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CYP71B15 CYP71B15 WRKY8 WRKY8 VQ31 VQ31 SIB1 SIB1 VQ22 VQ22 RPPL1 RPPL1 VQ20 VQ20 WRKY70 WRKY70 ABCF4 ABCF4 VQ25 VQ25 RPP13 RPP13 VQ11 VQ11 VQ29 VQ29 WRKY25 WRKY25 SIB2 SIB2 IKU1 IKU1 AP2 AP2 MPK3 MPK3 MPK4 MPK4 MPK6 MPK6 VQ4 VQ4 MKS1 MKS1 WRKY33 WRKY33 VQ10 VQ10 WRKY51 WRKY51 VQ8 VQ8 BZIP8 BZIP8 NDL1 NDL1
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query proteins and first shell of interactors
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second shell of interactors
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proteins of unknown 3D structure
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a 3D structure is known or predicted
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CYP71B15Bifunctional dihydrocamalexate synthase/camalexin synthase; Multifunctional enzyme involved in the biosynthesis of the indole-derived phytoalexin camalexin. Catalyzes two reactions, the formation of dihydrocamalexate from indole-3-acetonitrile-cysteine conjugate and the oxidative decarboxylation of dihydrocamalexate which is the final step in camalexin biosynthesis. Required for the resistance to the fungal pathogens A.brassicicola, B.cinerea, B.elliptica, B.tulipae, L.maculans and Colletotrichum higginsianum. Seems not to be required for resistance to P.syringae, P.porri, and not invo [...] (490 aa)
WRKY8WRKY transcription factor 8; Transcription factor. Interacts specifically with the W box (5'-TTGAC[CT]-3'), a frequently occurring stress-responsive cis-acting element. Functions as positive regulator of salt stress response. Binds the W box of LTI78/RD29A stress-response gene and directly regulates its transcription under salt stress. Functions antagonistically with VQ9 to regulate sodium and potassium homeostasis under salt stress by regulating the expression of downstream SOS (SALT OVERLY SENSITIVE) stress-responsive genes. The DNA-binding activity of WRKY8 is decreased by VQ9. Func [...] (326 aa)
VQ31VQ motif-containing protein 31; May modulate WRKY transcription factor activities. (173 aa)
SIB1Sigma factor binding protein 1, chloroplastic; Contributes to plant defense. May regulate chloroplast metabolism upon infection with pathogens such as Pseudomonas syringae. Functions as activator of WRKY33 in plant defense against necrotrophic pathogens by stimulating the DNA-binding activity of WRKY33. (151 aa)
VQ22VQ motif-containing protein 22; May function as positive regulator of plant growth. (192 aa)
RPPL1Putative disease resistance RPP13-like protein 1; Potential disease resistance protein; Belongs to the disease resistance NB-LRR family. RPP13 subfamily. (1054 aa)
VQ20VQ motif-containing protein 20; May function as negative regulator of plant defense. (285 aa)
WRKY70Probable WRKY transcription factor 70; Transcription factor involved in senescence, biotic and abiotic stress responses by modulating various phytohormones signaling pathways. Interacts specifically with the W box (5'- (T)TGAC[CT]-3'), a frequently occurring elicitor-responsive cis-acting element (By similarity). Binds to the 5'-[CT]GACTTTT-3' motif in promoters of target genes to induce their expression. Plays an important but not indispensable role in jasmonate and salicylic acid signaling. Regulates positively the salicylic acid (SA)-mediated signal pathway, but negatively the jasmo [...] (294 aa)
ABCF4ABC transporter F family member 4; Belongs to the ABC transporter superfamily. ABCF family. EF3 (TC 3.A.1.121) subfamily. (723 aa)
VQ25VQ motif-containing protein 25; May function as negative regulator of plant defense. (175 aa)
RPP13Disease resistance protein RPP13; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via an indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth. In contrast to other resistance proteins, it works independently of ESD1 and NSD1 proteins and does not require the accumulation of salicylic acid, suggesting the existence of an independent signaling pathway. The specificity to avirulence proteins differs in the [...] (835 aa)
VQ11VQ motif-containing protein 11; May modulate WRKY transcription factor activities. (177 aa)
VQ29VQ motif-containing protein 29; May function as negative regulator of flowering transition. (123 aa)
WRKY25Probable WRKY transcription factor 25; Transcription factor. Interacts specifically with the W box (5'-(T)TGAC[CT]-3'), a frequently occurring elicitor-responsive cis- acting element (By similarity). Functions with WRKY33 as positive regulator of salt stress response and abscisic acid (ABA) signaling. Plays a partial role in heat stress tolerance. Functions with WRKY26 and WRKY33 as positive regulator of plant thermotolerance by partially participating in ethylene-response signal transduction pathway. (393 aa)
SIB2Sigma factor binding protein 2, chloroplastic; Functions as activator of WRKY33 in plant defense against necrotrophic pathogens by stimulating the DNA-binding activity of WRKY33. (141 aa)
IKU1Protein HAIKU1; Modulates seed size by negatively regulating the cellularization of syncytial endosperm. May function by binding and modulating the activity of WRKY10 transcription factor. (402 aa)
