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DELLA protein RGA (GAI-related sequence) (GRAS family protein 10) (AtGRAS-10) (Repressor on the ga1-3 mutant) (Restoration of growth on ammonia protein 1)

 RGA_ARATH               Reviewed;         587 AA.
Q9SLH3; O23642; O23725; Q941D4;
22-NOV-2005, integrated into UniProtKB/Swiss-Prot.
01-MAY-2000, sequence version 1.
25-OCT-2017, entry version 115.
RecName: Full=DELLA protein RGA;
AltName: Full=GAI-related sequence;
AltName: Full=GRAS family protein 10;
Short=AtGRAS-10;
AltName: Full=Repressor on the ga1-3 mutant;
AltName: Full=Restoration of growth on ammonia protein 1;
Name=RGA; Synonyms=GRS, RGA1; OrderedLocusNames=At2g01570;
ORFNames=F2I9.19;
Arabidopsis thaliana (Mouse-ear cress).
Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
Spermatophyta; Magnoliophyta; eudicotyledons; Gunneridae;
Pentapetalae; rosids; malvids; Brassicales; Brassicaceae; Camelineae;
Arabidopsis.
NCBI_TaxID=3702;
[1]
NUCLEOTIDE SEQUENCE [MRNA], AND TISSUE SPECIFICITY.
STRAIN=cv. Columbia;
PubMed=9237632; DOI=10.1016/S0014-5793(97)00590-5;
Truong H.-N., Caboche M., Daniel-Vedele F.;
"Sequence and characterization of two Arabidopsis thaliana cDNAs
isolated by functional complementation of a yeast gln3 gdh1 mutant.";
FEBS Lett. 410:213-218(1997).
[2]
NUCLEOTIDE SEQUENCE [MRNA].
STRAIN=cv. Landsberg erecta;
PubMed=9389651; DOI=10.1101/gad.11.23.3194;
Peng J., Carol P., Richards D.E., King K.E., Cowling R.J.,
Murphy G.P., Harberd N.P.;
"The Arabidopsis GAI gene defines a signaling pathway that negatively
regulates gibberellin responses.";
Genes Dev. 11:3194-3205(1997).
[3]
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=cv. Columbia;
PubMed=10617197; DOI=10.1038/45471;
Lin X., Kaul S., Rounsley S.D., Shea T.P., Benito M.-I., Town C.D.,
Fujii C.Y., Mason T.M., Bowman C.L., Barnstead M.E., Feldblyum T.V.,
Buell C.R., Ketchum K.A., Lee J.J., Ronning C.M., Koo H.L.,
Moffat K.S., Cronin L.A., Shen M., Pai G., Van Aken S., Umayam L.,
Tallon L.J., Gill J.E., Adams M.D., Carrera A.J., Creasy T.H.,
Goodman H.M., Somerville C.R., Copenhaver G.P., Preuss D.,
Nierman W.C., White O., Eisen J.A., Salzberg S.L., Fraser C.M.,
Venter J.C.;
"Sequence and analysis of chromosome 2 of the plant Arabidopsis
thaliana.";
Nature 402:761-768(1999).
[4]
GENOME REANNOTATION.
STRAIN=cv. Columbia;
The Arabidopsis Information Portal (Araport);
Submitted (MAY-2016) to the EMBL/GenBank/DDBJ databases.
[5]
NUCLEOTIDE SEQUENCE [LARGE SCALE MRNA].
