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Sequence of BAK1_ARATH

EC Number:2.7.10.1

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
receptor protein-tyrosine kinase
Q94F62
Arabidopsis thaliana
615
68161
Reaction
ATP + a [protein]-L-tyrosine = ADP + a [protein]-L-tyrosine phosphate
Other sequences found for EC No. 2.7.10.1

General information:

Sequence
show sequence in fasta format
  0 MERRLMIPCF FWLILVLDLV LRVSGNAEGD ALSALKNSLA DPNKVLQSWD ATLVTPCTWF
 60 HVTCNSDNSV TRVDLGNANL SGQLVMQLGQ LPNLQYLELY SNNITGTIPE QLGNLTELVS
120 LDLYLNNLSG PIPSTLGRLK KLRFLRLNNN SLSGEIPRSL TAVLTLQVLD LSNNPLTGDI
180 PVNGSFSLFT PISFANTKLT PLPASPPPPI SPTPPSPAGS NRITGAIAGG VAAGAALLFA
240 VPAIALAWWR RKKPQDHFFD VPAEEDPEVH LGQLKRFSLR ELQVASDNFS NKNILGRGGF
300 GKVYKGRLAD GTLVAVKRLK EERTQGGELQ FQTEVEMISM AVHRNLLRLR GFCMTPTERL
360 LVYPYMANGS VASCLRERPE SQPPLDWPKR QRIALGSARG LAYLHDHCDP KIIHRDVKAA
420 NILLDEEFEA VVGDFGLAKL MDYKDTHVTT AVRGTIGHIA PEYLSTGKSS EKTDVFGYGV
480 MLLELITGQR AFDLARLAND DDVMLLDWVK GLLKEKKLEA LVDVDLQGNY KDEEVEQLIQ
540 VALLCTQSSP MERPKMSEVV RMLEGDGLAE RWEEWQKEEM FRQDFNYPTH HPAVSGWIIG
600 DSTSQIENEY PSGPR
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
519234
Hecht V.F.G.,Vielle-Calzada J.-P.,Hartog M.V.,Schmidt E.D.L.,Boutilier K.,Grossniklaus U.,de Vries S.C.
The Arabidopsis SOMATIC EMBRYOGENESIS RECEPTOR KINASE 1 gene is expressed in developing ovules and embryos and enhances embryogenic competence in culture.
Plant Physiol.
127
803-816
2001
519235
Li J.,Wen J.,Lease K.A.,Doke J.T.,Tax F.E.,Walker J.C.
BAK1, an Arabidopsis LRR receptor-like protein kinase, interacts with BRI1 and modulates brassinosteroid signaling.
Cell
110
213-222
2002
519236
Gou X.,He K.,Yang H.,Yuan T.,Lin H.,Clouse S.D.,Li J.
Genome-wide cloning and sequence analysis of leucine-rich repeat receptor-like protein kinase genes in Arabidopsis thaliana.