AP2Floral homeotic protein APETALA 2; Probable transcriptional activator that promotes early floral meristem identity. Is required subsequently for the transition of an inflorescence meristem into a floral meristem. Plays a central role in the specification of floral identity, particularly for the normal development of sepals and petals in the wild-type flower, by spatially controlling the expression domains of multiple floral organ identity genes. Acts as A class cadastral protein by repressing the C class floral homeotic gene AGAMOUS in association with other repressors like LEUNIG and [...] (432 aa)
MPK3Mitogen-activated protein kinase 3; Involved in oxidative stress-mediated signaling cascade (such as ozone). Involved in the innate immune MAP kinase signaling cascade (MEKK1, MKK4/MKK5 and MPK3/MPK6) downstream of bacterial flagellin receptor FLS2. May be involved in hypersensitive response (HR)-mediated signaling cascade by modulating LIP5 phosphorylation and subsequent multivesicular bodies (MVBs) trafficking. May phosphorylate regulators of WRKY transcription factors. Mediates the phosphorylation of VIP1 and subsequent stress genes transcription in response to Agrobacterium. MKK9-M [...] (370 aa)
MPK4Mitogen-activated protein kinase 4; The ANPs-MKK6-MPK4 module is involved in the regulation of plant cytokinesis during meiosis and mitosis. Essential to promote the progression of cytokinesis and for cellularization (formation of the cell plate) during male-specific meiosis. Involved in cortical microtubules organization and stabilization by regulating the phosphorylation state of microtubule-associated proteins such as MAP65- 1. Involved in root hair development process. Negative regulator of systemic acquired resistance (SAR) and salicylic acid- (SA) mediated defense response. Requi [...] (376 aa)
MPK6Mitogen-activated protein kinase 6; Involved in oxidative stress-mediated signaling cascade (such as ozone). Involved in the innate immune MAP kinase signaling cascade (MEKK1, MKK4/MKK5 and MPK3/MPK6) downstream of bacterial flagellin receptor FLS2. May be involved in hypersensitive response (HR)-mediated signaling cascade by modulating LIP5 phosphorylation and subsequent multivesicular bodies (MVBs) trafficking. May phosphorylate regulators of WRKY transcription factors. Phosphorylates 1-aminocyclopropane-1- carboxylic acid synthases (ACS2 and ACS6) and may be involved in the regulati [...] (395 aa)
VQ4VQ motif-containing protein 4; Acts as negative regulator of WRKY33 transcription factor activity in the promotion of defense gene expression. Acts as a negative regulator of pathogen-associated molecular pattern (PAMP)- induced responses to modulate resistance to pathogens. (247 aa)
MKS1Protein MKS1; Regulator of plant defense response. May contribute to MPK4- regulated defense activation by coupling the kinase to specific WRKY transcription factors. (222 aa)
WRKY33Probable WRKY transcription factor 33; Transcription factor. Interacts specifically with the W box (5'-TTGAC[CT]-3'), a frequently occurring elicitor-responsive cis- acting element. Involved in defense responses. Required for resistance to the necrotrophic fungal pathogen B.cinerea. Regulates the antagonistic relationship between defense pathways mediating responses to the bacterial pathogen P. syringae and the necrotrophic pathogen B.cinerea. Required for the phytoalexin camalexin synthesis following infection with B.cinerea. Acts as positive regulator of the camalexin biosynthetic ge [...] (519 aa)
VQ10VQ motif-containing protein 10; May modulate WRKY transcription factor activities. (108 aa)
WRKY51Probable WRKY transcription factor 51; Transcription factor. Interacts specifically with the W box (5'-(T)TGAC[CT]-3'), a frequently occurring elicitor-responsive cis- acting element (By similarity). Involved in defense responses. May act as positive regulator of salicylic acid (SA)-mediated signaling and negative regulator of jasmonic acid (JA)-mediated signaling ; Belongs to the WRKY group II-c family. (194 aa)
VQ8VQ motif-containing protein 8, chloroplastic; May be involved in chloroplast development. (152 aa)
BZIP8Basic leucine zipper 8; Belongs to the bZIP family. (138 aa)
NDL1Protein NDL1; Interacts with the heterotrimeric G protein beta subunit GB1 and plays an significant role in GB1-dependent regulation of lateral root formation. Involved in a signaling pathway that modulates root auxin transport and auxin gradients. Acts partially by positively regulating the auxin carrier PIN2 and AUX1. Acts, together with GB1 as positive regulator of meristem initiation and branching. GB1 and NDL1 positively regulate basipetal inflorescence auxin transport and modulate MAX2 expression in shoots, which regulates organ and lateral meristem formation by the establishment [...] (346 aa)
Your Current Organism:
Arabidopsis thaliana
NCBI taxonomy Id: 3702
Other names: A. thaliana, Arabidopsis thaliana (L.) Heynh., mouse-ear cress, thale cress, thale-cress
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