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Biochemical and spectroscopic characterization of dinuclear Mn-sites in artificial four-helix bundle proteins.

Biochim Biophys Acta.. 2017-12; 
Olson TL, Espiritu E, Edwardraja S, Canarie E, Flores M, Williams JC, Ghirlanda G, Allen JP.
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Gene Synthesis ... USA). The DNA sequence was obtained by reverse-translation of the designed protein sequences with the codon usage optimized for E. coli using DNAWorks [28] and was commercially synthesized (Genscript, USA) (Fig. S2). ... Get A Quote

摘要

To better understand metalloproteins with Mn-clusters, we have designed artificial four-helix bundles to have one, two, or three dinuclear metal centers able to bind Mn(II). Circular dichroism measurements showed that the Mn-proteins have substantial α-helix content, and analysis of electron paramagnetic resonance spectra is consistent with the designed number of bound Mn-clusters. The Mn-proteins were shown to catalyze the conversion of hydrogen peroxide into molecular oxygen. The loss of hydrogen peroxide was dependent upon the concentration of protein with bound Mn, with the proteins containing multiple Mn-clusters showing greater activity. Using an oxygen sensor, the oxygen concentration was found to incre... More

关键词

Catalase; De novo design; Electron transfer; Metalloproteins; Photosynthesis
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