BMC Genomics
11
19-19
2010
519237
Mayer K.F.X.,Schueller C.,Wambutt R.,Murphy G.,Volckaert G.,Pohl T.,Duesterhoeft A.,Stiekema W.,Entian K.-D.,Terryn N.,Harris B.,Ansorge W.,Brandt P.,Grivell L.A.,Rieger M.,Weichselgartner M.,de Simone V.,Obermaier B.,Mache R.,Mueller M.,Kreis M.,Delseny M.,Puigdomenech P.,Watson M.,Schmidtheini T.,Reichert B.,Portetelle D.,Perez-Alonso M.,Boutry M.,Bancroft I.,Vos P.,Hoheisel J.,Zimmermann W.,Wedler H.,Ridley P.,Langham S.-A.,McCullagh B.,Bilham L.,Robben J.,van der Schueren J.,Grymonprez B.,Chuang Y.-J.,Vandenbussche F.,Braeken M.,Weltjens I.,Voet M.,Bastiaens I.,Aert R.,Defoor E.,Weitzenegger T.,Bothe G.,Ramsperger U.,Hilbert H.,Braun M.,Holzer E.,Brandt A.,Peters S.,van Staveren M.,Dirkse W.,Mooijman P.,Klein Lankhorst R.,Rose M.,Hauf J.,Koetter P.,Berneiser S.,Hempel S.,Feldpausch M.,Lamberth S.,Van den Daele H.,De Keyser A.,Buysshaert C.,Gielen J.,Villarroel R.,De Clercq R.,van Montagu M.,Rogers J.,Cronin A.,Quail M.A.,Bray-Allen S.,Clark L.,Doggett J.,Hall S.,Kay M.,Lennard N.,McLay K.,Mayes R.,Pettett A.,Rajandream M.A.,Lyne M.,Benes V.,Rechmann S.,Borkova D.,Bloecker H.,Scharfe M.,Grimm M.,Loehnert T.-H.,Dose S.,de Haan M.,Maarse A.C.,Schaefer M.,Mueller-Auer S.,Gabel C.,Fuchs M.,Fartmann B.,Granderath K.,Dauner D.,Herzl A.,Neumann S.,Argiriou A.,Vitale D.,Liguori R.,Piravandi E.,Massenet O.,Quigley F.,Clabauld G.,Muendlein A.,Felber R.,Schnabl S.,Hiller R.,Schmidt W.,Lecharny A.,Aubourg S.,Chefdor F.,Cooke R.,Berger C.,Monfort A.,Casacuberta E.,Gibbons T.,Weber N.,Vandenbol M.,Bargues M.,Terol J.,Torres A.,Perez-Perez A.,Purnelle B.,Bent E.,Johnson S.,Tacon D.,Jesse T.,Heijnen L.,Schwarz S.,Scholler P.,Heber S.,Francs P.,Bielke C.,Frishman D.,Haase D.,Lemcke K.,Mewes H.-W.,Stocker S.,Zaccaria P.,Bevan M.,Wilson R.K.,de la Bastide M.,Habermann K.,Parnell L.,Dedhia N.,Gnoj L.,Schutz K.,Huang E.,Spiegel L.,Sekhon M.,Murray J.,Sheet P.,Cordes M.,Abu-Threideh J.,Stoneking T.,Kalicki J.,Graves T.,Harmon G.,Edwards J.,Latreille P.,Courtney L.,Cloud J.,Abbott A.,Scott K.,Johnson D.,Minx P.,Bentley D.,Fulton B.,Miller N.,Greco T.,Kemp K.,Kramer J.,Fulton L.,Mardis E.,Dante M.,Pepin K.,Hillier L.W.,Nelson J.,Spieth J.,Ryan E.,Andrews S.,Geisel C.,Layman D.,Du H.,Ali J.,Berghoff A.,Jones K.,Drone K.,Cotton M.,Joshu C.,Antonoiu B.,Zidanic M.,Strong C.,Sun H.,Lamar B.,Yordan C.,Ma P.,Zhong J.,Preston R.,Vil D.,Shekher M.,Matero A.,Shah R.,Swaby I.K.,O'Shaughnessy A.,Rodriguez M.,Hoffman J.,Till S.,Granat S.,Shohdy N.,Hasegawa A.,Hameed A.,Lodhi M.,Johnson A.,Chen E.,Marra M.A.,Martienssen R.,McCombie W.R.
Sequence and analysis of chromosome 4 of the plant Arabidopsis thaliana.
Nature
402
769-777
1999
519238
Cheng C.Y.,Krishnakumar V.,Chan A.P.,Thibaud-Nissen F.,Schobel S.,Town C.D.
Araport11: a complete reannotation of the Arabidopsis thaliana reference genome.
Plant J.
89
789-804
2017
519239
Baudino S.,Hansen S.,Brettschneider R.,Hecht V.F.G.,Dresselhaus T.,Loerz H.,Dumas C.,Rogowsky P.M.
Molecular characterisation of two novel maize LRR receptor-like kinases, which belong to the SERK gene family.
Planta
213
1-10
2001
519240
Nam K.H.,Li J.
BRI1/BAK1, a receptor kinase pair mediating brassinosteroid signaling.
