ChromoTek RFP-Booster Alexa Fluor® 568 rb2AF568 proteintech

$179.00
In stock
SKU
rb2AF568
Catalog No.SizePrice (USD)
rb2AF568-1010 μL$179.00
rb2AF568-5050 μL$415.00
SynonymsRFP, RFP-Booster, Red fluorescent protein, TagRFP, RFP tag
HostAlpaca
FormulationUnited States
ApplicationsIF, IHC, ICC
Host / IsotypeIF, IHC, ICC
Specificity/TargetmCherry, mPlum, mRFP, mRFPruby, mKate2 For the complete list, please click here: Fluorescent protein specificity table Nano-Booster
ConjugateAlexa Fluor® 568
Physical StateLiquid
Suggested DilutionIF/ICC/IHC: 1:500- 1:1,000
TypeNanobody
FormatAlpaca single domain antibody, Nanobody or VHH; monovalent
ClassRecombinant
DOL2 fluorophores per Nanobody
RRIDAB_2827576
Affinity (K D )Dissociation constant K D of 5nM
Excitation/ EmissionExcitation max: 578 nm, Emission max: 603 nm
Storage Buffer10 mM HEPES pH 7.0, 500 mM NaCl, 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
IFElife A light-gated transcriptional recorder for detecting cell-cell contacts. Authors - Kelvin F Cho View Article

Description

The RFP-Booster stabilizes, enhances, and reactivates the signal of RFP-fusion proteins such as mCherry, mRFP, etc.. Due to its small size, the RFP-Booster enables higher image quality in epifluorescence, confocal, and super-resolution microscopy: • Considerably higher tissue penetration rates • Superior accessibility and labelling of epitopes in crowded cellular/organelle environments • Less than 2 nm epitope-label displacement minimizes linkage error • Monovalent VHHs do not cluster their epitopes • Validation: structure and function characterized • Consistent and reliable performance due to recombinant production

Publications

  1. Brain-wide neuronal circuit connectome of human glioblastoma
    Journal: Nature | Authors: Yusha Sun | Application: Nature Brain-wide neuronal circuit connectome of human glioblastoma Authors - Yusha Sun View Article
  2. Identification of a core transcriptional program driving the human renal mesenchymal-to-epithelial transition
    Journal: Dev Cell | Authors: John-Poul Ng-Blichfeldt | Species: IF | Application: Dev Cell Identification of a core transcriptional program driving the human renal mesenchymal-to-epithelial transition Authors - John-Poul Ng-Blichfeldt View Article
  3. Mauve/LYST limits fusion of lysosome-related organelles and promotes centrosomal recruitment of microtubule nucleating proteins.
    Journal: Dev Cell | Authors: Ramona Lattao | Species: IF | Application: Dev Cell Mauve/LYST limits fusion of lysosome-related organelles and promotes centrosomal recruitment of microtubule nucleating proteins. Authors - Ramona Lattao View Article
  4. MYO10-filopodia support basement membranes at pre-invasive tumor boundaries
    Journal: Dev Cell | Authors: Emilia Peuhu | Species: IF | Application: Dev Cell MYO10-filopodia support basement membranes at pre-invasive tumor boundaries Authors - Emilia Peuhu View Article
  5. A light-gated transcriptional recorder for detecting cell-cell contacts.
    Journal: Elife | Authors: Kelvin F Cho | Species: IF | Application: Elife A light-gated transcriptional recorder for detecting cell-cell contacts. Authors - Kelvin F Cho View Article
  6. Chronic low-dose deltamethrin exposure induces colon injury and aggravates DSS-induced colitis via promoting cellular senescence
    Journal: Ecotoxicol Environ Saf | Authors: Rulan Ma | Application: Ecotoxicol Environ Saf Chronic low-dose deltamethrin exposure induces colon injury and aggravates DSS-induced colitis via promoting cellular senescence Authors - Rulan Ma View Article
  7. Identification of a core transcriptional program driving the human renal mesenchymal-to-epithelial transition
    Journal: Dev Cell | Authors: John-Poul Ng-Blichfeldt | Application: IF
  8. Targeting the tamoxifen receptor within sodium channels to block osteoarthritic pain
    Journal: Cell Rep | Authors: Megan M Mccollum | Species: mouse | Application: IF
  9. Chronic exposure to low-dose deltamethrin can lead to colon tissue injury through PRDX1 inactivation-induced mitochondrial oxidative stress injury and gut microbial dysbiosis
    Journal: Ecotoxicol Environ Saf | Authors: Rulan Ma | Species: human,mouse | Application: IF
  10. Chronic low-dose deltamethrin exposure induces colon injury and aggravates DSS-induced colitis via promoting cellular senescence
    Journal: Ecotoxicol Environ Saf | Authors: Rulan Ma
  11. A recently evolved domain of the human ING1 epigenetic regulator targets mitochondria and induces senescence.
    Journal: Cell Mol Life Sci | Authors: Jessica Bertschmann | Application: IF
  12. Plasma-activated solutions reverse chronic deltamethrin exposure induced intestinal injury via rebalancing redox homeostasis and counteracting cellular senescence.
    Journal: Sci Rep | Authors: Xiaoyuan Deng | Species: mouse | Application: IF
  13. Roles of the lamin A-specific tail region in the localization to sites of nuclear envelope rupture
    Journal: PNAS Nexus | Authors: Yohei Kono | Application: IF
  14. Norepinephrine Neurons in the Nucleus of the Solitary Tract Suppress Luteinizing Hormone Secretion in Female Mice
    Journal: J Neurosci | Authors: Richard B McCosh | Species: mouse | Application: IF
  15. An in vivo CRISPR screen in chick embryos reveals a role for MLLT3 in specification of neural cells from the caudal epiblast
    Journal: Development | Authors: Ashley R G Libby | Application: IF
  16. RCC1 depletion drives protein transport defects and rupture in micronuclei
    Journal: bioRxiv | Authors: Molly G Zych | Species: mouse,human | Application: IF
  17. Granular component sub-phases direct ribosome biogenesis in the nucleolus
    Journal: bioRxiv | Authors: Priyanka Dogra | Application: IF
  18. Brain-wide neuronal circuit connectome of human glioblastoma
    Journal: bioRxiv | Authors: Yusha Sun | Application: IF
  19. RCC1 depletion drives protein transport defects and rupture in micronuclei
    Journal: bioRxiv | Authors: Molly G Zych | Species: mouse,human | Application: IF

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