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首页> 外文期刊>Protein Engineering >THE APPLICATION OF HYDROGEN BONDING ANALYSIS IN X-RAY CRYSTALLOGRAPHY TO HELP ORIENTATE ASPARAGINE, GLUTAMINE AND HISTIDINE SIDE CHAINS
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THE APPLICATION OF HYDROGEN BONDING ANALYSIS IN X-RAY CRYSTALLOGRAPHY TO HELP ORIENTATE ASPARAGINE, GLUTAMINE AND HISTIDINE SIDE CHAINS

机译:氢键合分析在X射线晶体学中帮助定位天冬酰胺,谷氨酰胺和组氨酸侧面链的应用

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摘要

Protein X-ray crystallography produces an electron density map that rarely detects individual hydrogen atoms or distinguishes between carbon, nitrogen and oxygen atoms in the electron density, This makes it difficult to orientate the side chains of Asn, Gln and His, which appear symmetrical in the electron density; their orientation is usually judged on the basis of hydrogen bonding, Based on the observation that almost all buried donors and accepters are satisfied, we have developed a simple algorithm to compare the alternative conformations of these residues and, where possible, identify the most favourable, In a cross-section of protein structures we found a few side chains (15.0% of Asn and Gin and 9.9% of His) which would be more favourable in the alternative orientation, We have also found that this proportion rises slightly with worsening resolution. [References: 28]
机译:蛋白质X射线晶体学产生的电子密度图很少能检测出单个氢原子或区分电子密度中的碳,氮和氧原子,这使Asn,Gln和His的侧链难以取向,而这些侧链在电子密度通常根据氢键来判断其取向。基于观察到几乎所有掩埋的供体和受体都满意的情况,我们开发了一种简单的算法来比较这些残基的替代构象,并在可能的情况下确定最有利的,在蛋白质结构的横截面中,我们发现了一些侧链(Asn和Gin的15.0%,His的9.9%)在替代方向上更有利。我们还发现,随着分辨率的降低,该比例略有增加。 [参考:28]

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