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丙氨酰酯残基对镁离子与磷壁酸结合的影响。

Influence of alanyl ester residues on the binding of magnesium ions to teichoic acids.

作者信息

Lambert P A, Hancock I C, Baddiley J

出版信息

Biochem J. 1975 Dec;151(3):671-6. doi: 10.1042/bj1510671.

Abstract

The binding of Mg2+ to the ribitol teichoic acid of Staphylococcus aureus H walls was examined by equilibrium dialysis in solution and in the intact wall; the influence of alanyl ester groups on binding was determined. In solution the ribitol polymer had a lower affinity than did a glycerol teichoic acid and bound Mg2+ in the ratio Mg2+/P of 1:1. The presence of alanyl ester residues caused a decrease in the amount of cations bound in stoicheiometric proportion to the ratio Ala/P, but the affinity constant was unaltered. It is concluded that in solution the ribitol teichoic acid binds Mg2+ univalently to phosphate groups and univalently to a counter-ion. In the intact wall the binding of Mg2+ was different. The affinity constant was higher and resembled that of a glycerol teichoic acid. It is concluded that Mg2+ forms bridges across phosphate groups in teichoic acid chains lying adjacent to each other in the wall. The effect of alanyl esters was similar to that in solution, but Scatchard plots were not linear at low concentrations of Mg2+ where it was shown that the difference in affinities between walls with and without alanyl ester residues was much greater than it was at higher concentrations of Mg2+. Thus at very low concentrations of Mg2+ effective binding to the wall is markedly improved by loss of alanyl ester residues.

摘要

通过溶液中和完整细胞壁中的平衡透析法,研究了Mg2+与金黄色葡萄球菌H细胞壁的核糖醇磷壁酸的结合情况;测定了丙氨酰酯基团对结合的影响。在溶液中,核糖醇聚合物的亲和力低于甘油磷壁酸,且以Mg2+/P为1:1的比例结合Mg2+。丙氨酰酯残基的存在导致与Ala/P比例化学计量结合的阳离子量减少,但亲和常数未改变。得出的结论是,在溶液中,核糖醇磷壁酸以单价形式与磷酸基团结合,并以单价形式与抗衡离子结合。在完整细胞壁中,Mg2+的结合情况不同。亲和常数更高,类似于甘油磷壁酸的亲和常数。得出的结论是,Mg2+在细胞壁中彼此相邻的磷壁酸链中的磷酸基团之间形成桥键。丙氨酰酯的作用与在溶液中的作用相似,但在低浓度Mg2+时Scatchard图不是线性的,结果表明,有和没有丙氨酰酯残基的细胞壁之间的亲和力差异在高浓度Mg2+时比在低浓度时大得多。因此,在非常低的Mg2+浓度下,去除丙氨酰酯残基可显著改善其与细胞壁的有效结合。

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The alanine ester content and magnesium binding capacity of walls of Staphylococcus aureus H grown at different pH values.
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