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革兰氏阳性Tet蛋白的生电反向转运活性包括一种介导净钾离子摄取的钠(钾)/钾模式。

Electrogenic antiport activities of the Gram-positive Tet proteins include a Na+(K+)/K+ mode that mediates net K+ uptake.

作者信息

Guffanti A A, Cheng J, Krulwich T A

机构信息

Department of Biochemistry, Mount Sinai School of Medicine, New York, New York 10029, USA.

出版信息

J Biol Chem. 1998 Oct 9;273(41):26447-54. doi: 10.1074/jbc.273.41.26447.

Abstract

Two Gram-positive Tet proteins, TetA(L) from Bacillus subtilis and TetK from a Staphylococcus aureus plasmid, have previously been suggested to have multiple catalytic modes and roles. These include: tetracycline (Tc)-metal/H+ antiport for both proteins (Yamaguchi, A., Shiina, Y., Fujihira, E., Sawai, T., Noguchi, N., and Sasatsu, M. (1995) FEBS Lett. 365, 193-197; Cheng, J. Guffanti, A. A., Wang, W., Krulwich, T. A., and Bechhofer, D. H. (1996) J. Bacteriol. 178, 2853-2860); Na+(K+)/H+ antiport for both proteins (Cheng et al. (1996)); and an electrical potential-dependent K+ leak mode for TetK and highly truncated segments thereof that can facilitate net K+ uptake (Guay, G. G., Tuckman, M., McNicholas, P., and Rothstein, D. M. (1993) J. Bacteriol. 175, 4927-4929). Studies of membrane vesicles from Escherichia coli expressing low levels of complete and 3'-truncated versions of tetA(L) or tetK, now show that the full-length versions of both transporters catalyze electrogenic antiport and that demonstration of electrogenicity depends upon use of a low chloride buffer for the assay. The K+ uptake mode, assayed via 86Rb+ uptake, was also catalyzed by both full-length TetA(L) and TetK. This mode does not represent a potential-dependent leak. Such a leak was not demonstrable in energized membrane vesicles. Rather, Rb+ uptake occurred in right-side-out vesicles when the intravesicular space contained either Na+ or K+ but not choline. If an outwardly directed gradient of Na+ or K+ was present, Rb+ uptake occurred without energization in vesicles from cells transformed with a plasmid containing tetA(L) or tetK but not a control plasmid. Experiments in which a comparable exchange was carried out in low chloride buffers to which oxonol was added confirmed that the exchange was electrogenic. Thus, the K+ uptake mode is proposed to be a mode of the electrogenic monovalent cation/H+ antiport activity of TetA(L) and TetK in which K+ takes the place of the external protons. Truncated TetK and TetA(L) failed to catalyze either Tc-metal/H+ or Na+/H+ antiport in energized everted vesicles. Truncated TetK, but not TetA(L), did, however, exhibit modest, electrogenic Na+(K+)/Rb+ exchange as well as a small, potential-dependent leak of Rb+. The C-terminal halves of the TetA(L) and TetK proteins are thus required both for proton-coupled active transport activities of the multifunctional transporter and, perhaps, for minimizing cation leakiness.

摘要

此前有人提出,来自枯草芽孢杆菌的两种革兰氏阳性Tet蛋白,即TetA(L)和来自金黄色葡萄球菌质粒的TetK,具有多种催化模式和作用。这些包括:两种蛋白的四环素(Tc)-金属/H⁺反向转运(山口,A.,椎名,Y.,藤平,E.,泽井,T.,野口,N.,和笹津,M.(1995年)《欧洲生物化学学会联合会快报》365,193 - 197;程,J.,古凡蒂,A. A.,王,W.,克鲁利奇,T. A.,和贝奇霍费尔,D. H.(1996年)《细菌学杂志》178,2853 - 2860);两种蛋白的Na⁺(K⁺)/H⁺反向转运(程等人(1996年));以及TetK及其高度截短片段的电位依赖性K⁺泄漏模式,该模式可促进净K⁺摄取(盖伊,G. G.,塔克曼,M.,麦克尼古拉斯,P.,和罗斯坦,D. M.(1993年)《细菌学杂志》175,4927 - 4929)。对表达低水平完整和3'-截短版本的tetA(L)或tetK的大肠杆菌膜囊泡的研究现在表明,两种转运蛋白的全长版本都催化生电反向转运,并且生电的证明取决于在测定中使用低氯缓冲液。通过⁸⁶Rb⁺摄取测定的K⁺摄取模式也由全长TetA(L)和TetK催化。这种模式不代表电位依赖性泄漏。在有能量的膜囊泡中无法证明这种泄漏。相反,当囊泡内空间含有Na⁺或K⁺但不含胆碱时,在外翻囊泡中发生Rb⁺摄取。如果存在外向的Na⁺或K⁺梯度,在用含有tetA(L)或tetK的质粒而不是对照质粒转化的细胞的囊泡中,无需能量供应就会发生Rb⁺摄取。在添加了氧杂萘邻酮的低氯缓冲液中进行类似交换的实验证实该交换是生电的。因此,K⁺摄取模式被认为是TetA(L)和TetK的生电单价阳离子/H⁺反向转运活性的一种模式,其中K⁺取代了外部质子。截短的TetK和TetA(L)在有能量的外翻囊泡中未能催化Tc-金属/H⁺或Na⁺/H⁺反向转运。然而,截短的TetK(而非TetA(L))确实表现出适度的、生电的Na⁺(K⁺)/Rb⁺交换以及少量的、电位依赖性的Rb⁺泄漏。因此,TetA(L)和TetK蛋白的C末端一半对于多功能转运蛋白的质子偶联主动转运活性是必需的,并且可能对于最小化阳离子泄漏也是必需的。

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