Evolution of prokaryotic SPFH proteins
Open Access
- 12 January 2009
- journal article
- research article
- Published by Springer Nature in BMC Ecology and Evolution
- Vol. 9 (1) , 10
- https://doi.org/10.1186/1471-2148-9-10
Abstract
Background: The SPFH protein superfamily is a diverse family of proteins whose eukaryotic members are involved in the scaffolding of detergent-resistant microdomains. Recently the origin of the SPFH proteins has been questioned. Instead, convergent evolution has been proposed. However, an independent, convergent evolution of three large prokaryotic and three eukaryotic families is highly unlikely, especially when other mechanisms such as lateral gene transfer which could also explain their distribution pattern have not yet been considered. To gain better insight into this very diverse protein family, we have analyzed the genomes of 497 microorganisms and investigated the pattern of occurrence as well as the genomic vicinity of the prokaryotic SPFH members. Results: According to sequence and operon structure, a clear division into 12 subfamilies was evident. Three subfamilies (SPFH1, SPFH2 and SPFH5) show a conserved operon structure and two additional subfamilies are linked to those three through functional aspects (SPFH1, SPFH3, SPFH4: interaction with FtsH protease). Therefore these subgroups most likely share common ancestry. The complex pattern of occurrence among the different phyla is indicative of lateral gene transfer. Organisms that do not possess a single SPFH protein are almost exclusively endosymbionts or endoparasites. Conclusion: The conserved operon structure and functional similarities suggest that at least 5 subfamilies that encompass almost 75% of all prokaryotic SPFH members share a common origin. Their similarity to the different eukaryotic SPFH families, as well as functional similarities, suggests that the eukaryotic SPFH families originated from different prokaryotic SPFH families rather than one. This explains the difficulties in obtaining a consistent phylogenetic tree of the eukaryotic SPFH members. Phylogenetic evidence points towards lateral gene transfer as one source of the very diverse patterns of occurrence in bacterial species.Keywords
This publication has 40 references indexed in Scilit:
- The solution structure of the C‐terminal domain of NfeD reveals a novel membrane‐anchored OB‐foldProtein Science, 2008
- Crystal Structure of a Core Domain of Stomatin from Pyrococcus horikoshii Illustrates a Novel Trimeric and Coiled-Coil FoldJournal of Molecular Biology, 2008
- Linking membrane microdomains to the cytoskeleton: Regulation of the lateral mobility of reggie‐1/flotillin‐2 by interaction with actinFEBS Letters, 2007
- Contribution of Horizontally Acquired Genomic Islands to the Evolution of the Tubercle BacilliMolecular Biology and Evolution, 2007
- Global extent of horizontal gene transferProceedings of the National Academy of Sciences, 2007
- Pfam: clans, web tools and servicesNucleic Acids Research, 2006
- CDART: Protein Homology by Domain ArchitectureGenome Research, 2002
- Prohibitins act as a membrane-bound chaperone for the stabilization of mitochondrial proteinsThe EMBO Journal, 2000
- SMART: a web-based tool for the study of genetically mobile domainsNucleic Acids Research, 2000
- Predicting Coiled Coils from Protein SequencesScience, 1991