Cell
110
203-212
2002
519241
Russinova E.,Borst J.-W.,Kwaaitaal M.,Cano-Delgado A.,Yin Y.,Chory J.,de Vries S.C.
Heterodimerization and endocytosis of Arabidopsis brassinosteroid receptors BRI1 and AtSERK3 (BAK1).
Plant Cell
16
3216-3229
2004
519242
Wang X.,Goshe M.B.,Soderblom E.J.,Phinney B.S.,Kuchar J.A.,Li J.,Asami T.,Yoshida S.,Huber S.C.,Clouse S.D.
Identification and functional analysis of in vivo phosphorylation sites of the Arabidopsis BRASSINOSTEROID-INSENSITIVE1 receptor kinase.
Plant Cell
17
1685-1703
2005
519243
Whippo C.W.,Hangarter R.P.
A brassinosteroid-hypersensitive mutant of BAK1 indicates that a convergence of photomorphogenic and hormonal signaling modulates phototropism.
Plant Physiol.
139
448-457
2005
519244
Karlova R.,Boeren S.,Russinova E.,Aker J.,Vervoort J.,de Vries S.C.
The Arabidopsis SOMATIC EMBRYOGENESIS RECEPTOR-LIKE KINASE1 protein complex includes BRASSINOSTEROID-INSENSITIVE1.
Plant Cell
18
626-638
2006
519245
Heese A.,Hann D.R.,Gimenez-Ibanez S.,Jones A.M.E.,He K.,Li J.,Schroeder J.I.,Peck S.C.,Rathjen J.P.
The receptor-like kinase SERK3/BAK1 is a central regulator of innate immunity in plants.
Proc. Natl. Acad. Sci. U.S.A.
104
12217-12222
2007
519246
He K.,Gou X.,Yuan T.,Lin H.,Asami T.,Yoshida S.,Russell S.D.,Li J.
BAK1 and BKK1 regulate brassinosteroid-dependent growth and brassinosteroid-independent cell-death pathways.
Curr. Biol.
17
1109-1115
2007
519247
Kemmerling B.,Schwedt A.,Rodriguez P.,Mazzotta S.,Frank M.,Qamar S.A.,Mengiste T.,Betsuyaku S.,Parker J.E.,Mussig C.,Thomma B.P.,Albrecht C.,de Vries S.C.,Hirt H.,Nurnberger T.
The BRI1-associated kinase 1, BAK1, has a brassinolide-independent role in plant cell-death control.
Curr. Biol.
17
1116-1122
2007
519248
Chinchilla D.,Zipfel C.,Robatzek S.,Kemmerling B.,Nuernberger T.,Jones J.D.G.,Felix G.,Boller T.
A flagellin-induced complex of the receptor FLS2 and BAK1 initiates plant defence.
Nature
448
497-500
2007
519249
Ding Z.,Wang H.,Liang X.,Morris E.R.,Gallazzi F.,Pandit S.,Skolnick J.,Walker J.C.,Van Doren S.R.
Phosphoprotein and phosphopeptide interactions with the FHA domain from Arabidopsis kinase-associated protein phosphatase.
Biochemistry
46
2684-2696
2007
519250
Hink M.A.,Shah K.,Russinova E.,de Vries S.C.,Visser A.J.
Fluorescence fluctuation analysis of Arabidopsis thaliana somatic embryogenesis receptor-like kinase and brassinosteroid insensitive 1 receptor oligomerization.
Biophys. J.
94
1052-1062
2008
519251
Shan L.,He P.,Li J.,Heese A.,Peck S.C.,Nurnberger T.,Martin G.B.,Sheen J.
Bacterial effectors target the common signaling partner BAK1 to disrupt multiple MAMP receptor-signaling complexes and impede plant immunity.
Cell Host Microbe
4
17-27
2008
519252
Wang X.,Kota U.,He K.,Blackburn K.,Li J.,Goshe M.B.,Huber S.C.,Clouse S.D.
Sequential transphosphorylation of the BRI1/BAK1 receptor kinase complex impacts early events in brassinosteroid signaling.
Dev. Cell
15
220-235
2008
519253
Albrecht C.,Russinova E.,Kemmerling B.,Kwaaitaal M.,de Vries S.C.
