Institute of Biochemistry, Biocenter, Goethe University Frankfurt, Frankfurt, Germany.
Department of Structural Biology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Groningen, Netherlands.
Elife. 2022 Oct 18;11:e80988. doi: 10.7554/eLife.80988.
KdpFABC is a high-affinity prokaryotic K uptake system that forms a functional chimera between a channel-like subunit (KdpA) and a P-type ATPase (KdpB). At high K levels, KdpFABC needs to be inhibited to prevent excessive K accumulation to the point of toxicity. This is achieved by a phosphorylation of the serine residue in the TGES motif in the A domain of the pump subunit KdpB (KdpB). Here, we explore the structural basis of inhibition by KdpB phosphorylation by determining the conformational landscape of KdpFABC under inhibiting and non-inhibiting conditions. Under turnover conditions, we identified a new inhibited KdpFABC state that we termed E1P tight, which is not part of the canonical Post-Albers transport cycle of P-type ATPases. It likely represents the biochemically described stalled E1P state adopted by KdpFABC upon KdpB phosphorylation. The E1P tight state exhibits a compact fold of the three cytoplasmic domains and is likely adopted when the transition from high-energy E1P states to E2P states is unsuccessful. This study represents a structural characterization of a biologically relevant off-cycle state in the P-type ATPase family and supports the emerging discussion of P-type ATPase regulation by such states.
KdpFABC 是一种高亲和力的原核 K 吸收系统,它在通道样亚基(KdpA)和 P 型 ATP 酶(KdpB)之间形成功能性嵌合体。在高 K 水平下,需要抑制 KdpFABC 以防止 K 积累过多而产生毒性。这是通过泵亚基 KdpB(KdpB)A 域中 TGES 模体中的丝氨酸残基磷酸化来实现的。在这里,我们通过确定抑制和非抑制条件下 KdpFABC 的构象景观来探索 KdpB 磷酸化抑制的结构基础。在周转条件下,我们确定了一个新的抑制 KdpFABC 状态,我们将其命名为 E1P tight,它不是 P 型 ATP 酶典型的 Post-Albers 转运循环的一部分。它可能代表了 KdpFABC 在 KdpB 磷酸化后采用的生物化学描述的停滞 E1P 状态。E1P tight 状态表现出三个细胞质结构域的紧凑折叠,并且可能在从高能 E1P 状态到 E2P 状态的转变不成功时采用。本研究代表了 P 型 ATP 酶家族中生物学相关的非循环状态的结构特征,并支持了关于此类状态调节 P 型 ATP 酶的新兴讨论。