STRAIN=cv. Columbia;
PubMed=14593172; DOI=10.1126/science.1088305;
Yamada K., Lim J., Dale J.M., Chen H., Shinn P., Palm C.J.,
Southwick A.M., Wu H.C., Kim C.J., Nguyen M., Pham P.K., Cheuk R.F.,
Karlin-Newmann G., Liu S.X., Lam B., Sakano H., Wu T., Yu G.,
Miranda M., Quach H.L., Tripp M., Chang C.H., Lee J.M., Toriumi M.J.,
Chan M.M., Tang C.C., Onodera C.S., Deng J.M., Akiyama K., Ansari Y.,
Arakawa T., Banh J., Banno F., Bowser L., Brooks S.Y., Carninci P.,
Chao Q., Choy N., Enju A., Goldsmith A.D., Gurjal M., Hansen N.F.,
Hayashizaki Y., Johnson-Hopson C., Hsuan V.W., Iida K., Karnes M.,
Khan S., Koesema E., Ishida J., Jiang P.X., Jones T., Kawai J.,
Kamiya A., Meyers C., Nakajima M., Narusaka M., Seki M., Sakurai T.,
Satou M., Tamse R., Vaysberg M., Wallender E.K., Wong C., Yamamura Y.,
Yuan S., Shinozaki K., Davis R.W., Theologis A., Ecker J.R.;
"Empirical analysis of transcriptional activity in the Arabidopsis
genome.";
Science 302:842-846(2003).
[6]
FUNCTION, SUBCELLULAR LOCATION, TISSUE SPECIFICITY, AND MUTAGENESIS OF
ASP-478.
PubMed=9490740; DOI=10.1105/tpc.10.2.155;
Silverstone A.L., Ciampaglio C.N., Sun T.-P.;
"The Arabidopsis RGA gene encodes a transcriptional regulator
repressing the gibberellin signal transduction pathway.";
Plant Cell 10:155-169(1998).
[7]
FUNCTION.
PubMed=11606551;
King K.E., Moritz T., Harberd N.P.;
"Gibberellins are not required for normal stem growth in Arabidopsis
thaliana in the absence of GAI and RGA.";
Genetics 159:767-776(2001).
[8]
FUNCTION.
PubMed=11606552;
Dill A., Sun T.-P.;
"Synergistic derepression of gibberellin signaling by removing RGA and
GAI function in Arabidopsis thaliana.";
Genetics 159:777-785(2001).
[9]
DOMAIN, AND MUTAGENESIS OF 44-ASP--ALA-60.
PubMed=11717468; DOI=10.1073/pnas.251534098;
Dill A., Jung H.-S., Sun T.-P.;
"The DELLA motif is essential for gibberellin-induced degradation of
RGA.";
Proc. Natl. Acad. Sci. U.S.A. 98:14162-14167(2001).
[10]
TISSUE SPECIFICITY.
PubMed=11877383; DOI=10.1101/gad.969002;
Lee S., Cheng H., King K.E., Wang W., He Y., Hussain A., Lo J.,
Harberd N.P., Peng J.;
"Gibberellin regulates Arabidopsis seed germination via RGL2, a
GAI/RGA-like gene whose expression is up-regulated following
imbibition.";
Genes Dev. 16:646-658(2002).
[11]
FUNCTION.
PubMed=12610625; DOI=10.1038/nature01387;
Fu X., Harberd N.P.;
"Auxin promotes Arabidopsis root growth by modulating gibberellin
response.";
Nature 421:740-743(2003).
[12]
DEGRADATION.
PubMed=12724538; DOI=10.1105/tpc.010827;
McGinnis K.M., Thomas S.G., Soule J.D., Strader L.C., Zale J.M.,
Sun T.-P., Steber C.M.;
"The Arabidopsis SLEEPY1 gene encodes a putative F-box subunit of an
SCF E3 ubiquitin ligase.";
Plant Cell 15:1120-1130(2003).
[13]
FUNCTION.
PubMed=14615596; DOI=10.1105/tpc.015685;
Achard P., Vriezen W.H., Van Der Straeten D., Harberd N.P.;
"Ethylene regulates Arabidopsis development via the modulation of
DELLA protein growth repressor function.";
Plant Cell 15:2816-2825(2003).
[14]
FUNCTION.
PubMed=14973286; DOI=10.1242/dev.00992;
Cheng H., Qin L., Lee S., Fu X., Richards D.E., Cao D., Luo D.,
Harberd N.P., Peng J.;
"Gibberellin regulates Arabidopsis floral development via suppression
of DELLA protein function.";
Development 131:1055-1064(2004).
[15]
PROBABLE UBIQUITINATION, AND INTERACTION WITH GID2.
