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Growing Magnetotactic Bacteria of the Genus Magnetospirillum: Strains MSR-1, AMB-1 and MS-1
Published on: October 17, 2018
A magnetosome-specific GTPase from the magnetic bacterium Magnetospirillum magneticum AMB-1
Y Okamura1, H Takeyama, T Matsunaga
1Department of Biotechnology, Tokyo University of Agriculture and Technology, Koganei, Tokyo 184-8588, Japan.
Abstract:
Magnetic bacteria produce intracellular vesicles that envelope single domain magnetite crystals. Although many proteins are present in this intracellular vesicle membrane, five are specific to this membrane. A 16-kDa protein, designated Mms16, is the most abundant of the magnetosome-specific proteins, and to establish its function we cloned and sequenced its gene from Magnetospirillum magneticum AMB-1. This was achieved by determination of the N-terminal amino acid sequence of the protein following two dimensional polyacrylamide gel electrophoresis, and sequencing of the gene was performed by gene walking using anchored polymerase chain reaction. Mms16 contains a putative ATP/GTP binding motif (P-loop). Recombinant Mms16 with a hemagglutinin tag, was expressed in Escherichia coli and purified. Recombinant Mms16 protein could bind GTP and showed GTPase activity. GTP was the preferred substrate for Mms16-catalyzed nucleotide triphosphate hydrolysis. These results suggest that a novel protein specifically localized on the magnetic particle membrane, Mms16, is a GTPase. Mms16 protein showed similar characteristics to small GTPases involved in the formation of intracellular vesicles. Furthermore, addition of the GTPase inhibitor AlF(4)- also inhibited magnetic particle synthesis, suggesting that GTPase is required for magnetic particles synthesis.
Insights
Magnetotactic bacteria utilize a specific protein, Mms16, as a GTPase for synthesizing intracellular magnetic particles. This discovery reveals a novel mechanism for biomineralization in these unique microorganisms.
Area of Science:
- Biochemistry
- Microbiology
- Biophysics
Background:
- Magnetic bacteria form intracellular vesicles containing magnetite crystals.
- Five proteins are specific to these magnetosome membranes, with Mms16 being the most abundant.
Purpose of the Study:
- To determine the function of the Mms16 protein in magnetosome formation.
- To investigate the role of Mms16 in the synthesis of magnetic particles.
Main Methods:
- Gene sequencing of Mms16 from Magnetospirillum magneticum AMB-1 using N-terminal amino acid sequencing and gene walking.
- Expression and purification of recombinant Mms16 in Escherichia coli.
- Assay of GTP binding and GTPase activity, including substrate specificity and inhibition studies.
Main Results:
- Mms16 possesses a putative ATP/GTP binding motif (P-loop).
- Recombinant Mms16 exhibits GTP binding and GTPase activity, with GTP as the preferred substrate.
- GTPase inhibition by AlF(4)- suppressed magnetic particle synthesis.
Conclusions:
- Mms16 is a novel GTPase specifically localized on the magnetic particle membrane.
- Mms16 shares characteristics with small GTPases involved in intracellular vesicle formation.
- GTPase activity is essential for the synthesis of magnetic particles in magnetotactic bacteria.
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