Arabidopsis SOMATIC EMBRYOGENESIS RECEPTOR KINASE proteins serve brassinosteroid-dependent and -independent signaling pathways.
Plant Physiol.
148
611-619
2008
519254
Ryu H.Y.,Kim S.Y.,Park H.M.,You J.Y.,Kim B.H.,Lee J.S.,Nam K.H.
Modulations of AtGSTF10 expression induce stress tolerance and BAK1-mediated cell death.
Biochem. Biophys. Res. Commun.
379
417-422
2009
519255
Song L.,Shi Q.M.,Yang X.H.,Xu Z.H.,Xue H.W.
Membrane steroid-binding protein 1 (MSBP1) negatively regulates brassinosteroid signaling by enhancing the endocytosis of BAK1.
Cell Res.
19
864-876
2009
519256
Karlova R.,Boeren S.,van Dongen W.,Kwaaitaal M.,Aker J.,Vervoort J.,de Vries S.C.
Identification of in vitro phosphorylation sites in the Arabidopsis thaliana somatic embryogenesis receptor-like kinases.
Proteomics
9
368-379
2009
519257
Yun H.S.,Bae Y.H.,Lee Y.J.,Chang S.C.,Kim S.-K.,Li J.,Nam K.H.
Analysis of phosphorylation of the BRI1/BAK1 complex in arabidopsis reveals amino acid residues critical for receptor formation and activation of BR signaling.
Mol. Cells
27
183-190
2009
519258
Oh M.-H.,Wang X.,Kota U.,Goshe M.B.,Clouse S.D.,Huber S.C.
Tyrosine phosphorylation of the BRI1 receptor kinase emerges as a component of brassinosteroid signaling in Arabidopsis.
Proc. Natl. Acad. Sci. U.S.A.
106
658-663
2009
519259
Postel S.,Kuefner I.,Beuter C.,Mazzotta S.,Schwedt A.,Borlotti A.,Halter T.,Kemmerling B.,Nuernberger T.
The multifunctional leucine-rich repeat receptor kinase BAK1 is implicated in Arabidopsis development and immunity.
Eur. J. Cell Biol.
89
169-174
2010
519260
Schulze B.,Mentzel T.,Jehle A.K.,Mueller K.,Beeler S.,Boller T.,Felix G.,Chinchilla D.
Rapid heteromerization and phosphorylation of ligand-activated plant transmembrane receptors and their associated kinase BAK1.
J. Biol. Chem.
285
9444-9451
2010
519261
Lu D.,Wu S.,He P.,Shan L.
Phosphorylation of receptor-like cytoplasmic kinases by bacterial flagellin.
Plant Signal. Behav.
5
598-600
2010
519262
Oh M.H.,Wang X.,Wu X.,Zhao Y.,Clouse S.D.,Huber S.C.
Autophosphorylation of Tyr-610 in the receptor kinase BAK1 plays a role in brassinosteroid signaling and basal defense gene expression.
Proc. Natl. Acad. Sci. U.S.A.
107
17827-17832
2010
519263
Oh M.H.,Wang X.,Wu X.,Zhao Y.,Clouse S.D.,Huber S.C.
Proc. Natl. Acad. Sci. U.S.A.
113
0-0
2016
519264
Roux M.,Schwessinger B.,Albrecht C.,Chinchilla D.,Jones A.,Holton N.,Malinovsky F.G.,Tor M.,de Vries S.,Zipfel C.
The Arabidopsis leucine-rich repeat receptor-like kinases BAK1/SERK3 and BKK1/SERK4 are required for innate immunity to hemibiotrophic and biotrophic pathogens.
Plant Cell
23
2440-2455
2011
519265
Oh M.H.,Wu X.,Clouse S.D.,Huber S.C.
Functional importance of BAK1 tyrosine phosphorylation in vivo.
Plant Signal. Behav.
6
400-405
2011
519266
Oh M.H.,Wu X.,Clouse S.D.,Huber S.C.
Plant Signal. Behav.
