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淡紫灰链霉菌钾通道含有聚(R)-3-羟基丁酸酯和无机多聚磷酸盐。

Streptomyces lividans potassium channel contains poly-(R)-3-hydroxybutyrate and inorganic polyphosphate.

作者信息

Reusch R N

机构信息

Department of Microbiology, Michigan State University, East Lansing 48824, USA.

出版信息

Biochemistry. 1999 Nov 23;38(47):15666-72. doi: 10.1021/bi991782f.

Abstract

The Streptomyces lividans KcsA potassium channel, a homotetramer of 17.6 kDa subunits, was found to contain two nonproteinaceous polymers, namely, poly-(R)-3-hydroxybutyrate (PHB) and inorganic polyphosphate (polyP). PHB and polyP are ubiquitous cellular constituents with a demonstrated capacity for cation selection and transport. PHB was detected in both tetramer and monomer species of KcsA by reaction to anti-PHB IgG on Western blots, and estimated as 28 monomer units of PHB per KcsA tetramer by a chemical assay in which PHB is converted to its unique degradation product, crotonic acid. PolyP was detected in KcsA tetramers, but not in monomers, by metachromatic reaction to o-toluidine blue stain on SDS-PAGE gels. A band of free polyP was also visible, suggesting that polyP is released when tetramers dissociate. The exopolyphosphatase of Saccharomyces cerevisiae degraded the free polyP, but tetramer-associated polyP was not affected, indicating it was inaccessible to the enzyme. PolyP in KcsA was estimated as 15 monomer units per tetramer by an enzymatic assay in which polyphosphate kinase is used to transfer phosphates from polyP to [(14)C]ADP, yielding [(14)C]ATP. The experimentally determined isoelectric point of KcsA tetramer was 6.5-7.5, substantially more acidic than the theoretical pI of 10.3, and consistent with the inclusion of a polyanion. The results suggest that PHB is covalently bound to KcsA subunits while polyP is held within tetramers by ionic forces. It is posited that KcsA protein creates an environment in which PHB/polyP is selective for K(+). The basic amino acids attenuate the negative charge density of polyP, thereby transforming the cation binding preference from multivalent to monovalent, and discrimination between K(+) and Na(+) is accomplished by adjusting the ligand geometry in cation binding cavities formed by PHB and polyP.

摘要

天蓝色链霉菌KcsA钾通道是由17.6 kDa亚基组成的同四聚体,被发现含有两种非蛋白质聚合物,即聚(R)-3-羟基丁酸酯(PHB)和无机多聚磷酸盐(多聚P)。PHB和多聚P是普遍存在的细胞成分,具有阳离子选择和运输能力。通过蛋白质免疫印迹法中抗PHB IgG的反应,在KcsA的四聚体和单体中均检测到PHB,通过化学分析估计每个KcsA四聚体中有28个PHB单体单元,其中PHB被转化为其独特的降解产物巴豆酸。通过SDS-PAGE凝胶上对邻甲苯胺蓝染色的异染反应,在KcsA四聚体中检测到多聚P,但在单体中未检测到。还可见一条游离多聚P带,表明四聚体解离时多聚P被释放。酿酒酵母的胞外多聚磷酸酶降解了游离多聚P,但与四聚体相关的多聚P不受影响,表明该酶无法作用于它。通过酶法分析,其中多聚磷酸激酶用于将多聚P中的磷酸转移到[(14)C]ADP上,生成[(14)C]ATP,估计KcsA中每个四聚体的多聚P为15个单体单元。实验测定的KcsA四聚体的等电点为6.5-7.5,明显比理论pI 10.3更酸性,这与包含聚阴离子一致。结果表明PHB与KcsA亚基共价结合,而多聚P通过离子力保持在四聚体内。据推测,KcsA蛋白创造了一个环境,其中PHB/多聚P对K+具有选择性。碱性氨基酸减弱了多聚P的负电荷密度,从而将阳离子结合偏好从多价转变为单价,并且通过调节由PHB和多聚P形成的阳离子结合腔中的配体几何形状来实现K+和Na+之间的区分。

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