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完整的H⁺,K⁺ -ATP酶及其膜嵌入区域的二级结构。衰减全反射红外光谱、圆二色光谱和拉曼光谱研究。

Secondary structure of the intact H+,K+-ATPase and of its membrane-embedded region. An attenuated total reflection infrared spectroscopy, circular dichroism and Raman spectroscopy study.

作者信息

Raussens V, de Jongh H, Pézolet M, Ruysschaert J M, Goormaghtigh E

机构信息

Laboratoire de Chimie-Physique des Macromolécules aux Interfaces, Université Libre de Bruxelles, Belgium.

出版信息

Eur J Biochem. 1998 Mar 1;252(2):261-7. doi: 10.1046/j.1432-1327.1998.2520261.x.

Abstract

Models of P-type ATPase predict that membrane-embedded fragments represent about 20% of the protein and adopt an all-alpha-helical structure. While this prediction was confirmed for the Ca2-ATPase [Corbalan-Garcia, S., Teruel, J., Villalain, J. & Gomez-Fernandez, J. (1994) Biochemistry 33, 8247-8254], it is at odds with recent experimental evidence gathered on the Neurospora crassa plasma membrane H+-ATPase [Vigneron, L., Ruysschaert, J.-M. & Goormaghtigh, E. (1995) J. Biol. Chem. 270, 17685-17696] and on the gastric H+,K+-ATPase [Raussens, V., Ruysschaert, J.-M. & Goormaghtigh, E. (1997) J. Biol. Chem. 276, 262-270]. Extensive proteinase K proteolysis of open gastric tubulovesicles was performed here to generate the membrane-protected fragments of the H+,K+-ATPase. Secondary structure of the intact and of the membrane-protected segments was compared for oriented membrane films by attenuated total-reflection Fourier-transform infrared spectroscopy and by circular dichroism and for vesicles suspension by circular dichroism and Raman spectroscopy. All the spectroscopic data indicate that the protease-resistant membrane-bound residue of the H+,K+-ATPase contains significant amount of beta-sheet structure, both on films and in membrane suspensions. Polarized attenuated total-reflection infrared spectroscopy indicates that only the alpha-helical content of protease-resistant membrane-bound residue of the H+,K+-ATPase is oriented (parallel) with respect to the membrane normal. Raman spectroscopy reveals that Phe residues are preferentially removed by protease activity. Evaluation of the amount of removed Phe and Tyr residues places constraints on the model of membrane insertion of the H+,K+-ATPase.

摘要

P型ATP酶模型预测,膜嵌入片段约占该蛋白质的20%,并采用全α螺旋结构。虽然这一预测已在Ca2-ATP酶中得到证实[科尔巴兰-加西亚,S.,特鲁埃尔,J.,比利亚兰,J. & 戈麦斯-费尔南德斯,J.(1994年)《生物化学》33卷,8247 - 8254页],但它与最近在粗糙脉孢菌质膜H+-ATP酶[维涅龙,L.,鲁伊斯沙尔特,J.-M. & 古尔马希蒂,E.(1995年)《生物化学杂志》270卷,17685 - 17696页]和胃H+,K+-ATP酶[劳森斯,V.,鲁伊斯沙尔特,J.-M. & 古尔马希蒂,E.(1997年)《生物化学杂志》276卷,262 - 270页]上收集的实验证据不一致。在此对开放的胃微管泡进行了广泛的蛋白酶K蛋白水解,以生成H+,K+-ATP酶的膜保护片段。通过衰减全反射傅里叶变换红外光谱和圆二色性对取向膜片的完整和膜保护片段的二级结构进行了比较,并通过圆二色性和拉曼光谱对囊泡悬浮液进行了比较。所有光谱数据表明,H+,K+-ATP酶的蛋白酶抗性膜结合残基在膜片和膜悬浮液中均含有大量的β折叠结构。偏振衰减全反射红外光谱表明,只有H+,K+-ATP酶的蛋白酶抗性膜结合残基的α螺旋含量相对于膜法线是取向的(平行)。拉曼光谱显示,苯丙氨酸残基优先被蛋白酶活性去除。对去除的苯丙氨酸和酪氨酸残基数量的评估对H+,K+-ATP酶的膜插入模型施加了限制。

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