Interactions of in vitro selected fluorogenic peptide aptamers with calmodulin.

Biotechnol Lett

Nano Medical Engineering Laboratory, RIKEN, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.

Published: March 2017

AI Article Synopsis

  • The study focused on how aptamers, specifically those selected for calmodulin (CaM), perform better when used in conditions similar to those during their selection process.
  • Researchers added five amino acids to one of the aptamers and found that this significantly improved its binding affinity to CaM, which was measured using advanced techniques like surface plasmon resonance and fluorescence.
  • The findings revealed that the best binding site for CaM was at its C-terminal and that strategically adding common sequences could enhance the aptamer's effectiveness, making it comparable to previously reported peptides.

Article Abstract

Objectives: We examined the importance of aptamer usage under the same condition as the selection process by employing the previously selected aptamers for calmodulin (CaM) which includes a non-natural fluorogenic amino acid, 7-nitro-2,1,3-benzoxadiazole.

Results: We added five amino acids at the N-terminus which was employed for the selection and then we tested the affinity and selectivity for CaM binding. Surface plasmon resonance and fluorescence measurements showed that the additional amino acids for one of the aptamers drastically improved binding affinity to CaM, indicating the importance of aptamer use under the same conditions as the selection process. Such drastic improvement in affinity was not observed for the sequence which had been reported previously. Nuclear magnetic resonance data identified that the primary binding site is located in a C-terminal of CaM and the additional residues enhance interactions with CaM.

Conclusions: We found that the addition of the common sequence, which was employed for ribosome display, makes the affinity of a selected peptide as strong as the previously reported peptide.

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Source
http://dx.doi.org/10.1007/s10529-016-2257-2DOI Listing

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