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Protein Page:
ZNF268 (human)
p Phosphorylation
ac Acetylation
me Methylation
m1 Mono-methylation
m2 Di-methylation
m3 Tri-methylation
ub Ubiquitination
sm Sumoylation
ne Neddylation
gl O-GlcNAc
ga O-GalNAc
pa Palmitoylation
ad Adenylylation
sn S-Nitrosylation
ca Caspase cleavage
sc Succinylation

Overview
ZNF268 May be involved in transcriptional regulation. Belongs to the krueppel C2H2-type zinc-finger protein family. 2 isoforms of the human protein are produced by alternative splicing. Note: This description may include information from UniProtKB.
Protein type: DNA binding protein; C2H2-type zinc finger protein
Cellular Component: cytoplasm; nucleus
Molecular Function: protein binding; DNA binding; metal ion binding; transcription factor activity
Biological Process: release of cytoplasmic sequestered NF-kappaB; regulation of protein heterodimerization activity; transcription, DNA-dependent; positive regulation of apoptosis; regulation of mitotic cell cycle; negative regulation of transcription from RNA polymerase II promoter; negative regulation of cell proliferation; regulation of transcription, DNA-dependent; positive regulation of cell proliferation; positive regulation of protein catabolic process; positive regulation of transcription from RNA polymerase II promoter; positive regulation of protein amino acid phosphorylation; positive regulation of cell differentiation; cell differentiation; negative regulation of apoptosis; positive regulation of transcription from RNA polymerase II promoter, mitotic; positive regulation of cell migration
Reference #:  Q14587 (UniProtKB)
Alt. Names/Synonyms: HZF3; MGC126498; Zinc finger protein 268; zinc finger protein 3; Zinc finger protein HZF3; ZN268; ZNF268
Gene Symbols: ZNF268
Molecular weight: 108,374 Da
Basal Isoelectric point: 9.14  Predict pI for various phosphorylation states
Select Structure to View Below

ZNF268

Protein Structure Not Found.


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Modification Sites and Domains Show Modification Legend
Click here to view phosphorylation modifications only

Modification Sites in Parent Protein, Orthologs, and Isoforms Show Modification Legend
 

Show Multiple Sequence Alignment


 SS 

SS: The number of records in which this modification site was determined using site-specific methods. SS methods include amino acid sequencing, site-directed mutagenesis, modification site-specific antibodies, specific MS strategies, etc.


 MS 

MS: The number of records in which this modification site was assigned using ONLY proteomic discovery-mode mass spectrometry.


       human

 
0 1 T48-p GLQPLPGtPRQKQKS
0 1 Y106-p DPAQKCLyRSVMLEN
0 1 T411-p IIHERIHtGEKPYEC
0 1 Y584-p THAGEKPyECTDCGK
0 1 K610-ac QRTHTGEkPFECSEC
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