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Protein
Submitted name:

Guanine nucleotide-binding protein subunit beta-2-like 1

Gene

GNB2L1

Organism
Homo sapiens (Human)
Status
Unreviewed-Annotation score: Annotation score: 1 out of 5-Experimental evidence at protein leveli

Functioni

Enzyme and pathway databases

SignaLinkiD6RAC2.

Names & Taxonomyi

Protein namesi
Submitted name:
Guanine nucleotide-binding protein subunit beta-2-like 1Imported
Gene namesi
Name:GNB2L1Imported
OrganismiHomo sapiens (Human)Imported
Taxonomic identifieri9606 [NCBI]
Taxonomic lineageiEukaryotaMetazoaChordataCraniataVertebrataEuteleostomiMammaliaEutheriaEuarchontogliresPrimatesHaplorrhiniCatarrhiniHominidaeHomo
ProteomesiUP000005640 Componenti: Chromosome 5

Organism-specific databases

HGNCiHGNC:4399. GNB2L1.

PTM / Processingi

Proteomic databases

PRIDEiD6RAC2.

Expressioni

Gene expression databases

BgeeiD6RAC2.
ExpressionAtlasiD6RAC2. baseline and differential.

Structurei

3D structure databases

ProteinModelPortaliD6RAC2.
SMRiD6RAC2. Positions 2-266.
ModBaseiSearch...
MobiDBiSearch...

Family & Domainsi

Keywords - Domaini

RepeatUniRule annotation, WD repeatUniRule annotation

Phylogenomic databases

GeneTreeiENSGT00770000120570.
HOGENOMiHOG000091643.

Family and domain databases

Gene3Di2.130.10.10. 1 hit.
InterProiIPR020472. G-protein_beta_WD-40_rep.
IPR015943. WD40/YVTN_repeat-like_dom.
IPR001680. WD40_repeat.
IPR019775. WD40_repeat_CS.
IPR017986. WD40_repeat_dom.
[Graphical view]
PfamiPF00400. WD40. 6 hits.
[Graphical view]
PRINTSiPR00320. GPROTEINBRPT.
SMARTiSM00320. WD40. 6 hits.
[Graphical view]
SUPFAMiSSF50978. SSF50978. 1 hit.
PROSITEiPS00678. WD_REPEATS_1. 3 hits.
PS50082. WD_REPEATS_2. 5 hits.
PS50294. WD_REPEATS_REGION. 1 hit.
[Graphical view]

Sequencei

Sequence statusi: Complete.

D6RAC2-1 [UniParc]FASTAAdd to basket

« Hide

        10         20         30         40         50
MTEQMTLRGT LKGHNGWVTQ IATTPQFPDM ILSASRDKTI IMWKLTRDET
60 70 80 90 100
NYGIPQRALR GHSHFVSDVV ISSDGQFALS GSWDGTLRLW DLTTQDESHS
110 120 130 140 150
EWVSCVRFSP NSSNPIIVSC GWDKLVKVWN LANCKLKTNH IGHTGYLNTV
160 170 180 190 200
TVSPDGSLCA SGGKDGQAML WDLNEGKHLY TLDGGDIINA LCFSPNRYWL
210 220 230 240 250
CAATGPSIKI WDLEGKIIVD ELKQEVISTS SKAEPPQCTS LAWSADGQTL
260
FAGYTDNLVR VWQVTIGTR
Length:269
Mass (Da):29,751
Last modified:July 13, 2010 - v1
Checksum:i1C7BB50A0D3AE2F7
GO

Sequence databases

Select the link destinations:
EMBLi
GenBanki
DDBJi
Links Updated
AC008443 Genomic DNA. No translation available.
KC877161 Genomic DNA. No translation available.

Genome annotation databases

EnsembliENST00000511900; ENSP00000422768; ENSG00000204628.

Cross-referencesi

Sequence databases

Select the link destinations:
EMBLi
GenBanki
DDBJi
Links Updated
AC008443 Genomic DNA. No translation available.
KC877161 Genomic DNA. No translation available.

3D structure databases

ProteinModelPortaliD6RAC2.
SMRiD6RAC2. Positions 2-266.
ModBaseiSearch...
MobiDBiSearch...

Proteomic databases

PRIDEiD6RAC2.

Protocols and materials databases

Structural Biology KnowledgebaseSearch...

Genome annotation databases

EnsembliENST00000511900; ENSP00000422768; ENSG00000204628.

Organism-specific databases

HGNCiHGNC:4399. GNB2L1.
GenAtlasiSearch...

Phylogenomic databases

GeneTreeiENSGT00770000120570.
HOGENOMiHOG000091643.

Enzyme and pathway databases

SignaLinkiD6RAC2.

Miscellaneous databases

ChiTaRSiGNB2L1. human.
NextBioi35493216.

Gene expression databases

BgeeiD6RAC2.
ExpressionAtlasiD6RAC2. baseline and differential.

Family and domain databases

Gene3Di2.130.10.10. 1 hit.
InterProiIPR020472. G-protein_beta_WD-40_rep.
IPR015943. WD40/YVTN_repeat-like_dom.
IPR001680. WD40_repeat.
IPR019775. WD40_repeat_CS.
IPR017986. WD40_repeat_dom.
[Graphical view]
PfamiPF00400. WD40. 6 hits.
[Graphical view]
PRINTSiPR00320. GPROTEINBRPT.
SMARTiSM00320. WD40. 6 hits.
[Graphical view]
SUPFAMiSSF50978. SSF50978. 1 hit.
PROSITEiPS00678. WD_REPEATS_1. 3 hits.
PS50082. WD_REPEATS_2. 5 hits.
PS50294. WD_REPEATS_REGION. 1 hit.
[Graphical view]
ProtoNetiSearch...

