Department of Biophysics, Faculty of Science, Kyoto University, Oiwake, Kitashirakawa, Sakyo-ku, Kyoto 606-0852, Japan.
J Struct Biol. 2010 Apr;170(1):60-8. doi: 10.1016/j.jsb.2009.12.008. Epub 2009 Dec 21.
Gastric H(+),K(+)-ATPase is responsible for gastric acid secretion. In order to characterize the phosphorylation events on H(+),K(+)-ATPase, the properties of fluorinated phosphate analogs [XFs, e.g. aluminum fluoride (AlF), beryllium fluoride (BeF) and magnesium fluoride (MgF)], and the structural differences induced by XFs were investigated. The addition of divalent cations to the XF-inhibited H(+),K(+)-ATPase restores the activity of the AlF- or MgF-inhibited, but not of the BeF-inhibited enzyme, although limited trypsin digestion reveals that they assume the same E(2)P-like state. To clarify the conformational differences induced by XFs, the structure of BeF-bound H(+),K(+)-ATPase was analyzed at 8A resolution. The structure is almost identical to the previously reported AlF-bound E(2)P structure, unlike the distinctive X-ray structure of BeF-bound SERCA, in which the luminal gate was observed to be widely opened. Since the analyzed structure of the H(+),K(+)-ATPase revealed that both AlF and BeF-bound to the P domain were not exposed to the solvent, the dissociation of XFs induced by divalent cations could be interpreted in terms of stability against thermal fluctuations. Furthermore, the conformational differences found between the cytoplasmic domains of H(+),K(+)-ATPase and SERCA provide a framework to understand the characteristic mechanism, by which divalent cations reactivate the XF-inhibited H(+),K(+)-ATPase.
胃 H(+)、K(+)-ATP 酶负责胃酸分泌。为了研究 H(+)、K(+)-ATP 酶磷酸化反应的特征,研究了氟化磷酸盐类似物 [XFs,如氟化铝 (AlF)、氟化铍 (BeF) 和氟化镁 (MgF)] 的性质以及 XFs 引起的结构差异。向 XF 抑制的 H(+)、K(+)-ATP 酶中加入二价阳离子可恢复 AlF 或 MgF 抑制但不恢复 BeF 抑制的酶的活性,尽管有限的胰蛋白酶消化表明它们处于相同的 E(2)P 样状态。为了阐明 XFs 引起的构象差异,在 8A 分辨率下分析了 BeF 结合的 H(+)、K(+)-ATP 酶的结构。该结构几乎与先前报道的 AlF 结合的 E(2)P 结构相同,与 BeF 结合的 SERCA 的独特 X 射线结构不同,在该结构中观察到内腔门广泛打开。由于分析的 H(+)、K(+)-ATP 酶结构表明,与 P 结构域结合的 AlF 和 BeF 都不暴露于溶剂中,因此二价阳离子诱导的 XFs 解离可以用热波动稳定性来解释。此外,在 H(+)、K(+)-ATP 酶和 SERCA 的细胞质结构域之间发现的构象差异为理解二价阳离子使 XF 抑制的 H(+)、K(+)-ATP 酶重新激活的特征机制提供了一个框架。