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9GSA

Lys9DabMC6*a 1-Delta

Summary for 9GSA
Entry DOI10.2210/pdb9gsa/pdb
NMR InformationBMRB: 34959
DescriptorACE-ASP-GLU-AIB-GLN-LEU-SER-AIB-GLN-DAB-ARG-NH2, ACE-ASP-LEU-GLN-GLN-LEU-HIS-SER-GLN-LYS-ARG-LYS-ILE-THR-LEU-NH2, HYDROXIDE ION, ... (4 entities in total)
Functional Keywordsalpha-helix, design, miniaturized metalloproteins, de novo protein
Biological sourcesynthetic construct
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Total number of polymer chains2
Total formula weight3490.83
Authors
Maglio, O.,Lombardi, A.,Chino, M.,Pirro, F. (deposition date: 2024-09-13, release date: 2026-01-14, Last modification date: 2026-05-13)
Primary citationChino, M.,Cerrone, C.,Pirro, F.,De Fenza, M.,Demeshko, S.,Maglio, O.,Meyer, F.,Lombardi, A.
Iron to Cobalt Swapping in a Bioinspired Heme-Peroxidase: Structural Characterization and Functional Implications.
Inorg.Chem., 65:9359-9371, 2026
Cited by
PubMed Abstract: Artificial heme enzymes offer unique opportunities to disentangle structure-function relationships and design novel biocatalysts. Mimochromes (MCs) are artificial, small-sized heme proteins able to reproduce the structural and functional features of natural heme enzymes. Here, we report the spectroscopic and structural investigation of a Mimochrome VI (MC6) analogue, Lys9DabMC6*a, for which we were previously able to isolate two distinct regioisomers. Mössbauer and EPR spectroscopy revealed distinct pH-dependent high-spin and quantum mixed-spin states in the Fe(III) complexes for both regioisomers. A detailed structural characterization was performed by NMR spectroscopy on the diamagnetic Co(III) analogues, providing high-resolution structures of the two isolated regioisomers. Both species show the intended helix-heme-helix sandwich fold but differ in interhelical orientation, axial histidine positioning, and second-sphere interactions, despite having the same peptide composition. Based on the reported electronic properties and structural features, we retrospectively attempt to elucidate the differences in substrate affinity and turnover frequency between the two regioisomers. Our results provide useful insights for the rational evolution of heme-based artificial minienzymes and highlight the minimal determinants required to achieve catalytic diversity.
PubMed: 42021456
DOI: 10.1021/acs.inorgchem.5c05553
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

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