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胃H⁺,K⁺-ATP酶在不同转运循环状态下二维晶体的结构分析

Structural analysis of 2D crystals of gastric H+,K+-ATPase in different states of the transport cycle.

作者信息

Nishizawa Tomohiro, Abe Kazuhiro, Tani Kazutoshi, Fujiyoshi Yoshinori

机构信息

Department of Biophysics, Faculty of Science, Kyoto University, Oiwake, Kitashirakawa, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

J Struct Biol. 2008 May;162(2):219-28. doi: 10.1016/j.jsb.2007.12.005. Epub 2007 Dec 31.

Abstract

The H+,K+-ATPase uses ATP to pump protons across the gastric membrane. We used electron crystallography and limited trypsin proteolysis to study conformational changes in the H+,K+-ATPase. Well-ordered 2D crystals were obtained with detergent-solubilized H+,K+-ATPase at low pH in the absence of nucleotides, E1 state, and in the presence of fluoroaluminate and ADP, mimicking the E1PADP state. Projection maps obtained with frozen-hydrated two-dimensional crystals of the H+,K+-ATPase in these two states looked very similar, suggesting only small conformational changes during the transition from the E1 to the E1P x ADP state. This result differs from the X-ray crystal structures of the related ATPase SERCA, which revealed substantially different conformations in the E1 and E1P x ADP states. To further characterize the conformational changes in the H+,K+-ATPase during its transport cycle, we performed limited proteolysis with trypsin. All examined states of the H+,K+-ATPase, including the E1 and E1P x ADP states present in the 2D crystals,showed characteristic differences in the digestion patterns. While the results from the limited proteolysis experiments thus show that the H+,K+-ATPase adopts distinct conformations during different stages of the transport cycle, the projection maps indicate that the structural rearrangements in the H+,K+-ATPase are much smaller than those observed in the related SERCA ATPase.

摘要

H⁺,K⁺ -ATP酶利用ATP将质子泵过胃膜。我们使用电子晶体学和有限胰蛋白酶水解法来研究H⁺,K⁺ -ATP酶的构象变化。在低pH值、无核苷酸(E1状态)以及存在氟铝酸盐和ADP(模拟E1PADP状态)的情况下,用去污剂溶解的H⁺,K⁺ -ATP酶获得了有序的二维晶体。在这两种状态下,用H⁺,K⁺ -ATP酶的冷冻水合二维晶体获得的投影图看起来非常相似,这表明从E1状态转变为E1P x ADP状态期间只有微小的构象变化。这一结果与相关ATP酶SERCA的X射线晶体结构不同,后者显示E1和E1P x ADP状态下的构象有很大差异。为了进一步表征H⁺,K⁺ -ATP酶在其转运循环中的构象变化,我们用胰蛋白酶进行了有限水解。H⁺,K⁺ -ATP酶的所有检测状态,包括二维晶体中存在的E1和E1P x ADP状态,在消化模式上都显示出特征性差异。因此,虽然有限水解实验的结果表明H⁺,K⁺ -ATP酶在转运循环的不同阶段采用不同的构象,但投影图表明H⁺,K⁺ -ATP酶中的结构重排比相关的SERCA ATP酶中观察到的要小得多。

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