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Tag Antibodies — Complete Guide to His, Flag, Strep, HA, Myc & More

Release date: 2026-06-23  View count: 72

Tag antibodies are essential reagents for detecting, purifying, and characterizing recombinant proteins in expression systems. Epitope tags — short peptide sequences or fusion proteins engineered onto the target protein — provide a universal detection handle that eliminates the need for target-specific antibodies during early-stage expression screening, purification validation, and protein interaction studies.

abinScience offers a comprehensive panel of tag antibodies covering all major epitope tags — His, Flag/DYKDDDDK, Strep-tag, HA, Myc, V5, GST, and MBP — in recombinant and monoclonal formats. Multiple conjugate options (unconjugated, HRP, FITC, PE, APC, biotin) enable direct detection across western blot, immunofluorescence, immunoprecipitation, ELISA, and flow cytometry workflows. For fluorescent protein tags, see our dedicated GFP & EGFP Detection Guide.

Common Protein Tags & Applications

Tag Name Sequence / Size Primary Use Popular Assays
His-tag (6×His) HHHHHH (~1 kDa) Ni-NTA / IMAC purification WB, ELISA, IP
Flag-tag (DYKDDDDK) DYKDDDDK (1.0 kDa) Immunoaffinity purification, enterokinase-cleavable WB, IP, IF, FC
Strep-tag II WSHPQFEK (1.1 kDa) Strep-Tactin affinity purification under native conditions WB, ELISA
HA-tag YPYDVPDYA (1.1 kDa) Detection in transient expression & co-IP WB, IP, IF, IHC
Myc-tag EQKLISEEDL (1.2 kDa) Immunological detection & dual-tag strategies WB, IF, ELISA
V5-tag GKPIPNPLLGLD (1.4 kDa) Expression validation in mammalian & insect cells WB, IF, FC, ELISA
GST 26 kDa fusion protein Glutathione affinity purification, solubility enhancement WB, ELISA, pull-down
MBP 42.5 kDa fusion protein Amylose purification, solubility enhancement in E. coli WB, ELISA

How to Choose the Right Tag Antibody

Your Application Recommended Format Why
Western blot (direct detection) HRP-conjugated anti-tag Skip secondary antibody step; faster protocol
Flow cytometry FITC / PE / APC-conjugated anti-tag Direct staining in multi-color panels
Co-immunoprecipitation Unconjugated anti-tag + Protein A/G beads Flexible bead coupling; high capture efficiency
Dual-tag experiments Two antibodies from different host species Avoid cross-reactivity between detection channels
ELISA / sandwich assay development Matched pair: unconjugated (capture) + HRP (detection) Optimized pairing for quantitative detection

Why Choose abinScience Tag Antibodies?

High specificity & low cross-reactivity — minimal background in endogenous protein detection

Validated across applications — WB, IF, IP, ELISA, flow cytometry

Multiple conjugates — unconjugated, HRP, FITC, PE, APC, PerCP, biotin for flexible assay design

Recombinant production — lot-to-lot consistency with defined sequence and low endotoxin

Flag Tag (DYKDDDDK): A Closer Look

The Flag tag is an eight-amino-acid peptide (DYKDDDDK, ~1.0 kDa) designed specifically for immunoaffinity purification and immunodetection of recombinant proteins. Unlike naturally derived tags such as His or GST, the Flag sequence was engineered de novo to be highly antigenic, hydrophilic, and non-interfering with protein folding — which is why it remains one of the most popular epitope tags in molecular biology research.

Flag vs 3×Flag: When to Use Which

The standard Flag tag is a single DYKDDDDK sequence. The 3×Flag (triple-Flag) tag consists of three tandem DYKDDDDK repeats separated by short linkers, producing a total peptide of ~2.7 kDa. The practical differences:

  Flag (1×) 3×Flag
Detection sensitivity Standard ~10× higher — three epitopes per molecule means more antibody binding sites, stronger WB signal
Best for Abundant proteins; applications where tag size matters Low-abundance proteins; ChIP, Co-IP, and other pulldown applications where sensitivity is critical
Tag removal Enterokinase cleaves after the DYKDDDDK sequence (requires C-terminal positioning) Same enterokinase site available; some 3×Flag vectors also include TEV or PreScission sites
Antibody compatibility Anti-Flag M2 clone recognizes both Anti-Flag M2 clone recognizes both (all three epitopes accessible)

Anti-Flag Tag Antibodies

The M2 clone is the industry standard anti-Flag antibody — it recognizes the DYKDDDDK sequence regardless of whether the tag is at the N-terminus, C-terminus, or internal position, and works with both Flag and 3×Flag constructs. abinScience offers M2 in multiple formats:

Product Name Catalog No. Clone Format Applications
Anti-Flag Tag (DYKDDDDK) Recombinant Antibody YP666013 M2 Unconjugated ChIP, ELISA, FCM, WB, IP, ICC, IF
Anti-Flag Tag (DYKDDDDK) Recombinant Antibody, HRP YP666913 M2 HRP-conjugated ChIP, ELISA, FCM, WB, IP, ICC, IF
Anti-Flag Tag (DYKDDDDK) Recombinant Antibody YP666023 2H8 Unconjugated ChIP, IF, IP, WB
Flag Tag Control Recombinant Protein (C-terminal) YP428012 Protein SDS-PAGE, WB, ELISA, Immunogen

Tip: For Co-IP experiments using Flag-tagged bait proteins, use the unconjugated M2 antibody (YP666013) with Protein A/G beads. The M2 clone has high IP capture efficiency and works with both native and crosslinked complexes. For direct WB detection without secondary antibody, use the HRP-conjugated M2 (YP666913).

Frequently Asked Questions

What is the difference between Flag-tag and DYKDDDDK-tag antibodies?

They are the same. DYKDDDDK is the amino acid sequence of the Flag-tag peptide. Some suppliers use "anti-DYKDDDDK" to avoid trademark issues associated with the "FLAG" name. abinScience anti-Flag antibodies recognize the DYKDDDDK epitope and are functionally identical regardless of naming convention.

Which tag should I use for my recombinant protein?

The choice depends on your downstream application. His-tag is the most universal choice for IMAC purification. Flag-tag is ideal when you need protease-cleavable tag removal (enterokinase site). Strep-tag II offers the gentlest purification conditions (native elution with desthiobiotin). For solubility-challenged proteins expressed in E. coli, GST or MBP fusion tags can significantly improve folding and yield. For fluorescent protein tags, see our GFP & EGFP guide.

Can I use the same anti-tag antibody for both western blot and flow cytometry?

The same clone can work for both, but you may need different conjugate formats. Use an HRP-conjugated version for western blot and a fluorochrome-conjugated version (FITC, PE, or APC) for flow cytometry. Unconjugated antibodies work for both when paired with an appropriate secondary antibody.

Do you offer anti-Twin-Strep-tag antibodies?

Yes. We offer a recombinant anti-Twin-Strep-tag antibody (clone SAA0348) that specifically recognizes the tandem Twin-Strep-tag format. Browse our Strep Tag antibody selection, or contact us for clone recommendations.

All products are for research use only (RUO). Not intended for diagnostic or therapeutic use.

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