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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Characterisation by triple-quantum filtered 17O-NMR of water molecules buried in lysozyme and trapped in a lysozyme-inhibitor complex.
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Characterisation by triple-quantum filtered 17O-NMR of water molecules buried in lysozyme and trapped in a lysozyme-inhibitor complex.

机译:通过三重量子过滤后的17O-NMR表征埋在溶菌酶中并陷于溶菌酶抑制剂复合物中的水分子。

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摘要

Triple-quantum filtering NMR sequences were used to study the multiexponential relaxation behaviour of H2 17O in the presence of hen egg white lysozyme. By this means, the fraction and the correlation time of water were determined in slow motion, as well as the relaxation time of water in the extreme narrowing limit. The small number of water molecules in slow motion, which is between four and five per lysozyme, seems to correspond to the 'integral' water, buried or in the cleft inside the protein, whereas water in fast motion corresponds to all other water molecules, interacting or not with the macromolecules. The same experiment was performed after addition of the inhibitor tri-N-acetylglucosamine (NAG)3. For solutions of sufficient viscosity, there were approximately three supplementary water molecules in slow motion per lysozyme, probably trapped between the protein and the inhibitor. The correlation time of these water molecules was estimated at 2 ns, which should correspond to their residence time in the complex.
机译:使用三量子过滤NMR序列研究在鸡蛋清溶菌酶存在下H2 17O的多指数弛豫行为。通过这种方式,可以确定慢动作时水的分数和相关时间,以及在极窄范围内的水松弛时间。慢动作中少量的水分子(每个溶菌酶介于4到5个之间)似乎对应于“整体”水,其被埋在蛋白质内部或裂隙中,而快速运动的水则对应于所有其他水分子,是否与大分子相互作用。加入抑制剂三-N-乙酰氨基葡萄糖(NAG)3后,进行了相同的实验。对于具有足够粘度的溶液,每个溶菌酶在慢动作中大约有3个补充水分子,可能被困在蛋白质和抑制剂之间。这些水分子的相关时间估计为2 ns,应该与它们在复合物中的停留时间相对应。

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