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This study explores the molecular architecture and spatial positioning of the FliG protein within the cytoplasmic membrane. We analyze the interactions and dynamics at various angular positions, such as 0°, 90°, and 45°, alongside measurement data indicating the distances of 35 nm, 57 nm, and 54 nm. Understanding the spatial arrangement and function of FliG is crucial for deciphering its role in cellular processes involving motility and signal transduction.
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