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迈向蛋白质晶体学中重原子衍生物筛选的合理方法。

Towards a rational approach for heavy-atom derivative screening in protein crystallography.

作者信息

Agniswamy Johnson, Joyce M Gordon, Hammer Carl H, Sun Peter D

机构信息

Structural Immunology Section, Laboratory of Immunogenetics, National Institute of Allergy and Infectious Diseases, National Institutes of Health, 12441 Parklawn Drive, Rockville, Maryland 20852, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2008 Apr;64(Pt 4):354-67. doi: 10.1107/S0907444907068849. Epub 2008 Mar 19.

Abstract

Heavy-atom derivatization is routinely used in protein structure determination and is thus of critical importance in structural biology. In order to replace the current trial-and-error heavy-atom derivative screening with a knowledge-based rational derivative-selection method, the reactivity of more than 40 heavy-atom compounds over a wide range of buffer and pH values was systematically examined using peptides which contained a single reactive amino-acid residue. Met-, Cys- and His-containing peptides were derivatized against Hg, Au and Pt compounds, while Tyr-, Glu-, Asp-, Asn- and Gln-containing peptides were assessed against Pb compounds. A total of 1668 reactive conditions were examined using mass spectrometry and were compiled into heavy-atom reactivity tables (http://sis.niaid.nih.gov/cgi-bin/heavyatom_reactivity.cgi). The results showed that heavy-atom derivatization reactions are highly linked to buffer and pH, with the most accommodating buffer being MES at pH 6. A group of 21 compounds were identified as most successful irrespective of ligand or buffer/pH conditions. To assess the applicability of the peptide heavy-atom reactivity to proteins, lysozyme crystals were derivatized with a list of peptide-reactive compounds that included both known and new compounds for lysozyme derivatization. The results showed highly consistent heavy-atom reactivities between the peptides and lysozyme.

摘要

重原子衍生化在蛋白质结构测定中经常使用,因此在结构生物学中至关重要。为了用基于知识的合理衍生化选择方法取代当前的试错法重原子衍生物筛选,使用含有单个反应性氨基酸残基的肽,系统地研究了40多种重原子化合物在广泛的缓冲液和pH值范围内的反应性。含蛋氨酸、半胱氨酸和组氨酸的肽用汞、金和铂化合物进行衍生化,而含酪氨酸、谷氨酸、天冬氨酸、天冬酰胺和谷氨酰胺的肽则用铅化合物进行评估。使用质谱法共检测了1668种反应条件,并将其编制成重原子反应性表(http://sis.niaid.nih.gov/cgi-bin/heavyatom_reactivity.cgi)。结果表明,重原子衍生化反应与缓冲液和pH值高度相关,最适宜的缓冲液是pH值为6的MES。无论配体或缓冲液/pH条件如何,一组21种化合物被确定为最成功的。为了评估肽重原子反应性对蛋白质的适用性,用一系列肽反应性化合物对溶菌酶晶体进行衍生化,这些化合物包括用于溶菌酶衍生化的已知和新化合物。结果表明,肽和溶菌酶之间的重原子反应性高度一致。

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