DYKDDDDK Tag (FLAG) Recombinant Mouse Monoclonal Antibody [PS00-M2]
Usd: 350 Special Discount
Specification
Safety datasheet
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- MSDS_HUABIO.pdf
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- MSDS_HA601080_Europe.pdf
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Overview
Product Name
DYKDDDDK Tag (FLAG) Recombinant Mouse Monoclonal Antibody [PS00-M2]
Antibody Type
Recombinant Mouse Monoclonal Antibody
Immunogen
Synthetic peptide immune sequence is N-DYKDDDDK-C.
Species Reactivity
Species independent
Validated Applications
WB, IP, IF-Cell
Positive Control
C-terminal FLAG-tag fusion protein lysate, N-terminal FLAG-tag fusion protein lysate.
Conjugation
unconjugated
Clone Number
PS00-M2
RRID
Product Features
Form
Liquid
Concentration
1 mg/ml(The concentration of this product may be batch-dependent)
Storage Instructions
Shipped at 4℃. Store at +4℃ short term (1-2 weeks). Store at -20℃ long term.
Storage Buffer
PBS (pH7.4), 0.1% BSA, 40% Glycerol. Preservative: 0.05% Sodium Azide.
Isotype
IgG1
Purification Method
Protein A affinity purified.
Application Dilution
-
WB
-
1:5,000-1:25,000
-
IP
-
1:5,000-1:10,000 (C-FLAG)
-
IP
-
1:1,000-1:5,000 (N-FLAG)
-
IF-Cell
-
1:250
Target
Function
FLAG-tag, or FLAG octapeptide, or FLAG epitope, is a polypeptide protein tag that can be added to a protein using recombinant DNA technology, having the sequence motif DYKDDDDK (where D=aspartic acid, Y=tyrosine, and K=lysine). It is one of the most specific tags and it is an artificial antigen to which specific, high affinity monoclonal antibodies have been developed and hence can be used for protein purification by affinity chromatography and also can be used for locating proteins within living cells. It has been used to separate recombinant, overexpressed protein from wild-type protein expressed by the host organism. It can also be used in the isolation of protein complexes with multiple subunits, because its mild purification procedure tends not to disrupt such complexes. It has been used to obtain proteins of sufficient purity and quality to carry out 3D structure determination by x-ray crystallography. A FLAG-tag can be used in many different assays that require recognition by an antibody. If there is no antibody against a given protein, adding a FLAG-tag to a protein allows the protein to be studied with an antibody against the FLAG sequence. Examples are cellular localization studies by immunofluorescence, immunoprecipitation or detection by SDS PAGE protein electrophoresis and Western blotting. The peptide sequence of the FLAG-tag from the N-terminus to the C-terminus is: DYKDDDDK (1012 Da). Additionally, it may be used in tandem, commonly the 3xFLAG peptide: DYKDHD-G-DYKDHD-I-DYKDDDDK (with the final tag encoding an enterokinase cleavage site). It can be fused to the C-terminus or the N-terminus of a protein, or inserted within a protein. The tyrosine residue in the FLAG-tag can be sulfated, which can affect antibody recognition of the FLAG epitope. The FLAG-tag can be used in conjunction with other affinity tags, for example a polyhistidine tag (His-tag), HA-tag or myc-tag.
Background References
1. Hunter MR, Grimsey NL, Glass M (2016). "Sulfation of the FLAG epitope is affected by co-expression of G protein-coupled receptors in a mammalian cell model". Scientific Reports. 6: 27316.
2. Hopp TP, Prickett KS, Price VL, Libby RT, March CJ, Pat Cerretti D, Urdal DL, Conlon PJ (1988). "A Short Polypeptide Marker Sequence Useful for Recombinant Protein Identification and Purification". Bio/Technology. 6 (10): 1204–10.
Synonyms
DDDDK epitope tag antibody
DDDK antibody
ddk antibody
DYKDDDDK antibody
DYKDDDDK epitope tag antibody
DYKDDDDK tag antibody
ECS epitope tag antibody
ECS tag antibody
Enterokinase Cleavage Site epitope tag antibody
Enterokinase Cleavage Site tag antibody
ExpandDDDDK epitope tag antibody
DDDK antibody
ddk antibody
DYKDDDDK antibody
DYKDDDDK epitope tag antibody
DYKDDDDK tag antibody
ECS epitope tag antibody
ECS tag antibody
Enterokinase Cleavage Site epitope tag antibody
Enterokinase Cleavage Site tag antibody
FLAG antibody
FLAG tag antibody
CollapseImages
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Western blot analysis of DYKDDDDK Tag (FLAG) on N-terminal flag tag protein with Mouse anti-DYKDDDDK Tag (FLAG) antibody (M1403-2) at 1/1,000 dilution.
