KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure survival at K+ limitation. Here, we apply a combination of cryo-EM, biochemical assays, and MD simulations to illuminate the mechanisms underlying transport and the coupling to ATP hydrolysis. We show that ions are transported via an intersubunit tunnel through KdpA and KdpB. At the subunit interface, the tunnel is constricted by a phenylalanine, which, by polarized cation-π stacking, controls K+ entry into the canonical substrate binding site (CBS) of KdpB. Within the CBS, ATPase coupling is mediated by the charge distribution between an aspartate and a lysine. Interestingly, individual elements of the ion translocation mechanism of KdpFABC...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
Due to the vital prerequisite for K+ ions in bacterial cells, involved in important processes, such ...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
In bacteria, K+ is used to maintain cell volume and osmotic potential. Homeostasis normally involves...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
Due to the vital prerequisite for K+ ions in bacterial cells, involved in important processes, such ...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
KdpFABC, a high-affinity K+ pump, combines the ion channel KdpA and the P-type ATPase KdpB to secure...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
In bacteria, K+ is used to maintain cell volume and osmotic potential. Homeostasis normally involves...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
P-type ATPases ubiquitously pump cations across biological membranes to maintain vital ion gradients...
Due to the vital prerequisite for K+ ions in bacterial cells, involved in important processes, such ...