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Bacterial potassium channels (e.g., KcsA) are prototypical ion channels found in the cell membranes of bacteria, forming hydrophilic pores that selectively allow potassium ions (K⁺) to move down their electrochemical gradient[1][3][4]. These channels are typically tetramers, composed of four subunits that create a selective pore with a filter region lined by specific amino acids enabling K⁺ selectivity[4][6]. Ion channel formation in bacteria plays crucial roles in maintaining membrane potential, osmoregulation, and adaptation to environmental changes. The structure of these channels, first elucidated for the KcsA channel from *Streptomyces lividans*, has served as the archetype for understanding ion selectivity and conductance[4][6]. This structural insight underpins both physiological bacterial functions and antibacterial strategies based on channel disruption or inhibition.
Channel blocking (e.g., by toxins binding to the pore) Modulation of channel gating or selectivity
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