Lysates/proteins at 15 µg/Lane.
Exposure time: 10 seconds; ECL: K1801
Blocking: 5% NFDM/TBST, 1 hour at room temperature
Primary antibody: M1403-2, 1/1,000 in primary antibody dilution buffer (K1803), overnight at 4 ℃
Secondary antibody: Goat anti-Mouse IgG-HRP (HA1006), 1/50,000 in 5% NFDM/TBST, 1 hour at room temperature -
Immunocytochemistry analysis of HeLa cells labeling DYKDDDDK Tag (FLAG) with Mouse anti-DYKDDDDK Tag (FLAG) antibody (HA601080) at 1/250 dilution.
HeLa cells, transfected with FLAG-tagged empty control, Claudin 18.2 (C-terminal) or Histone H3.1 (N-terminal) expression vector, respectively, were fixed in 4% paraformaldehyde for 10 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 15 minutes at room temperature, then blocked with 1% BSA in 10% negative goat serum for 1 hour at room temperature. Cells were then incubated with Mouse anti-DYKDDDDK Tag (FLAG) antibody (HA601080) at 1/250 dilution in 1% BSA in PBST overnight at 4 ℃. Goat Anti-Mouse IgG H&L (iFluor™ 488, HA1125) was used as the secondary antibody at 1/1,000 dilution. PBS instead of the primary antibody was used as the secondary antibody only control. Nuclear DNA was labelled in blue with DAPI.
beta Tubulin (ET1602-4, red) was stained at 1/100 dilution overnight at +4℃. Goat Anti-Rabbit IgG H&L (iFluor™ 594, HA1122) were used as the secondary antibody at 1/1,000 dilution. -
FLAG-tag was immunoprecipitated in 2µg C-terminal FLAG-tag fusion protein lysate with HA601080. Western blot was performed from the immunoprecipitate using HA601080 at 1/5,000 dilution. Anti-Mouse IgG for IP Nano-secondary antibody (NBI02H) at 1:2,000 dilution was used for 60 mins at room temperature.
Lane 1: C-terminal FLAG-tag fusion protein lysate (input).
Lane 2: HA601080 IP in C-terminal FLAG-tag fusion protein lysate.
Lane 3: Mouse IgG instead of HA601080 IP in C-terminal FLAG-tag fusion protein lysate.
Blocking/Dilution buffer: 5% NFDM/TBST. -
FLAG-tag was immunoprecipitated in 2µg N-terminal FLAG-tag fusion protein lysate with HA601080. Western blot was performed from the immunoprecipitate using HA601080 at 1/5,000 dilution. Anti-Mouse IgG for IP Nano-secondary antibody (NBI02H) at 1:2,000 dilution was used for 60 mins at room temperature.
Lane 1: N-terminal FLAG-tag fusion protein lysate (input).
Lane 2: HA601080 IP in N-terminal FLAG-tag fusion protein lysate.
Lane 3: Mouse IgG instead of HA601080 IP in N-terminal FLAG-tag fusion protein lysate.
Blocking/Dilution buffer: 5% NFDM/TBST.