PubMed=15155881; DOI=10.1105/tpc.020958;
Dill A., Thomas S.G., Hu J., Steber C.M., Sun T.-P.;
"The Arabidopsis F-box protein SLEEPY1 targets gibberellin signaling
repressors for gibberellin-induced degradation.";
Plant Cell 16:1392-1405(2004).
[16]
INTERACTION WITH GID2, AND PHOSPHORYLATION.
PubMed=15161962; DOI=10.1105/tpc.021386;
Fu X., Richards D.E., Fleck B., Xie D., Burton N., Harberd N.P.;
"The Arabidopsis mutant sleepy1gar2-1 protein promotes plant growth by
increasing the affinity of the SCFSLY1 E3 ubiquitin ligase for DELLA
protein substrates.";
Plant Cell 16:1406-1418(2004).
[17]
INTERACTION WITH GID2.
PubMed=15173565; DOI=10.1104/pp.104.039578;
Tyler L., Thomas S.G., Hu J., Dill A., Alonso J.M., Ecker J.R.,
Sun T.-P.;
"Della proteins and gibberellin-regulated seed germination and floral
development in Arabidopsis.";
Plant Physiol. 135:1008-1019(2004).
[18]
FUNCTION.
PubMed=15128937; DOI=10.1073/pnas.0402377101;
Yu H., Ito T., Zhao Y., Peng J., Kumar P., Meyerowitz E.M.;
"Floral homeotic genes are targets of gibberellin signaling in flower
development.";
Proc. Natl. Acad. Sci. U.S.A. 101:7827-7832(2004).
[19]
FUNCTION.
PubMed=16034591; DOI=10.1007/s00425-005-0057-3;
Cao D., Hussain A., Cheng H., Peng J.;
"Loss of function of four DELLA genes leads to light- and gibberellin-
independent seed germination in Arabidopsis.";
Planta 223:105-113(2005).
[20]
MUTAGENESIS OF GLN-341.
PubMed=15734906; DOI=10.1104/pp.104.057646;
Muangprom A., Thomas S.-G., Sun T.-P., Osborn T.C.;
"A novel dwarfing mutation in a green revolution gene from Brassica
rapa.";
Plant Physiol. 137:931-938(2005).
[21]
INTERACTION WITH GID1A; GID1B AND GID1C.
PubMed=16709201; DOI=10.1111/j.1365-313X.2006.02748.x;
Nakajima M., Shimada A., Takashi Y., Kim Y.C., Park S.H.,
Ueguchi-Tanaka M., Suzuki H., Katoh E., Iuchi S., Kobayashi M.,
Maeda T., Matsuoka M., Yamaguchi I.;
"Identification and characterization of Arabidopsis gibberellin
receptors.";
Plant J. 46:880-889(2006).
[22]
FUNCTION.
PubMed=17933900; DOI=10.1105/tpc.107.054999;
Zentella R., Zhang Z.L., Park M., Thomas S.G., Endo A., Murase K.,
Fleet C.M., Jikumaru Y., Nambara E., Kamiya Y., Sun T.P.;
"Global analysis of della direct targets in early gibberellin
signaling in Arabidopsis.";
Plant Cell 19:3037-3057(2007).
[23]
FUNCTION, TISSUE SPECIFICITY, SUBCELLULAR LOCATION, AND INTERACTION
WITH PIF1; PIF4; PIF6 AND SPT.
STRAIN=cv. Landsberg erecta;
PubMed=20093430; DOI=10.1093/molbev/msq012;
Gallego-Bartolome J., Minguet E.G., Marin J.A., Prat S.,
Blazquez M.A., Alabadi D.;
"Transcriptional diversification and functional conservation between
DELLA proteins in Arabidopsis.";
Mol. Biol. Evol. 27:1247-1256(2010).
[24]
INTERACTION WITH MYC2.
PubMed=22669881; DOI=10.1105/tpc.112.098749;
Hong G.J., Xue X.Y., Mao Y.B., Wang L.J., Chen X.Y.;
"Arabidopsis MYC2 interacts with DELLA proteins in regulating
sesquiterpene synthase gene expression.";
Plant Cell 24:2635-2648(2012).
