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Plant Transcription
Factor Database
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Transcription Factor Information
Basic
Information? help
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TF ID |
AT1G10170.1 |
Common Name | ATNFXL1, F14N23.5, NFXL1 |
Organism |
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Taxonomic ID |
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Taxonomic Lineage |
cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Streptophytina; Embryophyta; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; eudicotyledons; Gunneridae; Pentapetalae; rosids; malvids; Brassicales; Brassicaceae; Camelineae; Arabidopsis
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Family |
NF-X1 |
Protein Properties |
Length: 1188aa MW: 130716 Da PI: 8.1239 |
Description |
NF-X-like 1 |
Gene Model |
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Signature Domain? help Back to Top |
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No. |
Domain |
Score |
E-value |
Start |
End |
HMM Start |
HMM End |
1 | zf-NF-X1 | 23.6 | 1.1e-07 | 390 | 408 | 1 | 19 |
zf-NF-X1 1 CGkHkCqklCHeGpCppCp 19
CG+H+C+++CH GpC+pC+
AT1G10170.1 390 CGRHQCERTCHVGPCDPCQ 408
******************6 PP
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2 | zf-NF-X1 | 18 | 6.4e-06 | 454 | 471 | 1 | 18 |
zf-NF-X1 1 CGkHkCqklCHeGpCppC 18
CG+H C++ CH+GpC+ C
AT1G10170.1 454 CGNHFCSEVCHPGPCGDC 471
****************99 PP
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3 | zf-NF-X1 | 18.3 | 5.2e-06 | 516 | 530 | 4 | 18 |
zf-NF-X1 4 HkCqklCHeGpCppC 18
H+C++ CH G+CppC
AT1G10170.1 516 HTCNEMCHAGDCPPC 530
*************** PP
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4 | zf-NF-X1 | 18.5 | 4.4e-06 | 611 | 629 | 1 | 19 |
zf-NF-X1 1 CGkHkCqklCHeGpCppCp 19
CG+H+C++lCH G CppC
AT1G10170.1 611 CGQHSCESLCHSGHCPPCL 629
******************6 PP
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5 | zf-NF-X1 | 18.4 | 4.8e-06 | 721 | 736 | 1 | 16 |
zf-NF-X1 1 CGkHkCqklCHeGpCp 16
CG+H C ++CH+ pC+
AT1G10170.1 721 CGMHACARTCHPEPCD 736
***************8 PP
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Protein Features
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Database |
Entry ID |
E-value |
Start |
End |
InterPro ID |
Description |
SuperFamily | SSF57850 | 5.65E-6 | 212 | 283 | No hit | No description |
PROSITE profile | PS50016 | 8.956 | 220 | 281 | IPR019787 | Zinc finger, PHD-finger |
PROSITE pattern | PS01359 | 0 | 223 | 278 | IPR019786 | Zinc finger, PHD-type, conserved site |
PROSITE profile | PS50089 | 9.465 | 223 | 279 | IPR001841 | Zinc finger, RING-type |
CDD | cd06008 | 1.50E-6 | 312 | 373 | No hit | No description |
SMART | SM00438 | 0.023 | 335 | 353 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 8.9 | 337 | 352 | IPR000967 | Zinc finger, NF-X1-type |
CDD | cd06008 | 4.39E-13 | 380 | 428 | No hit | No description |
SMART | SM00438 | 5.3E-5 | 390 | 409 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 9.2E-6 | 390 | 407 | IPR000967 | Zinc finger, NF-X1-type |
CDD | cd06008 | 3.21E-8 | 448 | 489 | No hit | No description |
SMART | SM00438 | 2.6E-5 | 454 | 473 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 7.6E-5 | 454 | 471 | IPR000967 | Zinc finger, NF-X1-type |
CDD | cd06008 | 3.29E-13 | 503 | 550 | No hit | No description |
SMART | SM00438 | 2.3E-5 | 513 | 532 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 5.5E-4 | 515 | 530 | IPR000967 | Zinc finger, NF-X1-type |
CDD | cd06008 | 6.60E-5 | 562 | 622 | No hit | No description |
SMART | SM00438 | 170 | 572 | 607 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 20 | 572 | 583 | IPR000967 | Zinc finger, NF-X1-type |
CDD | cd06008 | 6.34E-9 | 601 | 653 | No hit | No description |
SMART | SM00438 | 2.0E-4 | 611 | 630 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 1.1E-4 | 611 | 628 | IPR000967 | Zinc finger, NF-X1-type |
CDD | cd06008 | 1.17E-6 | 658 | 705 | No hit | No description |
SMART | SM00438 | 0.034 | 668 | 686 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 25 | 675 | 685 | IPR000967 | Zinc finger, NF-X1-type |
