre-rRNA processing protein FTSJ3; Probable methyltransferase involved in the processing of the 34S pre-rRNA to 18S rRNA and in 40S ribosomal subunit formation; Belongs to the class I-like SAM-binding methyltransferase superfamily. RNA methyltransferase RlmE family. SPB1 subfamily (847 aa)
PPM1LProtein phosphatase 1L; Acts as a suppressor of the SAPK signaling pathways by associating with and dephosphorylating MAP3K7/TAK1 and MAP3K5, and by attenuating the association between MAP3K7/TAK1 and MAP2K4 or MAP2K6; Protein phosphatases, Mg2+/Mn2+ dependent (360 aa)
DROSHARibonuclease 3; Ribonuclease III double-stranded (ds) RNA-specific endoribonuclease that is involved in the initial step of microRNA (miRNA) biogenesis. Component of the microprocessor complex that is required to process primary miRNA transcripts (pri-miRNAs) to release precursor miRNA (pre-miRNA) in the nucleus. Within the microprocessor complex, DROSHA cleaves the 3’ and 5’ strands of a stem-loop in pri-miRNAs (processing center 11 bp from the dsRNA- ssRNA junction) to release hairpin-shaped pre-miRNAs that are subsequently cut by the cytoplasmic DICER to generate mature miRNAs. Invo [...] (1374 aa)
RUVBL2RuvB-like 2; Involved in the endoplasmic reticulum (ER)-associated degradation (ERAD) pathway where it negatively regulates expression of ER stress response genes; Belongs to the RuvB family (463 aa)
PPM1KProtein phosphatase 1K, mitochondrial; Regulates the mitochondrial permeability transition pore and is essential for cellular survival and development; Belongs to the PP2C family (372 aa)
Your Current Organism:
Homo sapiens
NCBI taxonomy Id: 9606
Other names: H. sapiens, Homo sapiens, human, man
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