[25]
INTERACTION WITH BOI; BRG1; BRG2 AND BRG3, AND DISRUPTION PHENOTYPE.
PubMed=23482857; DOI=10.1105/tpc.112.108951;
Park J., Nguyen K.T., Park E., Jeon J.S., Choi G.;
"DELLA proteins and their interacting RING Finger proteins repress
gibberellin responses by binding to the promoters of a subset of
gibberellin-responsive genes in Arabidopsis.";
Plant Cell 25:927-943(2013).
[26]
INTERACTION WITH NFYC9.
PubMed=25105952; DOI=10.1038/ncomms5601;
Hou X., Zhou J., Liu C., Liu L., Shen L., Yu H.;
"Nuclear factor Y-mediated H3K27me3 demethylation of the SOC1 locus
orchestrates flowering responses of Arabidopsis.";
Nat. Commun. 5:4601-4601(2014).
[27]
INTERACTION WITH TOPP4, AND PHOSPHORYLATION.
PubMed=25010794; DOI=10.1371/journal.pgen.1004464;
Qin Q., Wang W., Guo X., Yue J., Huang Y., Xu X., Li J., Hou S.;
"Arabidopsis DELLA protein degradation is controlled by a type-one
protein phosphatase, TOPP4.";
PLoS Genet. 10:E1004464-E1004464(2014).
-!- FUNCTION: Probable transcriptional regulator that acts as a
repressor of the gibberellin (GA) signaling pathway. Probably acts
by participating in large multiprotein complexes that repress
transcription of GA-inducible genes. Positively regulates XERICO
expression in seeds. Upon GA application, it is degraded by the
proteasome, allowing the GA signaling pathway. Compared to other
DELLA proteins, it is the most sensitive to GA application. No
effect of the BOI proteins on its stability. Its activity is
probably regulated by other phytohormones such as auxin and
ethylene, attenuation of auxin transport delaying its GA-induced
degradation. {ECO:0000269|PubMed:11606551,
ECO:0000269|PubMed:11606552, ECO:0000269|PubMed:12610625,
ECO:0000269|PubMed:14615596, ECO:0000269|PubMed:14973286,
ECO:0000269|PubMed:15128937, ECO:0000269|PubMed:16034591,
ECO:0000269|PubMed:17933900, ECO:0000269|PubMed:20093430,
ECO:0000269|PubMed:9490740}.
-!- SUBUNIT: Interacts directly with the GID2/SLY1 component of the
SCF(GID2) complex. Interacts (via N-terminus) with GID1A, GID1B
and GID1B (via N-terminus). Binds to bHLH transcription factors
such as MYC2, PIF1, PIF4, PIF6 and SPT. Interacts with the BOI
proteins BOI, BRG1, BRG2 and BRG3. Interacts with NFYC9
(PubMed:25105952). Interacts with TOPP4 (PubMed:25010794).
{ECO:0000269|PubMed:15155881, ECO:0000269|PubMed:15161962,
ECO:0000269|PubMed:15173565, ECO:0000269|PubMed:16709201,
ECO:0000269|PubMed:20093430, ECO:0000269|PubMed:22669881,
ECO:0000269|PubMed:23482857, ECO:0000269|PubMed:25010794,
ECO:0000269|PubMed:25105952}.
-!- INTERACTION:
Q8S307:BZR1; NbExp=5; IntAct=EBI-963624, EBI-1803261;
Q39057:CO; NbExp=3; IntAct=EBI-963624, EBI-1639724;
Q9MAA7:GID1A; NbExp=10; IntAct=EBI-963624, EBI-963597;
Q9LYC1:GID1B; NbExp=8; IntAct=EBI-963624, EBI-963686;
Q940G6:GID1C; NbExp=8; IntAct=EBI-963624, EBI-963794;
Q9STX3:GID2; NbExp=4; IntAct=EBI-963624, EBI-619033;
O80536:PIF3; NbExp=6; IntAct=EBI-963624, EBI-625701;
Q8W2F3:PIF4; NbExp=4; IntAct=EBI-963624, EBI-625716;
Q9LPR8:SCL3; NbExp=3; IntAct=EBI-963624, EBI-4429250;
-!- SUBCELLULAR LOCATION: Nucleus {ECO:0000269|PubMed:20093430,
ECO:0000269|PubMed:9490740}.
