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This study seeks to contribute to the future design of a one-bead one-compound (OBOC) peptide library of POP substrates, based on an intramolecular energy transfer substrate.
In addition to providing information about substrate specificity, a very intriguing observation in our study was the dramatic increase of the catalytic efficiency of substrates based on unnatural amino acids compared to those containing natural ones.
These SERS-active substrates based on Ag CDs are all low-cost and allowing a "one way use".
After these first investigations, other ligand-based approaches were developed to identify new possible P-gp substrates, based on different approaches such as pharmacophoric patterns, machine-learning algorithms, and quantitative structure activity relationship (QSAR) studies among others [ 10– 22].
To increase the labeling efficiency in this two-step procedure, two strategies have been successfully developed: one involves genetic encoding of highly reactive, yet biocompatible, substrates based on the notion of substrate distortion/activation; the other employs transition metal catalysts to accelerate the reactions.
Wang, H. H. et al. Highly Raman-Enhancing Substrates Based on Silver Nanoparticle Arrays with Tunable Sub-10 nm Gaps.
Two types of feeding substrates, based on MCC and a mixture of MCC with PDB (1 1, w-w), were prepared.
We show that accessory (non-ATPase) subunits of ISWI remodelers can distinguish between differentially modified nucleosomes, directing remodeling activity toward specific nucleosome substrates based on their modification state.
We rank putative substrates based on calculated interaction energy with a modeled near-attack conformation of the enzyme active site.
This paper describes the underlying analytical and algorithmic substrates based on randomization for job distribution, replication, monitoring, aggregation and oblivious resource sharing and communication between participating hosts.
Herein, we report our attempt to address this issue by fabricating SERS-active substrates based on discarded silver (Ag) compact disks (CDs).
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