| Literature DB >> 24523717 |
Hila Nudelman1, Raz Zarivach1.
Abstract
Magnetotactic bacteria (MTB) are Gram-negative bacteria that can navigate along geomagnetic fields. This ability is a result of a unique intracellular organelle, the magnetosome. These organelles are composed of membrane-enclosed magnetite (Fe3O4) or greigite (Fe3S4) crystals ordered into chains along the cell. Magnetosome formation, assembly, and magnetic nano-crystal biomineralization are controlled by magnetosome-associated proteins (MAPs). Most MAP-encoding genes are located in a conserved genomic region - the magnetosome island (MAI). The MAI appears to be conserved in all MTB that were analyzed so far, although the MAI size and organization differs between species. It was shown that MAI deletion leads to a non-magnetic phenotype, further highlighting its important role in magnetosome formation. Today, about 28 proteins are known to be involved in magnetosome formation, but the structures and functions of most MAPs are unknown. To reveal the structure-function relationship of MAPs we used bioinformatics tools in order to build homology models as a way to understand their possible role in magnetosome formation. Here we present a predicted 3D structural models' overview for all known Magnetospirillum gryphiswaldense strain MSR-1 MAPs.Entities:
Keywords: Protein structure–function; magnetosome; magnetotactic bacteria; membrane invagination; structure prediction
Year: 2014 PMID: 24523717 PMCID: PMC3905215 DOI: 10.3389/fmicb.2014.00009
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Summary and characteristic of all magnetosome-associated proteins that are encoded in Magnetospirillum gryphiswaldense MSR-1strain.
| Protein | Number of amino acid | Transmembrane helices | Domain | Predicted structure template | % Structure confidence or sequence identity ( | Major function in |
|---|---|---|---|---|---|---|
| MamE | 591 | 1 (27–48) | Magnetochrome, trypsin and PDZ | 2Z9I | 100% | Biomineralization |
| MamT | 174 | 1 (10–28) | Magnetochrome | Secondary structure only | – | Biomineralization |
| MamO | 632 | 8 (1-N-terminal, 7-C-terminal) | Trypsin and anion transport | 1LCY | 17% | Biomineralization, iron transport |
| MamH | 428 | 12 | MFS, similar to MamZ | 2XUT, 4JOD (PiPT) | 100% | Biomineralization |
| MamI | 77 | 2 | No conserved domain | Secondary structure only | – | Membrane invagination |
| MamP | 270 | 1 (N-terminal) | PDZ, magnetochrome | 4JJ3 (MamP, MO-1) | Structure was determent | Biomineralization |
| MamN | 437 | 11 | Na+/H+ antiporter | 4F35 (monomer) | 100% | Biomineralization, iron transport and nucleation |
| MamD | 314 | 1 (C-terminal) | No conserved domain | 3C12 (FlgD) – only N-terminal | 77.10% | Crystal shape |
| MamM | 318 | 3 | CDF, metal carrier | 3H90 (FieF) | 100% | Iron transport |
| MamB | 297 | 3 | CDF, metal carrier | 3H90 (FieF) | 100% | Iron transport |
| MamQ | 273 | 1 (N-terminal) | LemA protein | 2ETD (LemA) | 100% | MM formation |
| MamR | 72 | – | DNA-binding | 2KFS (RV2175c) | 95.50% | Crystal shape |
| MamS | 180 | 1 (N-terminal) | OB fold | 1NNX (YgiW) | 91.80% | Post-nucleation |
| MamZ | 661 | 18 | YedZ- like domain (C-terminal), MFS (N-TER) | 1PW4 (GlpT), 3CX5 (cytochrome C) | N-terminal (100%), C-terminal (32.86%) | Biomineralization (C-terminal) |
| MamJ | 426 | – | CAR domain mostly unstructured, TonB | Unstructured protein | – | Magnetosome arragment into chain structure |
| MamK | 360 | Filaments structure (MreB, ParM)-actin-like, ATP binding site | 1JCF (MreB) | 100% | Magnetosome arragment into chain structure | |
| MamL | 123 | 2 | Similar to MamI | Secondary structure only | – | Membrane invagination |
| MamA | 217 | – | TPR | 3AS4 (MamA, AMB-1), 3AS8 (MamA, MSR-1), 2MUC | Structure was determent | Surrounded the magnetosome vesicles |
| (MamA, | ||||||
| MamU | 297 | – | DGKs | 3T5P | 2.00E-15 | Membrane invagination |
| MamX | 269 | 1 (N-terminal) | Similar to MamE and MamS, cytochrome, DNA-binding domain | 1OGY, 1JNI, 3ML1, 1QO8 (cytochrome C) 2CQA, 3KDF, 3KF6 (OB fold) | 90% (N-terminal) | Crystal maturation |
| 69% (C-terminal) | ||||||
| MamY | 371 | 2 (N-terminal) | BAR domain | 1SJ8 (talin) | 95.40% | Membrane invagination |
| FtsZ like | 323 | – | GTPase actin domain | 2RHL | 1.00E-92 | Crystal size and cell division |
| MamC | 125 | 2 | No conserved domain | Secondary structure only | – | Crystal size and shape |
| MamG | 84 | 2 | Similar to MamD and Mms6 | Secondary structure only | – | Crystal size and shape |
| MamF | 124 | 3 | Similar to MmsF | Secondary structure only | – | Crystal size and shape |
| Mms6 | 136 | 1 | C-terminal highly acidic involved in nucleation | Base on energy calculations of the sequence | Crystal size and shape |