Stautz Janina, Griwatz David, Kaltwasser Susann, Mehdipour Ahmad Reza, Ketter Sophie, Thiel Celina, Wunnicke Dorith, Schrecker Marina, Mills Deryck J, Hummer Gerhard, Vonck Janet, Hänelt Inga
Institute of Biochemistry, Goethe University Frankfurt, Frankfurt am Main, Germany.
Central Electron Microscopy Facility, Max Planck Institute of Biophysics, Frankfurt am Main, Germany.
Nat Commun. 2025 May 7;16(1):4252. doi: 10.1038/s41467-025-59546-z.
K homeostasis is crucial for bacterial survival. The bacterial K+ channel KtrAB is regulated by the binding of ADP and ATP to the cytosolic RCK subunits KtrA. While the ligand-induced conformational changes in KtrA are well described, the transmission to the gating regions within KtrB is not understood. Here, we present a cryo-EM structure of the ADP-bound, inactive KtrAB complex from Vibrio alginolyticus, which resolves part of KtrB's N termini. They are short intrinsically disordered regions (IDRs) located at the interface of KtrA and KtrB. We reveal that these IDRs play a decisive role in ATP-mediated channel opening, while the closed ADP-bound state does not depend on the N-termini. We propose an allosteric mechanism, in which ATP-induced conformational changes within KtrA trigger an interaction of KtrB's N-terminal IDRs with the membrane, stabilizing the active and conductive state of KtrAB.
钾离子稳态对细菌生存至关重要。细菌钾离子通道KtrAB受ADP和ATP与胞质RCK亚基KtrA结合的调节。虽然KtrA中配体诱导的构象变化已有详细描述,但对KtrB内门控区域的传导情况尚不清楚。在此,我们展示了来自溶藻弧菌的与ADP结合的无活性KtrAB复合物的冷冻电镜结构,该结构解析了KtrB的部分N端。它们是位于KtrA和KtrB界面处的短的内在无序区域(IDR)。我们发现这些IDR在ATP介导的通道开放中起决定性作用,而ADP结合的关闭状态不依赖于N端。我们提出了一种变构机制,其中ATP诱导的KtrA内构象变化触发KtrB的N端IDR与膜的相互作用,稳定KtrAB的活性和传导状态。