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Terahara, N.

Publications and source records attributed to Terahara, N..

2 recordsLinked to original sources

Stator remodeling mechanism of Bacillus subtilis flagellar motor during biofilm development

Bacillus subtilis possesses two distinct types of stator protein complexes for the flagellar motor: H+-type MotAB and Na+-type MotPS. The MotPS complex is used when both the external Na+ concentration and viscosity are high. Because deletion of the motPS genes does not affect swimming motility of cells, a physiological role of MotPS-dependent motility remains unclear. Here, we report that the MotPS stator complex is required for efficient biofilm maturation. Depletion of the MotPS complex did not cause a significant delay in the initiation of biofilm formation but reduced the number of viable cells in the biofilm. The MotAB stator units were efficiently replaced by the MotPS complexes with an increase in the viscosity of the environments. Therefore, we propose that MotPS-dependent motility of motile cells in the biofilm structure is required to efficiently keep the bacterial society in the biofilm healthy.

microbiology

Sub-3 A resolution structure of apoferritin using a multi-purpose TEM with a side-entry cryo-holder

The structural analysis of protein complexes by cryo-electron microscopy (cryo-EM) single particle analysis (SPA) has had great impact as a biophysical method in recent years. Many results of cryo-EM SPA are based on state-of-the-art cryo-electron microscopes customized for SPA. These are currently only available in limited locations around the world, where securing machine time is highly competitive. One potential solution for this time-competitive situation is to reuse existing multi-purpose equipment. Here, we used a multi-purpose TEM with a side entry cryo-holder at our facility to evaluate the potential of high-resolution SPA. We report a 3 [A] resolution map of apoferritin with local resolution extending to 2.6 [A]. The map clearly showed two positions of an aromatic side chain. We also verified the optimal imaging conditions depending on different electron microscope and camera combinations. This study demonstrates the possibilities of more widely available and established electron microscopes, and their applications for cryo-EM SPA.

molecular biology