SMART | SM00438 | 4.7E-4 | 721 | 751 | IPR000967 | Zinc finger, NF-X1-type |
Pfam | PF01422 | 0.0074 | 721 | 736 | IPR000967 | Zinc finger, NF-X1-type |
CDD | cd06008 | 3.02E-4 | 749 | 798 | No hit | No description |
Pfam | PF01422 | 0.043 | 753 | 779 | IPR000967 | Zinc finger, NF-X1-type |
SMART | SM00438 | 0.021 | 760 | 781 | IPR000967 | Zinc finger, NF-X1-type |
Gene Ontology ? help Back to Top |
GO Term |
GO Category |
GO Description |
GO:0000122 | Biological Process | negative regulation of transcription from RNA polymerase II promoter |
GO:0009642 | Biological Process | response to light intensity |
GO:0009651 | Biological Process | response to salt stress |
GO:0009697 | Biological Process | salicylic acid biosynthetic process |
GO:0010188 | Biological Process | response to microbial phytotoxin |
GO:0010310 | Biological Process | regulation of hydrogen peroxide metabolic process |
GO:0016567 | Biological Process | protein ubiquitination |
GO:0042742 | Biological Process | defense response to bacterium |
GO:0005634 | Cellular Component | nucleus |
GO:0000977 | Molecular Function | RNA polymerase II regulatory region sequence-specific DNA binding |
GO:0001078 | Molecular Function | transcriptional repressor activity, RNA polymerase II core promoter proximal region sequence-specific binding |
GO:0005515 | Molecular Function | protein binding |
GO:0008270 | Molecular Function | zinc ion binding |
GO:0016874 | Molecular Function | ligase activity |
Sequence ? help Back to Top |
Protein Sequence Length: 1188 aa
Download sequence Send
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MSFQVRRDRS DDRSHRFNHQ QTWIPRNSST SSVVVNEPLL PPNTDRNSET LDAGSASRPV 60 YLQRQHNASG PPSYNHHQRS SNIGPPPPNQ HRRYNAPDNQ HQRSDNIGPP QPNQHRRYNA 120 PDNQHQRSDN SGPPQPYRHR RNNAPENQHQ RSDNIGPPPP NRQRRNNASG TLPDNRQRVA 180 SRTRPVNQGK RVAKEENVVL TDPNLPQLVQ ELQEKLVKSS IECMICYDKV GRSANIWSCS 240 SCYSIFHINC IKRWARAPTS VDLLAEKNQG DNWRCPGCQS VQLTSSKEIS YRCFCGKRRD 300 PPSDPYLTPH SCGEPCGKPL EKEFAPAETT EEDLCPHVCV LQCHPGPCPP CKAFAPPRSC 360 PCGKKMVTTR CSERRSDLVC GQRCDKLLSC GRHQCERTCH VGPCDPCQVL VNATCFCKKK 420 VETVICGDMN VKGELKAEDG VYSCSFNCGK PLGCGNHFCS EVCHPGPCGD CDLLPSRVKT 480 CYCGNTRLEE QIRQSCLDPI PSCSNVCRKL LPCRLHTCNE MCHAGDCPPC LVQVNQKCRC 540 GSTSRAVECY ITTSSEAEKF VCAKPCGRKK NCGRHRCSER CCPLLNGKKN DLSGDWDPHV 600 CQIPCQKKLR CGQHSCESLC HSGHCPPCLE MIFTDLTCAC GRTSIPPPLS CGTPVPSCQL 660 PCPIPQPCGH SDTHGCHFGD CPPCSTPVEK KCVGGHVVLR NIPCGLKDIR CTKICGKTRR 720 CGMHACARTC HPEPCDSFNE SEAGMRVTCR QKCGAPRTDC RHTCAALCHP SAPCPDLRCE 780 FSVTITCSCG RITATVPCDA GGRSANGSNV YCAAYDEASV LQKLPAPLQP VESSGNRIPL 840 GQRKLSCDDE CAKLERKRVL QDAFDITPPN LEALHFSENS AMTEIISDLY RRDPKWVLAV 900 EERCKFLVLG KARGSTSALK VHIFCPMQKD KRDTVRLIAE RWKLGVSNAG WEPKRFTVVH 960 VTAKSKPPTR IIGARGGAIS IGGPHPPFYD SLVDMDPGLV VSFLDLPREA NISALVLRFG 1020 GECELVWLND KNALAVFHDH ARAATAMRRL EHGSVYHGAV VVQSGGQSPS LNNVWGKLPG 1080 SSAWDVDKGN PWRRAVIQES DDSWGAEDSP IGGSSTDAQA SALRSAKSNS PIVTSVNRWS 1140 VLEPKKASTS TLEPIAQIEE SSSSKTTGKQ PVEGSGEEVV DDWEKVCE
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Expression --
Description ? help
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Source |
Description |
Uniprot | TISSUE SPECIFICITY: Expressed in seedlings, roots, stems, leaves, buds, flowers and siliques. {ECO:0000269|PubMed:16905136}. |
Functional Description ? help
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Source |
Description |
TAIR | Encodes AtNFXL1, a homologue of the putative human transcription repressor NF-X1. Functions as a negative regulator of the trichothecene phytotoxin-induced defense response. |
UniProt | Mediates E2-dependent ubiquitination (By similarity). Confers resistance to osmotic stress such as high salinity. Promotes H(2)O(2) production. Negative regulator of some defense-related genes via an salicylic acid (SA)-dependent signaling pathway. Confers susceptibility to the compatible phytopathogen Pseudomonas syringae pv. tomato strain DC3000 (Pst DC3000). Mediates resistance to type A trichothecenes (phytotoxins produced by phytopathogenic fungi). {ECO:0000250, ECO:0000269|PubMed:16905136, ECO:0000269|PubMed:18069941, ECO:0000269|PubMed:19704430}. |
