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Merck

Catalytic DNA with phosphatase activity.

Proceedings of the National Academy of Sciences of the United States of America (2013-03-20)
Jagadeeswaran Chandrasekar, Scott K Silverman
要旨

Catalytic DNA sequences (deoxyribozymes, DNA enzymes, or DNAzymes) have been identified by in vitro selection for various catalytic activities. Expanding the limits of DNA catalysis is an important fundamental objective and may facilitate practical utility of catalysts that can be obtained from entirely unbiased (random) sequence populations. In this study, we show that DNA can catalyze Zn(2+)-dependent phosphomonoester hydrolysis of tyrosine and serine side chains (i.e., exhibit phosphatase activity). The best deoxyribozyme decreases the half-life for phosphoserine hydrolysis from as high as >10(10) y to <1 h. The phosphatase activity also occurs with nonpeptidic substrates but with reduced efficiency, indicating a preference for phosphopeptides. The newly identified deoxyribozymes can function with multiple turnover using free peptide substrates, have activity in the presence of human cell lysate or BSA, and catalyze dephosphorylation of a larger protein substrate, suggesting broader application of DNA catalysts as artificial phosphatases.

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製品内容

Sigma-Aldrich
マラカイトグリーン シュウ酸塩, certified by the Biological Stain Commission
Sigma-Aldrich
マラカイトグリーン シュウ酸塩, for microscopy, crystalline, S. No.: 754
Sigma-Aldrich
マラカイトグリーン シュウ酸塩, Technical grade
Sigma-Aldrich
O-ホスホ-L-チロシン
Sigma-Aldrich
O-Phospho-DL-serine, ≥98.0% (NT)
Supelco
マラカイトグリーン シュウ酸塩, VETRANAL®, analytical standard