Engineering of a phosphorylatable tag for specific protein binding on zirconium phosphonate based microarrays - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY Année : 2012

Engineering of a phosphorylatable tag for specific protein binding on zirconium phosphonate based microarrays

Résumé

A phosphorylatable tag was designed and fused at the C-terminal end of proteins, which allowed efficient and oriented immobilization of capture proteins on glass substrates coated with a zirconium phosphonate monolayer. The concept is demonstrated using Nanofitin directed against lysozyme. This peptide tag (DSDSSSEDE) contains four serines in an acidic environment, which favored its in vitro phosphorylation by casein kinase II. The resulting phosphate cluster at the C-terminal end of the protein provided a specific, irreversible, and multipoint attachment to the zirconium surface. In a microarray format, the high surface coverage led to high fluorescence signal after incubation with Alexa Fluor 647 labeled lysozyme. The detection sensitivity of the microarray for the labeled target was below 50 pM, owing to the exceptionally low background staining, which resulted in high fluorescence similar to signal to noise ratios. The performance of this new anchoring strategy using a zirconium phosphonate modified surface compares favorably with that of other types of microarray substrates, such as nitrocellulose-based or epoxide slides, which bind proteins in a nonoriented way.

Domaines

Chimie

Dates et versions

hal-02142701 , version 1 (28-05-2019)

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Citer

Mathieu Cinier, Marc Petit, Frederic Pecorari, Daniel R. Talham, Bruno Bujoli, et al.. Engineering of a phosphorylatable tag for specific protein binding on zirconium phosphonate based microarrays. JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2012, 17 (3), pp.399-407. ⟨10.1007/s00775-011-0863-y⟩. ⟨hal-02142701⟩
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