Angewandte Chemie International Edition · 2020 · 56 citations · 39 references
The selective hydrolysis of proteins by non-enzymatic catalysis is difficult to achieve, yet it is crucial for applications in biotechnology and proteomics. Herein, we report that discrete hafnium metal-oxo cluster [Hf<sub>18</sub> O<sub>10</sub> (OH)<sub>26</sub> (SO<sub>4</sub> )<sub>13</sub> ⋅(H<sub>2</sub> O)<sub>33</sub> ] (Hf<sub>18</sub> ), which is centred by the same hexamer motif found in many MOFs, acts as a heterogeneous catalyst for the efficient hydrolysis of horse heart myoglobin (HHM) in low buffer concentrations. Among 154 amino acids present in the sequence of HHM, strictly selective cleavage at only 6 solvent accessible aspartate residues was observed. Mechanistic experiments suggest that the hydrolytic activity is likely derived from the actuation of Hf<sup>IV</sup> Lewis acidic sites and the Brønsted acidic surface of Hf<sub>18</sub> . X-ray scattering and ESI-MS revealed that Hf<sub>18</sub> is completely insoluble in these conditions, confirming the HHM hydrolysis is caused by a heterogeneous reaction of the solid Hf<sub>18</sub> cluster, and not from smaller, soluble Hf species that could leach into solution.
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Jennifer L. Proc, Michael A. Kuzyk, Darryl B. Hardie et al. · Journal of Proteome Research · 2010 · 346 citations · Full text
Digestion Protocols, Digestion Efficiency, Protein Purification +20