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Design of a gold clustering site in an engineered apo-ferritin cage

Chemistry

Design of a gold clustering site in an engineered apo-ferritin cage

C. Lu, B. Maity, et al.

Discover the innovative engineering behind a unique gold clustering site within the apo-ferritin cage, capable of holding up to 12 gold atoms! This groundbreaking research, conducted by Chenlin Lu, Basudev Maity, Xue Peng, Nozomi Ito, Satoshi Abe, Xiang Sheng, Takafumi Ueno, and Diannan Lu, unveils the intricate role of amino acids in gold ion accumulation and cluster formation.... show more
Abstract
Water-soluble and biocompatible protein-protected gold nanoclusters (Au NCs) hold great promise for numerous applications. However, design and precise regulation of their structure at an atomic level remain challenging. Herein, we have engineered and constructed a gold clustering site at the 4-fold symmetric axis channel of the apo-ferritin cage. Using a series of X-ray crystal structures, we evaluated the stepwise accumulation process of Au ions into the cage and the formation of a multinuclear Au cluster in our designed cavity. We also disclosed the role of key residues in the metal accumulation process. X-ray crystal structures in combination with quantum chemical (QC) calculation revealed a unique Au clustering site with up to 12 Au atoms positions in the cavity. Moreover, the structure of the gold nanocluster was precisely tuned by the dosage of the Au precursor. As the gold concentration increases, the number of Au atoms position at the clustering site increases from 8 to 12, and a structural rearrangement was observed at a higher Au concentration. Furthermore, the binding affinity order of the four Au binding sites on apo-ferritin was unveiled with a stepwise increase of Au precursor concentration.
Publisher
Communications Chemistry
Published On
Mar 21, 2022
Authors
Chenlin Lu, Basudev Maity, Xue Peng, Nozomi Ito, Satoshi Abe, Xiang Sheng, Takafumi Ueno, Diannan Lu
Tags
gold clustering
apo-ferritin cage
X-ray crystallography
quantum chemical calculations
multinuclear gold cluster
amino acid residues
gold precursor concentration
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