-!- TISSUE SPECIFICITY: Ubiquitously expressed. Expressed in roots,
rosette leaves, bolting and mature stems, young and mature
siliques, flower buds and influorescences.
{ECO:0000269|PubMed:11877383, ECO:0000269|PubMed:20093430,
ECO:0000269|PubMed:9237632, ECO:0000269|PubMed:9490740}.
-!- DOMAIN: The DELLA motif is required for its GA-induced degradation
but not for the interaction with GID2.
{ECO:0000269|PubMed:11717468}.
-!- PTM: Phosphorylated. Phosphorylation may increase the interaction
with GID2. {ECO:0000269|PubMed:15161962}.
-!- PTM: Gibberellin (GA) induces dephosphorylation of RGA by TOPP4
and subsequent degradation by the proteasomal pathway.
{ECO:0000269|PubMed:25010794}.
-!- PTM: Ubiquitinated. Upon GA application it is ubiquitinated by the
SCF(GID2) complex, leading to its subsequent degradation.
-!- DISRUPTION PHENOTYPE: Rga, gai, rgl1, rgl2 and rgl3 pentuple
mutant displays constitutive GA responses even in the absence of
GA treatment. {ECO:0000269|PubMed:23482857}.
-!- SIMILARITY: Belongs to the GRAS family. DELLA subfamily.
{ECO:0000305}.
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EMBL; Y11336; CAA72177.1; -; mRNA.
EMBL; Y15194; CAA75493.1; -; mRNA.
EMBL; AC005560; AAC67333.1; -; Genomic_DNA.
EMBL; CP002685; AEC05469.1; -; Genomic_DNA.
EMBL; AY052239; AAK97709.1; -; mRNA.
EMBL; AY054160; AAL06821.1; -; mRNA.
EMBL; BT010467; AAQ65090.1; -; mRNA.
PIR; D84426; D84426.
RefSeq; NP_178266.1; NM_126218.3.
UniGene; At.24012; -.
ProteinModelPortal; Q9SLH3; -.
SMR; Q9SLH3; -.
BioGrid; 89; 67.
DIP; DIP-32983N; -.
IntAct; Q9SLH3; 24.
MINT; MINT-8068545; -.
STRING; 3702.AT2G01570.1; -.
iPTMnet; Q9SLH3; -.
PaxDb; Q9SLH3; -.
EnsemblPlants; AT2G01570.1; AT2G01570.1; AT2G01570.
GeneID; 814686; -.
Gramene; AT2G01570.1; AT2G01570.1; AT2G01570.
KEGG; ath:AT2G01570; -.
Araport; AT2G01570; -.
TAIR; locus:2005516; AT2G01570.
eggNOG; ENOG410IQYH; Eukaryota.
eggNOG; ENOG410YBFY; LUCA.
HOGENOM; HOG000238577; -.
InParanoid; Q9SLH3; -.
KO; K14494; -.
OMA; PPQNQID; -.
OrthoDB; EOG0936075R; -.
PhylomeDB; Q9SLH3; -.
PRO; PR:Q9SLH3; -.
Proteomes; UP000006548; Chromosome 2.
Genevisible; Q9SLH3; AT.
GO; GO:0005634; C:nucleus; IDA:TAIR.
GO; GO:0043565; F:sequence-specific DNA binding; IPI:TAIR.
GO; GO:0003700; F:transcription factor activity, sequence-specific DNA binding; IDA:TAIR.
GO; GO:0000989; F:transcription factor activity, transcription factor binding; IEA:InterPro.
GO; GO:0044212; F:transcription regulatory region DNA binding; IPI:TAIR.
GO; GO:0009740; P:gibberellic acid mediated signaling pathway; TAS:TAIR.
GO; GO:0033206; P:meiotic cytokinesis; IMP:TAIR.
GO; GO:0007275; P:multicellular organism development; IEA:UniProtKB-KW.