Please note: All products are "FOR RESEARCH USE ONLY AND ARE NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE"
Citation
-
DNA-contact mutant p53 displaces BRCA2 from chromatin and drives R-loop-associated genome instability
Journal: Genome Biology
DOI: 10.1186/s13059-026-04151-6
IF: 9.2
Application: WB
Reactivity: Human
Publish date: 2026 Jun
-
Lipocalin-2-mediated oligodendrocyte pyroptosis contributes to post-stroke secondary white matter injury
Journal: Brain Research Bulletin
DOI: 10.1016/j.brainresbull.2026.112011
IF: 4.5
Application: IF-Tissue
Reactivity: Mouse
Publish date: 2026 Jun
-
A high-throughput reporter assay for screening potential gasdermin D inhibitors from natural products
Journal: International Journal Of Biological Macromolecules
DOI: 10.1016/j.ijbiomac.2026.150110
IF: 8.5
Application: WB
Reactivity: Mouse,Human
Publish date: 2026 Jan
-
A CRISPR-based mitochondrial gene therapy tool derived by engineering guide RNAs
Journal: Cell Reports
DOI: 10.1016/j.celrep.2026.116958
IF: 6.9
Application: IF-cell
Reactivity: Human
Publish date: 2026 Feb
-
FGF 13 functions as a regulator of the ERK/aerobic glycolysis axis in the inflammatory state during septic lung injury
Journal: Nature Communications
DOI: 10.1038/s41467-026-69014-x
IF: 15.7
Application: WB
Reactivity: Human
Publish date: 2026 Feb
-
Acetylation of GPRC5A at Lys348 facilitates cisplatin resistance and promotes the recurrence and poor prognosis in ovarian cancer
Journal: Comprehensive Physiology
DOI: 10.1016/j.ijbiomac.2026.152113
IF: 8.5
Application: WB
Reactivity: Human
Publish date: 2026 Apr
-
Covalent modification of Keap1 Cys489 by NU6300 activates Nrf2 signaling and suppresses NLRP3 inflammasome-mediated pyroptosis
Journal: Journal Of Pharmaceutical Analysis
DOI: 10.1016/j.jpha.2025.101458
IF: 8.9
Application: WB,IP,CoIP
Reactivity: Human
Publish date: 2025 Sept
-
In vivo chemogenetic RNA editing of macrophages by bioengineered viruses for sepsis treatment
Journal: Nature Communications
DOI: 10.1038/s41467-025-67655-y
IF: 15.7
Application: WB
Reactivity: Mouse
Publish date: 2025 Dec
-
Metabolic-developmental crosstalk: BmDHFR-mediated Hedgehog signaling orchestrates organ development and lipid homeostasis in Bombyx mori
Journal: Insect Science
DOI: 10.1111/1744-7917.70149
IF: 3
Application: WB,IP,CoIP
Reactivity: Bombyx mori
Publish date: 2025 Aug
-
NtPP2C42 Negatively Regulates NtCLE3-NtBAM3-3 Mediated Drought Tolerance in Tobacco
Journal: Plant Physiology And Biochemistry
DOI: 10.1016/j.plaphy.2025.110378
IF: 5.7
Application: WB
Reactivity: Nicotiana benthamiana
Publish date: 2025 Aug
-
Palmatine attenuates MYH9 mediated nuclear localization of AURKA to induce G2/M phase arrest in colorectal cancer cells
Journal: International Immunopharmacology
DOI:
IF: 4.8
Application: WB
Reactivity: Mouse
Publish date: 2024 Nov
-
RNAi screens identify HES4 as a regulator of redox balance supporting pyrimidine synthesis and tumor growth
Journal: Nature Structural & Molecular Biology
DOI:
IF: 16.8
Application: WB
Reactivity: Human
Publish date: 2024 May
-
N6-methyladenosine-modified SENP1, identified by IGF2BP3, is a novel molecular marker in acute myeloid leukemia and aggravates progression by activating AKT signal via de-SUMOylating HDAC2
Journal: Molecular Cancer
DOI: 10.1186/s12943-024-02013-y
IF: 27.7
Application: WB,IP
Reactivity: Human
Publish date: 2024 May
-
The expanded ISG12 family in zebrafish: ISG12. 1 suppresses virus replication via targeting viral phosphoprotein
Journal: Developmental And Comparative Immunology
DOI:
IF: 2.9
Application: IP
Reactivity: Species independent
Publish date: 2023 May
-
GRAMD4 regulates PEDV-induced cell apoptosis inhibiting virus replication via the endoplasmic reticulum stress pathway
Journal: Veterinary Microbiology
DOI:
IF:
Application: WB,IP,IF-cell
Reactivity: Human,Chlorocebus sabaeus
Publish date: 2023 Apr
-
Novel Dimeric Architecture of an IFN-γ–Related Cytokine Provides Insights into Subfunctionalization of Type II IFNs in Teleost Fish
Journal: Journal Of Immunology
DOI:
IF: 4.4
Application: WB
Reactivity: Human
Publish date: 2022 Dec
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