首页> 美国卫生研究院文献>Scientific Reports >The cryo-EM structure of gastric H+K+-ATPase with bound BYK99 a high-affinity member of K+-competitive imidazo12-apyridine inhibitors
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The cryo-EM structure of gastric H+K+-ATPase with bound BYK99 a high-affinity member of K+-competitive imidazo12-apyridine inhibitors

机译:结合了BYK99的胃H +K + -ATPase的低温EM结构BYK99是具有K +竞争性的咪唑并12-a吡啶抑制剂的高亲和力成员

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摘要

The gastric proton pump H+,K+-ATPase acidifies the gastric lumen, and thus its inhibitors, including the imidazo[1,2-a]pyridine class of K+-competitive acid blockers (P-CABs), have potential application as acid-suppressing drugs. We determined the electron crystallographic structure of H+,K+-ATPase at 6.5 Å resolution in the E2P state with bound BYK99, a potent P-CAB with a restricted ring structure. The BYK99 bound structure has an almost identical profile to that of a previously determined structure with bound , the original P-CAB prototype, but is significantly different from the previously reported P-CAB-free form, illustrating a common conformational change is required for P-CAB binding. The shared conformational changes include a distinct movement of transmembrane helix 2 (M2), from its position in the previously reported P-CAB-free form, to a location proximal to the P-CAB binding site in the present BYK99-bound structure. Site-specific mutagenesis within M2 revealed that D137 and N138, which face the P-CAB binding site in our model, significantly affect the inhibition constant (K i) of P-CABs. We also found that A335 is likely to be near the bridging nitrogen at the restricted ring structure of the BYK99 inhibitor. These provide clues to elucidate the binding site parameters and mechanism of P-CAB inhibition of gastric acid secretion.
机译:胃质子泵H + ,K + -ATPase会酸化胃腔,并因此抑制其抑制剂,包括咪唑并[1,2-a]吡啶类的K < sup> + -竞争性酸阻滞剂(P-CABs)具有潜在的抑酸作用。我们确定了在E2P状态下结合BYK99的E2P状态下H + ,K + -ATPase的电子晶体结构,分辨率为6.5Å,这是一种具有受限环结构的有效P-CAB 。 BYK99的结合结构与先前确定的具有结合的结构(原始P-CAB原型)的轮廓几乎相同,但与先前报道的无P-CAB的形式显着不同,说明P需要共同的构象变化-CAB绑定。共有的构象变化包括跨膜螺旋2(M2)从以前报道的无P-CAB形式的位置到当前BYK99结合结构中P-CAB结合位点的近端位置的明显运动。 M2中的位点特异性诱变表明,面对我们模型中P-CAB结合位点的D137和N138,会显着影响P-CAB的抑制常数(K i)。我们还发现,A335可能在BYK99抑制剂的受限环结构附近的桥接氮附近。这些为阐明结合位点参数和P-CAB抑制胃酸分泌的机制提供了线索。

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