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ChemicalBook--->CAS DataBase List--->1377605-22-5

1377605-22-5

1377605-22-5 Structure

1377605-22-5 Structure
IdentificationBack Directory
[Name]

Biotinylated isoxazole 95%
[CAS]

1377605-22-5
[Synonyms]

Biotin isoxazole
Biotinylated isoxazole
Biotinylated isoxazole 95%
1H-Thieno[3,4-d]imidazole-4-pentanoic acid, hexahydro-2-oxo-, 6-[[[5-(2-thienyl)-3-isoxazolyl]carbonyl]amino]hexyl ester, (3aS,4S,6aR)-
[Molecular Formula]

C24H32N4O5S2
[MOL File]

1377605-22-5.mol
[Molecular Weight]

520.66
Chemical PropertiesBack Directory
[Boiling point ]

800.4±65.0 °C(Predicted)
[density ]

1.251±0.06 g/cm3(Predicted)
[storage temp. ]

-20°C
[solubility ]

Soluble in DMSO (30 mg/ml with warming)
[form ]

powder or crystals
[pka]

13.77±0.46(Predicted)
[color ]

Beige
[Stability:]

Stable for 2 years as supplied. Solutions in DMSO may be stored at -20°C for up to 1 month.
Hazard InformationBack Directory
[Description]

Biotin-isoxazole (1377605-22-5) precipitates hundreds of RNA-binding proteins with significant overlap to the constituents of RNA granules.1,2 In one study roughly 580 nuclear proteins were identified as being precipitated by B-Isox including TAF15, RNA polymerase II (largest subunit), numerous subunits of the mediator complex as well as a variety of enzymes involved in epigenetic modification of histones.3? SR domains were found to be the determinant that facilitates B-Isox precipitation.4 Also allows for the fractionation / isolation of SG-associated proteins and RNA precipitates.5
[Uses]

When exposed to cells or tissue lysates, biotinylated isoxazole (b-isox) was shown to precipitate RNA-binding proteins with significant overlap to the components of RNA granules. By reversibly aggregating and disaggregating structures similar to RNA granules, b-isox has lent insight to polypeptides necessary for the reversible aggregation of RNA-binding proteins.

This product was previously listed as T511617.
[References]

Kato et al. (2012), Cell-free formation of rNA granules: low complexity sequence domains form dynamic fibers within hydrogels; Cell, 149 753 Han et al. (2012), Cell-free formation of RNA granules: bound RNAs identify features and components of cellular assemblies; Cell, 149 768 Kwon et al. (2013), Phosphorylation-regulated binding of RNA polymerase II to fibrous polymers of low-complexity domains; Cell, 155 1049 Kwon et al. (2014), Poly-dipeptides encoded by the C9orf72 repeats bind nucleoli, impede RNA biogenesis, and kill cells; Science, 345 1139 Panas et al. (2015), Methods for the characterization of stress granules in virus infected cells; Methods, 90 57
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