GO; GO:1905614; P:negative regulation of developmental vegetative growth; IGI:CAFA.
GO; GO:0009938; P:negative regulation of gibberellic acid mediated signaling pathway; IGI:CAFA.
GO; GO:1905622; P:negative regulation of leaf development; IMP:CAFA.
GO; GO:1900033; P:negative regulation of trichome patterning; IMP:CAFA.
GO; GO:0010628; P:positive regulation of gene expression; IMP:CAFA.
GO; GO:0042176; P:regulation of protein catabolic process; IMP:TAIR.
GO; GO:0006355; P:regulation of transcription, DNA-templated; TAS:TAIR.
GO; GO:0010218; P:response to far red light; IEP:TAIR.
GO; GO:0009739; P:response to gibberellin; IMP:CAFA.
GO; GO:0009863; P:salicylic acid mediated signaling pathway; IBA:GO_Central.
GO; GO:0006351; P:transcription, DNA-templated; IEA:UniProtKB-KW.
InterPro; IPR030006; TF_DELLA.
InterPro; IPR021914; TF_DELLA_N.
InterPro; IPR005202; TF_GRAS.
PANTHER; PTHR31636:SF47; PTHR31636:SF47; 1.
Pfam; PF12041; DELLA; 1.
Pfam; PF03514; GRAS; 1.
PROSITE; PS50985; GRAS; 1.
1: Evidence at protein level;
Complete proteome; Developmental protein;
Gibberellin signaling pathway; Nucleus; Phosphoprotein;
Reference proteome; Repressor; Transcription;
Transcription regulation; Ubl conjugation.
CHAIN 1 587 DELLA protein RGA.
/FTId=PRO_0000132234.
MOTIF 44 48 DELLA motif.
MOTIF 66 70 LEXLE motif.
MOTIF 89 93 VHYNP motif.
MOTIF 323 327 VHIID.
MOTIF 423 427 LXXLL motif.
COMPBIAS 190 200 Poly-Thr.
MUTAGEN 44 60 Missing: In rga-delta17; induces
resistance to GA-induced degradation but
does not affect nuclear localization.
{ECO:0000269|PubMed:11717468}.
MUTAGEN 341 341 Q->R: Causes a semidwarf phenotype by
abolishing the interaction with GID2
leading to prevent its degradation.
{ECO:0000269|PubMed:15734906}.
MUTAGEN 478 478 D->N: In rga-2; partially suppresses
phenotypic defects of GA-mutant ga1-3.
{ECO:0000269|PubMed:9490740}.
CONFLICT 86 86 T -> A (in Ref. 2; CAA75493).
{ECO:0000305}.
CONFLICT 139 139 K -> E (in Ref. 2; CAA75493).
{ECO:0000305}.
CONFLICT 203 203 G -> A (in Ref. 1; CAA72177 and 2;
CAA75493). {ECO:0000305}.
CONFLICT 209 209 V -> D (in Ref. 5; AAK97709).
{ECO:0000305}.
CONFLICT 383 383 I -> V (in Ref. 2; CAA75493).
{ECO:0000305}.
CONFLICT 587 587 Y -> H (in Ref. 1; CAA72177).
{ECO:0000305}.