11
0-0
2016
519267
Kim M.H.,Kim Y.,Kim J.W.,Lee H.S.,Lee W.S.,Kim S.K.,Wang Z.Y.,Kim S.H.
Identification of Arabidopsis BAK1-associating receptor-like kinase 1 (BARK1) and characterization of its gene expression and brassinosteroid-regulated root phenotypes.
Plant Cell Physiol.
54
1620-1634
2013
519268
Halter T.,Imkampe J.,Mazzotta S.,Wierzba M.,Postel S.,Buecherl C.,Kiefer C.,Stahl M.,Chinchilla D.,Wang X.,Nuernberger T.,Zipfel C.,Clouse S.,Borst J.W.,Boeren S.,de Vries S.C.,Tax F.,Kemmerling B.
The leucine-rich repeat receptor kinase BIR2 is a negative regulator of BAK1 in plant immunity.
Curr. Biol.
24
134-143
2014
519269
Blaum B.S.,Mazzotta S.,Noeldeke E.R.,Halter T.,Madlung J.,Kemmerling B.,Stehle T.
Structure of the pseudokinase domain of BIR2, a regulator of BAK1-mediated immune signaling in Arabidopsis.
J. Struct. Biol.
186
112-121
2014
519270
Meng X.,Chen X.,Mang H.,Liu C.,Yu X.,Gao X.,Torii K.U.,He P.,Shan L.
Differential function of Arabidopsis SERK family receptor-like kinases in stomatal patterning.
Curr. Biol.
25
2361-2372
2015
519271
Albert I.,Boehm H.,Albert M.,Feiler C.E.,Imkampe J.,Wallmeroth N.,Brancato C.,Raaymakers T.M.,Oome S.,Zhang H.,Krol E.,Grefen C.,Gust A.A.,Chai J.,Hedrich R.,Van den Ackerveken G.,Nuernberger T.
An RLP23-SOBIR1-BAK1 complex mediates NLP-triggered immunity.
Nat. Plants
1
15140-15140
2015
519272
Ladwig F.,Dahlke R.I.,Stuehrwohldt N.,Hartmann J.,Harter K.,Sauter M.
Phytosulfokine regulates growth in Arabidopsis through a response module at the plasma membrane that includes CYCLIC NUCLEOTIDE-GATED CHANNEL17, H+-ATPase, and BAK1.
Plant Cell
27
1718-1729
2015
519273
Song W.,Liu L.,Wang J.,Wu Z.,Zhang H.,Tang J.,Lin G.,Wang Y.,Wen X.,Li W.,Han Z.,Guo H.,Chai J.
Signature motif-guided identification of receptors for peptide hormones essential for root meristem growth.
Cell Res.
26
674-685
2016
519274
Yeh Y.-H.,Panzeri D.,Kadota Y.,Huang Y.-C.,Huang P.-Y.,Tao C.-N.,Roux M.,Chien H.-C.,Chin T.-C.,Chu P.-W.,Zipfel C.,Zimmerli L.
The Arabidopsis malectin-like/LRR-RLK IOS1 is critical for BAK1-dependent and BAK1-independent pattern-triggered immunity.
Plant Cell
28
1701-1721
2016
519275
Cheng W.,Munkvold K.R.,Gao H.,Mathieu J.,Schwizer S.,Wang S.,Yan Y.B.,Wang J.,Martin G.B.,Chai J.
Structural analysis of Pseudomonas syringae AvrPtoB bound to host BAK1 reveals two similar kinase-interacting domains in a type III Effector.
Cell Host Microbe
10
616-626
2011
519276
Yan L.,Ma Y.,Liu D.,Wei X.,Sun Y.,Chen X.,Zhao H.,Zhou J.,Wang Z.,Shui W.,Lou Z.
Structural basis for the impact of phosphorylation on the activation of plant receptor-like kinase BAK1.
Cell Res.
22
1304-1308
2012
519277
Sun Y.,Li L.,Macho A.P.,Han Z.,Hu Z.,Zipfel C.,Zhou J.M.,Chai J.
Structural basis for flg22-induced activation of the Arabidopsis FLS2-BAK1 immune complex.
Science
342
624-628
2013