From bacterial to human dihydrouridine synthase: automated structure determination.

Fiona Whelan, Huw T Jenkins, Samuel C Griffiths, Robert T Byrne, Eleanor J Dodson, Alfred A Antson
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引用次数: 11

Abstract

The reduction of uridine to dihydrouridine at specific positions in tRNA is catalysed by dihydrouridine synthase (Dus) enzymes. Increased expression of human dihydrouridine synthase 2 (hDus2) has been linked to pulmonary carcinogenesis, while its knockdown decreased cancer cell line viability, suggesting that it may serve as a valuable target for therapeutic intervention. Here, the X-ray crystal structure of a construct of hDus2 encompassing the catalytic and tRNA-recognition domains (residues 1-340) determined at 1.9 Å resolution is presented. It is shown that the structure can be determined automatically by phenix.mr_rosetta starting from a bacterial Dus enzyme with only 18% sequence identity and a significantly divergent structure. The overall fold of the human Dus2 is similar to that of bacterial enzymes, but has a larger recognition domain and a unique three-stranded antiparallel β-sheet insertion into the catalytic domain that packs next to the recognition domain, contributing to domain-domain interactions. The structure may inform the development of novel therapeutic approaches in the fight against lung cancer.

Abstract Image

Abstract Image

Abstract Image

从细菌到人二氢吡啶合成酶:自动结构测定。
在tRNA的特定位置上尿嘧啶还原为二氢尿嘧啶是由二氢尿嘧啶合成酶(Dus)酶催化的。人二氢吡啶合成酶2 (hDus2)的表达增加与肺癌发生有关,而其敲低会降低癌细胞系的活力,这表明它可能作为治疗干预的一个有价值的靶点。在这里,以1.9 Å分辨率确定了包含催化和trna识别结构域(残基1-340)的hDus2结构体的x射线晶体结构。结果表明,该结构可由phoenix自动确定。mr_rosetta从细菌Dus酶开始,只有18%的序列同一性和显著的结构差异。人类Dus2的整体折叠与细菌酶相似,但具有更大的识别结构域和独特的三股反平行β-片插入到靠近识别结构域的催化结构域中,有助于结构域-结构域相互作用。这种结构可能会为对抗肺癌的新治疗方法的发展提供信息。
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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