SEQUENCE 587 AA; 64035 MW; FC92E7F9408072AA CRC64;
MKRDHHQFQG RLSNHGTSSS SSSISKDKMM MVKKEEDGGG NMDDELLAVL GYKVRSSEMA
EVALKLEQLE TMMSNVQEDG LSHLATDTVH YNPSELYSWL DNMLSELNPP PLPASSNGLD
PVLPSPEICG FPASDYDLKV IPGNAIYQFP AIDSSSSSNN QNKRLKSCSS PDSMVTSTST
GTQIGGVIGT TVTTTTTTTT AAGESTRSVI LVDSQENGVR LVHALMACAE AIQQNNLTLA
EALVKQIGCL AVSQAGAMRK VATYFAEALA RRIYRLSPPQ NQIDHCLSDT LQMHFYETCP
YLKFAHFTAN QAILEAFEGK KRVHVIDFSM NQGLQWPALM QALALREGGP PTFRLTGIGP
PAPDNSDHLH EVGCKLAQLA EAIHVEFEYR GFVANSLADL DASMLELRPS DTEAVAVNSV
FELHKLLGRP GGIEKVLGVV KQIKPVIFTV VEQESNHNGP VFLDRFTESL HYYSTLFDSL
EGVPNSQDKV MSEVYLGKQI CNLVACEGPD RVERHETLSQ WGNRFGSSGL APAHLGSNAF
KQASMLLSVF NSGQGYRVEE SNGCLMLGWH TRPLITTSAW KLSTAAY


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U2153r CLIA CCN family member 5,CCN family protein COP-1,Ccn5,Connective tissue growth factor-like protein,Cop1,Ctgfl,CTGF-L,Rat,Rattus norvegicus,Wisp2,WISP-2,WNT1-inducible-signaling pathway protein 2 96T
E2153r ELISA kit CCN family member 5,CCN family protein COP-1,Ccn5,Connective tissue growth factor-like protein,Cop1,Ctgfl,CTGF-L,Rat,Rattus norvegicus,Wisp2,WISP-2,WNT1-inducible-signaling pathway protein 96T
E2153r ELISA CCN family member 5,CCN family protein COP-1,Ccn5,Connective tissue growth factor-like protein,Cop1,Ctgfl,CTGF-L,Rat,Rattus norvegicus,Wisp2,WISP-2,WNT1-inducible-signaling pathway protein 2 96T
U2153r CLIA kit CCN family member 5,CCN family protein COP-1,Ccn5,Connective tissue growth factor-like protein,Cop1,Ctgfl,CTGF-L,Rat,Rattus norvegicus,Wisp2,WISP-2,WNT1-inducible-signaling pathway protein 2 96T
E2153h ELISA kit CCN family member 5,CCN5,Connective tissue growth factor-like protein,Connective tissue growth factor-related protein 58,CT58,CTGFL,CTGF-L,Homo sapiens,Human,UNQ228_PRO261,WISP2,WISP-2,WNT1 96T
U2153h CLIA kit CCN family member 5,CCN5,Connective tissue growth factor-like protein,Connective tissue growth factor-related protein 58,CT58,CTGFL,CTGF-L,Homo sapiens,Human,UNQ228_PRO261,WISP2,WISP-2,WNT1- 96T
U2153h CLIA CCN family member 5,CCN5,Connective tissue growth factor-like protein,Connective tissue growth factor-related protein 58,CT58,CTGFL,CTGF-L,Homo sapiens,Human,UNQ228_PRO261,WISP2,WISP-2,WNT1-induc 96T
E2153h ELISA CCN family member 5,CCN5,Connective tissue growth factor-like protein,Connective tissue growth factor-related protein 58,CT58,CTGFL,CTGF-L,Homo sapiens,Human,UNQ228_PRO261,WISP2,WISP-2,WNT1-indu 96T
29-705 MTMR1 is a member of the myotubularin related family of proteins. Members of this family contain the consensus sequence for the active site of protein tyrosine phosphatases.This gene encodes a member 0.1 mg
orb81252 Human p53 Mutant protein p53 Mutant Human Recombinant full length protein (a.a 135) expressed in E.coli, shows 81 kDa band on SDS-PAGE.The p53 Mutant is purified by proprietary chromatographic techniq 2
EIAAB25102 MORF4 family-associated protein 1,Mrfap1,Pgr1,Rat,Rattus norvegicus,T-cell activation protein-related protein
EIAAB13298 DRC3,Epidermal growth factor receptor kinase substrate 8-like protein 1,Epidermal growth factor receptor pathway substrate 8-related protein 1,EPS8L1,EPS8-like protein 1,EPS8R1,EPS8-related protein 1,
EIAAB13303 Epidermal growth factor receptor kinase substrate 8-like protein 3,Epidermal growth factor receptor pathway substrate 8-related protein 3,Eps8l3,EPS8-like protein 3,Eps8r3,EPS8-related protein 3,Mouse


 

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