4-[2-[(E)-2-[(3Z)-3-[(2Z)-2-[3,3-dimethyl-1-(4-sulfobutyl)indol-2-ylidene]ethylidene]-2-(prop-2-ynylamino)cyclopenten-1-yl]ethenyl]-3,3-dimethylindol-1-ium-1-yl]butane-1-sulfonate

4-[2-[(E)-2-[(3Z)-3-[(2Z)-2-[3,3-dimethyl-1-(4-sulfobutyl)indol-2-ylidene]ethylidene]-2-(prop-2-ynylamino)cyclopenten-1-yl]ethenyl]-3,3-dimethylindol-1-ium-1-yl]butane-1-sulfonate Structure
4-[2-[(E)-2-[(3Z)-3-[(2Z)-2-[3,3-dimethyl-1-(4-sulfobutyl)indol-2-ylidene]ethylidene]-2-(prop-2-ynylamino)cyclopenten-1-yl]ethenyl]-3,3-dimethylindol-1-ium-1-yl]butane-1-sulfonate structure
Common Name 4-[2-[(E)-2-[(3Z)-3-[(2Z)-2-[3,3-dimethyl-1-(4-sulfobutyl)indol-2-ylidene]ethylidene]-2-(prop-2-ynylamino)cyclopenten-1-yl]ethenyl]-3,3-dimethylindol-1-ium-1-yl]butane-1-sulfonate
CAS Number 1188292-54-7 Molecular Weight 731.96400
Density N/A Boiling Point N/A
Molecular Formula C40H49N3O6S2 Melting Point N/A
MSDS USA Flash Point N/A

Metabolic click-labeling with a fucose analog reveals pectin delivery, architecture, and dynamics in Arabidopsis cell walls.

Proc. Natl. Acad. Sci. U. S. A. 109 , 1329-1334, (2012)

Polysaccharide-rich cell walls are a defining feature of plants that influence cell division and growth, but many details of cell-wall organization and dynamics are unknown because of a lack of suitable chemical probes. Metabolic labeling using sugar analogs ...

General method for labeling siRNA by click chemistry with fluorine-18 for the purpose of PET imaging.

Bioconjug. Chem. 22 , 108-114, (2011)

The alkyne-azide Cu(I)-catalyzed Huisgen cycloaddition, a click-type reaction, was used to label a double-stranded oligonucleotide (siRNA) with fluorine-18. An alkyne solid support CPG for the preparation of monostranded oligonucleotides functionalized with a...

Programmable sequence-specific click-labeling of RNA using archaeal box C/D RNP methyltransferases.

Nucleic Acids Res. 40 , 6765-6773, (2012)

Biophysical and mechanistic investigation of RNA function requires site-specific incorporation of spectroscopic and chemical probes, which is difficult to achieve using current technologies. We have in vitro reconstituted a functional box C/D small ribonucleo...

Growing applications of "click chemistry" for bioconjugation in contemporary biomedical research.

Cancer Biother. Radiopharm. 24 , 289-302, (2009)

This update summarizes the growing application of "click" chemistry in diverse areas such as bioconjugation, drug discovery, materials science, and radiochemistry. This update also discusses click chemistry reactions that proceed rapidly with high selectivity...