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Crystallization of and selenomethionine phasing strategy for a SETMAR–DNA complex

机译:SETMAR–DNA复合物的结晶和硒代蛋氨酸的定相策略

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摘要

Transposable elements have played a critical role in the creation of new genes in all higher eukaryotes, including humans. Although the chimeric fusion protein SETMAR is no longer active as a transposase, it contains both the DNA-binding domain (DBD) and catalytic domain of the Hsmar1 transposase. The amino-acid sequence of the DBD has been virtually unchanged in 50 million years and, as a consequence, SETMAR retains its sequence-specific binding to the ancestral Hsmar1 terminal inverted repeat (TIR) sequence. Thus, the DNA-binding activity of SETMAR is likely to have an important biological function. To determine the structural basis for the recognition of TIR DNA by SETMAR, the design of TIR-containing oligonucleotides and SETMAR DBD variants, crystallization of DBD–DNA complexes, phasing strategies and initial phasing experiments are reported here. An unexpected finding was that oligonucleotides containing two BrdUs in place of thymidines produced better quality crystals in complex with SETMAR than their natural counterparts.
机译:转座因子在包括人类在内的所有高级真核生物的新基因的产生中都起着至关重要的作用。尽管嵌合融合蛋白SETMAR不再具有转座酶活性,但它同时包含Hsmar1转座酶的DNA结合结构域(DBD)和催化结构域。 DBD的氨基酸序列在5000万年中几乎没有变化,因此,SETMAR保留了其与祖先Hsmar1末端反向重复序列(TIR)序列的序列特异性结合。因此,SETMAR的DNA结合活性可能具有重要的生物学功能。为了确定SETMAR识别TIR DNA的结构基础,此处报道了含TIR的寡核苷酸和SETMAR DBD变体的设计,DBD–DNA复合物的结晶,定相策略和初始定相实验。一个出乎意料的发现是,含有两个BrdU代替胸苷的寡核苷酸与SETMAR配合使用时,比其天然对应物产生的晶体质量更高。

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