Function -- GeneRIF ? help
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- Data suggest that the Arabidopsis NFXL1 and NFXL2 zinc finger proteins likely are part of regulatory mechanisms, which protect major processes such as photosynthesis. [NFXL1]
[PMID: 16905136]
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Regulation -- Description ? help
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Source |
Description |
UniProt | INDUCTION: By brassinosteroids, osmotic stress and high salinity. Accumulates in response to SA, ethylene, methyl jasmonate (MeJA), flagellin (e.g. flg22), and type A trichothecenes such as T-2 toxin and diacetoxyscirpenol (DAS), but not in response to type B trichothecenes such as deoxynivalenol (DON). {ECO:0000269|PubMed:16905136, ECO:0000269|PubMed:18069941, ECO:0000269|PubMed:19704430}. |
Phenotype -- Disruption Phenotype ? help
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Source |
Description |
UniProt | DISRUPTION PHENOTYPE: Impaired growth and survival under salt stress. Reduced H(2)O(2) production. Hypersensitivity to T-2 toxin and DAS (but not to DON), accompanied by enhanced SA accumulation and several plant defense gene induction. Less susceptible to Pst DC3000. {ECO:0000269|PubMed:16905136, ECO:0000269|PubMed:18069941, ECO:0000269|PubMed:19704430}. |
Annotation --
Nucleotide ? help
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Source |
Hit ID |
E-value |
Description |
GenBank | AC005489 | 0.0 | AC005489.1 Genomic sequence for Arabidopsis thaliana BAC F14N23 from Chromosome 1, complete sequence. |
GenBank | CP002684 | 0.0 | CP002684.1 Arabidopsis thaliana chromosome 1 sequence. |
Publications
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- Kosarev P,Mayer KF,Hardtke CS
Evaluation and classification of RING-finger domains encoded by the Arabidopsis genome. Genome Biol., 2002. 3(4): p. RESEARCH0016 [PMID:11983057] - Kreps JA, et al.
Transcriptome changes for Arabidopsis in response to salt, osmotic, and cold stress. Plant Physiol., 2002. 130(4): p. 2129-41 [PMID:12481097] - Lee BH,Henderson DA,Zhu JK
The Arabidopsis cold-responsive transcriptome and its regulation by ICE1. Plant Cell, 2005. 17(11): p. 3155-75 [PMID:16214899] - Ma S,Gong Q,Bohnert HJ
Dissecting salt stress pathways. J. Exp. Bot., 2006. 57(5): p. 1097-107 [PMID:16510518] - Lisso J,Altmann T,Müssig C
The AtNFXL1 gene encodes a NF-X1 type zinc finger protein required for growth under salt stress. FEBS Lett., 2006. 580(20): p. 4851-6 [PMID:16905136] - Larkindale J,Vierling E
Core genome responses involved in acclimation to high temperature. Plant Physiol., 2008. 146(2): p. 748-61 [PMID:18055584] - Asano T, et al.
AtNFXL1, an Arabidopsis homologue of the human transcription factor NF-X1, functions as a negative regulator of the trichothecene phytotoxin-induced defense response. Plant J., 2008. 53(3): p. 450-64 [PMID:18069941] - Ascencio-Ib
Global analysis of Arabidopsis gene expression uncovers a complex array of changes impacting pathogen response and cell cycle during geminivirus infection. Plant Physiol., 2008. 148(1): p. 436-54 [PMID:18650403] - Wang Y, et al.
Transcriptome analyses show changes in gene expression to accompany pollen germination and tube growth in Arabidopsis. Plant Physiol., 2008. 148(3): p. 1201-11 [PMID:18775970] - Asano T, et al.
The AtNFXL1 gene functions as a signaling component of the type A trichothecene-dependent response. Plant Signal Behav, 2008. 3(11): p. 991-992 [PMID:19704430] - M
Structure and putative function of NFX1-like proteins in plants. Plant Biol (Stuttg), 2010. 12(3): p. 381-94 [PMID:20522174] - Lisso J,Schr
NFX1-LIKE2 (NFXL2) suppresses abscisic acid accumulation and stomatal closure in Arabidopsis thaliana. PLoS ONE, 2011. 6(11): p. e26982 [PMID:22073231] - Jin J, et al.
An Arabidopsis Transcriptional Regulatory Map Reveals Distinct Functional and Evolutionary Features of Novel Transcription Factors. Mol. Biol. Evol., 2015. 32(7): p. 1767-73 [PMID:25750178]
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