Publicationsi

« Hide 'large scale' publications
  1. "The DNA sequence and comparative analysis of human chromosome 5."
    Schmutz J., Martin J., Terry A., Couronne O., Grimwood J., Lowry S., Gordon L.A., Scott D., Xie G., Huang W., Hellsten U., Tran-Gyamfi M., She X., Prabhakar S., Aerts A., Altherr M., Bajorek E., Black S.
    , Branscomb E., Caoile C., Challacombe J.F., Chan Y.M., Denys M., Detter J.C., Escobar J., Flowers D., Fotopulos D., Glavina T., Gomez M., Gonzales E., Goodstein D., Grigoriev I., Groza M., Hammon N., Hawkins T., Haydu L., Israni S., Jett J., Kadner K., Kimball H., Kobayashi A., Lopez F., Lou Y., Martinez D., Medina C., Morgan J., Nandkeshwar R., Noonan J.P., Pitluck S., Pollard M., Predki P., Priest J., Ramirez L., Retterer J., Rodriguez A., Rogers S., Salamov A., Salazar A., Thayer N., Tice H., Tsai M., Ustaszewska A., Vo N., Wheeler J., Wu K., Yang J., Dickson M., Cheng J.-F., Eichler E.E., Olsen A., Pennacchio L.A., Rokhsar D.S., Richardson P., Lucas S.M., Myers R.M., Rubin E.M.
    Nature 431:268-274(2003) [PubMed] [Europe PMC] [Abstract]
    Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
  2. "Immunoaffinity profiling of tyrosine phosphorylation in cancer cells."
    Rush J., Moritz A., Lee K.A., Guo A., Goss V.L., Spek E.J., Zhang H., Zha X.M., Polakiewicz R.D., Comb M.J.
    Nat. Biotechnol. 23:94-101(2004) [PubMed] [Europe PMC] [Abstract]
    Cited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
  3. "Lys-N and trypsin cover complementary parts of the phosphoproteome in a refined SCX-based approach."
    Gauci S., Helbig A.O., Slijper M., Krijgsveld J., Heck A.J., Mohammed S.
    Anal. Chem. 81:4493-4501(2008) [PubMed] [Europe PMC] [Abstract]
    Cited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
  4. Cited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
  5. "System-wide temporal characterization of the proteome and phosphoproteome of human embryonic stem cell differentiation."
    Rigbolt K.T., Prokhorova T.A., Akimov V., Henningsen J., Johansen P.T., Kratchmarova I., Kassem M., Mann M., Olsen J.V., Blagoev B.
    Sci. Signal. 4:rs3-RS3(2010) [PubMed] [Europe PMC] [Abstract]
    Cited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
  6. Ensembl
    Submitted (JUN-2011) to UniProtKB
    Cited for: IDENTIFICATION.
  7. "Comparative large scale characterization of plant versus mammal proteins reveals similar and idiosyncratic N-?-acetylation features."
    Bienvenut W.V., Sumpton D., Martinez A., Lilla S., Espagne C., Meinnel T., Giglione C.
    Mol. Cell. Proteomics 11:M111.015131-M111.015131(2011) [PubMed] [Europe PMC] [Abstract]
    Cited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
  8. Cited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].
  9. "An enzyme assisted RP-RPLC approach for in-depth analysis of human liver phosphoproteome."
    Bian Y., Song C., Cheng K., Dong M., Wang F., Huang J., Sun D., Wang L., Ye M., Zou H.
    J. Proteomics 96:253-262(2013) [PubMed] [Europe PMC] [Abstract]
    Cited for: IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS].

Entry informationi

Entry nameiD6RAC2_HUMAN
AccessioniPrimary (citable) accession number: D6RAC2
Entry historyi
Integrated into UniProtKB/TrEMBL: July 13, 2010
Last sequence update: July 13, 2010
Last modified: April 1, 2015
This is version 36 of the entry and version 1 of the sequence. [Complete history]
Entry statusiUnreviewed (UniProtKB/TrEMBL)
DisclaimerAny medical or genetic information present in this entry is provided for research, educational and informational purposes only. It is not in any way intended to be used as a substitute for professional medical advice, diagnosis, treatment or care.

Miscellaneousi

Caution

The sequence shown here is derived from an Ensembl automatic analysis pipeline and should be considered as preliminary data.Imported

Keywords - Technical termi

Complete proteome, Proteomics identificationMaxQB annotation, Reference proteomeImported

External Data

Dasty 3

Similar proteinsi

Links to similar proteins from the UniProt Reference Clusters (UniRef) at 100%, 90% and 50% sequence identity:
100%UniRef100 combines identical sequences and sub-fragments with 11 or more residues from any organism into Uniref entry.
90%UniRef90 is built by clustering UniRef100 sequences that have at least 90% sequence identity to, and 80% overlap with, the longest sequence (a.k.a seed sequence).
50%UniRef50 is built by clustering UniRef90 seed sequences that have at least 50% sequence identity to, and 80% overlap with, the longest sequence in the cluster.