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. 2022 Dec;52(4):263-275.
doi: 10.1007/s11084-022-09630-x. Epub 2022 Nov 16.

Evaluating Mineral Lattices as Evolutionary Proxies for Metalloprotein Evolution

Affiliations

Evaluating Mineral Lattices as Evolutionary Proxies for Metalloprotein Evolution

Kenneth N McGuinness et al. Orig Life Evol Biosph. 2022 Dec.

Abstract

Protein coordinated iron-sulfur clusters drive electron flow within metabolic pathways for organisms throughout the tree of life. It is not known how iron-sulfur clusters were first incorporated into proteins. Structural analogies to iron-sulfide minerals present on early Earth, suggest a connection in the evolution of both proteins and minerals. The availability of large protein and mineral crystallographic structure data sets, provides an opportunity to explore co-evolution of proteins and minerals on a large-scale using informatics approaches. However, quantitative comparisons are confounded by the infinite, repeating nature of the mineral lattice, in contrast to metal clusters in proteins, which are finite in size. We address this problem using the Niggli reduction to transform a mineral lattice to a finite, unique structure that when translated reproduces the crystal lattice. Protein and reduced mineral structures were represented as quotient graphs with the edges and nodes corresponding to bonds and atoms, respectively. We developed a graph theory-based method to calculate the maximum common connected edge subgraph (MCCES) between mineral and protein quotient graphs. MCCES can accommodate differences in structural volumes and easily allows additional chemical criteria to be considered when calculating similarity. To account for graph size differences, we use the Tversky similarity index. Using consistent criteria, we found little similarity between putative ancient iron-sulfur protein clusters and iron-sulfur mineral lattices, suggesting these metal sites are not as evolutionarily connected as once thought. We discuss possible evolutionary implications of these findings in addition to suggesting an alternative proxy, mineral surfaces, for better understanding the coevolution of the geosphere and biosphere.

Keywords: FeS minerals; Ferredoxin; Greigite; Iron-sulfur clusters; Mineral evolution; Protein evolution; Protein-mineral co-evolution.

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References

    1. Andreini C, Banci L, Bertini I et al (2007) Non-heme iron through the three domains of life. Proteins Struct Funct Bioinforma 67:317–324. https://doi.org/10.1002/prot.21324 - DOI
    1. Andreini C, Bertini I, Cavallaro G et al (2009) Structural analysis of metal sites in proteins: Non-heme iron sites as a case study. J Mol Biol 388:356–380. https://doi.org/10.1016/j.jmb.2009.02.052 - DOI
    1. Andreini C, Cavallaro G, Lorenzini S (2012) FindGeo: A tool for determining metal coordination geometry. Bioinformatics. https://doi.org/10.1093/bioinformatics/bts246 - DOI
    1. Andrews LC, Bernstein HJ, Sauter NK (2019) Selling reduction versus Niggli reduction for crystallographic lattices. Acta Crystallogr Sect A Found Adv 75:115–120. https://doi.org/10.1107/S2053273318015413 - DOI
    1. Bahiense L, Manić G, Piva B, De Souza CC (2012) The maximum common edge subgraph problem: A polyhedral investigation. Discret Appl Math 160:2523–2541. https://doi.org/10.1016/j.dam.2012.01.026 - DOI

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