Andersson Julia, Hauser Karin, Karjalainen Eeva-Liisa, Barth Andreas
Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.
Biophys J. 2008 Jan 15;94(2):600-11. doi: 10.1529/biophysj.107.114033. Epub 2007 Sep 21.
Protonation of the Ca(2+) ligands of the SR Ca(2+)-ATPase (SERCA1a) was studied by a combination of rapid scan FTIR spectroscopy and electrostatic calculations. With FTIR spectroscopy, we investigated the pH dependence of C=O bands of the Ca(2+)-free phosphoenzyme (E2P) and obtained direct experimental evidence for the protonation of carboxyl groups upon Ca(2+) release. At least three of the infrared signals from protonated carboxyl groups of E2P are pH dependent with pK(a) values near 8.3: a band at 1758 cm(-1) characteristic of nonhydrogen-bonded carbonyl groups, a shoulder at 1720 cm(-1), and part of a band at 1710 cm(-1), both characteristic of hydrogen-bonded carbonyl groups. The bands are thus assigned to H(+) binding residues, some of which are involved in H(+) countertransport. At pH 9, bands at 1743 and 1710 cm(-1) remain which we do not attribute to Ca(2+)/H(+) exchange. We also obtained evidence for a pH-dependent conformational change in beta-sheet or turn structures of the ATPase. With MCCE on the E2P analog E2(TG+MgF(4)(2-)), we assigned infrared bands to specific residues and analyzed whether or not the carbonyl groups of the acidic Ca(2+) ligands are hydrogen bonded. The carbonyl groups of Glu(771), Asp(800), and Glu(908) were found to be hydrogen bonded and will thus contribute to the lower wave number bands. The carbonyl group of some side-chain conformations of Asp(800) is left without a hydrogen-bonding partner; they will therefore contribute to the higher wave number band.
通过快速扫描傅里叶变换红外光谱(FTIR)和静电计算相结合的方法,研究了肌浆网Ca(2+) - ATP酶(SERCA1a)的Ca(2+)配体的质子化过程。利用FTIR光谱,我们研究了无Ca(2+)磷酸化酶(E2P)的C = O谱带的pH依赖性,并获得了Ca(2+)释放时羧基质子化的直接实验证据。E2P质子化羧基的至少三个红外信号在pH值接近8.3时具有pH依赖性:一个位于1758 cm(-1)的非氢键羰基特征谱带,一个位于1720 cm(-1)的肩峰,以及位于1710 cm(-1)谱带的一部分,这两个都是氢键羰基的特征。因此,这些谱带被归属于H(+)结合残基,其中一些参与H(+)反向转运。在pH 9时,1743和1710 cm(-1)处的谱带仍然存在,我们认为这与Ca(2+)/H(+)交换无关。我们还获得了ATP酶β-折叠或转角结构中pH依赖性构象变化的证据。通过对E2P类似物E2(TG + MgF(4)(2-))进行多构象连续静电计算(MCCE),我们将红外谱带归属于特定残基,并分析了酸性Ca(2+)配体的羰基是否形成氢键。发现Glu(771)、Asp(800)和Glu(908)的羰基形成了氢键,因此将对较低波数的谱带产生贡献。Asp(800)一些侧链构象的羰基没有氢键结合伙伴;因此,它们将对较高波数的谱带产生贡献。