ChromoTek Spot-Label® Alexa Fluor® 647 ebAF647 proteintech

$179.00
In stock
SKU
ebAF647
Catalog No.SizePrice (USD)
ebAF647-1010 μL$179.00
ebAF647-5050 μL$415.00
SynonymsPDRVRAVSHWSS, Spot, Spot tag, Spot-Label, SPOT-tag
HostAlpaca
FormulationUnited States
ApplicationsIF
Host / IsotypeIF
Specificity/TargetSpot-Tag ® (PDRVRAVSHWSS)
ConjugateAlexa Fluor® 647
Physical StateLiquid
Suggested DilutionIF: 1:800
TypeNanobody; Primary antibody
ClassRecombinant
ClonalityMonoclonal
CloneCTK0216
Calculated MW30.3 kDa
RRIDAB_2889376
ImmunogenBeta-catenin, engineered epitope
FormatRecombinant alpaca single domain antibody, bivalent
Affinity (K D )Dissociation constant K D of 6 nM
DOL1 fluorophore per bivalent Nanobody, site-directed conjugation
Spot-Tag® OriginEngineered 12 amino acid sequence modified from the unstructured N-terminus of beta-catenin
Cross ReactivityThe Spot-Nanobody shows minimal cross reactivity with beta-catenin.
Excitation/ EmissionExcitation max: 650 nm, Emission max: 665 nm
Storage BufferPBS, 5 mM EDTA, preservative: 0.09 % sodium azide
Storage ConditionShipped at ambient temperature. Store at -20°C/-4°F. Stable for 6 month. Protect from light.
Size10 μL; 50 μL
NoteThis product is for research use only, not for diagnostic or therapeutic use
IFNature HIV-1 signalling remodels nuclear pores to licence infection. Authors - Dejan Mesner View Article

Description

Immunofluorescence of Spot-tagged proteins with anti-Spot Nanobody conjugated to fluorescent dye. Spot-Label is much smaller compared to conventional primary plus secondary IgG antibodies (IgG complex). Due to its small size, Spot-Label is optimal for effective labeling with minimal fluorophore displacement for super-resolution microscopy. • Capture and detection tag without compromises in applications • Higher image resolution • Superior accessibility and labelling of epitopes in crowded cellular/organelle environments • Strong avidity effect from bivalent form of Spot-VHH • Fulfills highest requirements on antibody validation: structure and function characterized

Publications

  1. HIV-1 signalling remodels nuclear pores to licence infection.
    Journal: Nature | Authors: Dejan Mesner | Species: IF | Application: Nature HIV-1 signalling remodels nuclear pores to licence infection. Authors - Dejan Mesner View Article

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