Utility of anion and cation combinations for phasing of protein structures.

Ashwani Sharma, Manickam Yogavel, Amit Sharma
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引用次数: 9

Abstract

We report the use of anionic (I(-)), cationic (Ba(2+), Cd(2+)) and ionic mixtures (I(-) plus Ba(2+)) for derivatizing liver fatty acid binding protein (LFABP) crystals. Use of cationic and anionic salts in phasing experiments revealed distinct non-overlapping sites for these ions, suggesting exclusive binding regions on LFABP. Interestingly, cations of identical charge and valency (like Ba(2+) and Cd(2+)) bound to distinct pockets on the protein surface. Furthermore, a mixture of salts containing both I(-) and Ba(2+) was very useful in phasing experiments as these oppositely charged ions bound to different regions of LFABP. Our data therefore suggest that cationic and anionic salt mixtures like BaCl(2) with NH(4)I or salts like CdI, BaI where each ion has a significant anomalous signal for a given X-ray wavelength may be valuable reagents for phasing during structure determination.

阴离子和阳离子组合在蛋白质结构相化中的应用。
我们报道了使用阴离子(I(-)),阳离子(Ba(2+), Cd(2+))和离子混合物(I(-) + Ba(2+))衍生化肝脏脂肪酸结合蛋白(LFABP)晶体。在分相实验中使用阳离子和阴离子盐揭示了这些离子的不同的非重叠位点,表明LFABP上的独家结合区域。有趣的是,具有相同电荷和价的阳离子(如Ba(2+)和Cd(2+))结合在蛋白质表面不同的口袋上。此外,含有I(-)和Ba(2+)的盐的混合物在分相实验中非常有用,因为这些带相反电荷的离子结合在LFABP的不同区域。因此,我们的数据表明,像BaCl(2)和NH(4)I这样的阳离子和阴离子盐混合物,或者像CdI、BaI这样的盐,每个离子在给定的x射线波长下都有明显的异常信号,可能是在结构测定过程中进行分相的有价值的试剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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