Pukáncsik Mária, Orbán Ágnes, Nagy Kinga, Matsuo Koichi, Gekko Kunihiko, Maurin Damien, Hart Darren, Kézsmárki István, Vertessy Beata G
Institute of Enzymology, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Budapest, Hungary.
Department of Physics, Budapest University of Technology and Economics and MTA-BME Lendület Magneto-optical Spectroscopy Research Group, 1111 Budapest, Hungary.
PLoS One. 2016 Jun 7;11(6):e0156238. doi: 10.1371/journal.pone.0156238. eCollection 2016.
A novel uracil-DNA degrading protein factor (termed UDE) was identified in Drosophila melanogaster with no significant structural and functional homology to other uracil-DNA binding or processing factors. Determination of the 3D structure of UDE is excepted to provide key information on the description of the molecular mechanism of action of UDE catalysis, as well as in general uracil-recognition and nuclease action. Towards this long-term aim, the random library ESPRIT technology was applied to the novel protein UDE to overcome problems in identifying soluble expressing constructs given the absence of precise information on domain content and arrangement. Nine constructs of UDE were chosen to decipher structural and functional relationships. Vacuum ultraviolet circular dichroism (VUVCD) spectroscopy was performed to define the secondary structure content and location within UDE and its truncated variants. The quantitative analysis demonstrated exclusive α-helical content for the full-length protein, which is preserved in the truncated constructs. Arrangement of α-helical bundles within the truncated protein segments suggested new domain boundaries which differ from the conserved motifs determined by sequence-based alignment of UDE homologues. Here we demonstrate that the combination of ESPRIT and VUVCD spectroscopy provides a new structural description of UDE and confirms that the truncated constructs are useful for further detailed functional studies.
在黑腹果蝇中鉴定出一种新型尿嘧啶-DNA降解蛋白因子(称为UDE),它与其他尿嘧啶-DNA结合或加工因子没有显著的结构和功能同源性。预计UDE三维结构的确定将为描述UDE催化的分子作用机制以及一般的尿嘧啶识别和核酸酶作用提供关键信息。为了实现这一长期目标,鉴于缺乏关于结构域含量和排列的精确信息,将随机文库ESPRIT技术应用于新型蛋白UDE,以克服鉴定可溶性表达构建体的问题。选择了9个UDE构建体来解读结构和功能关系。进行了真空紫外圆二色性(VUVCD)光谱分析,以确定UDE及其截短变体中的二级结构含量和位置。定量分析表明全长蛋白仅含有α螺旋结构,截短构建体中也保留了该结构。截短蛋白片段内α螺旋束的排列表明了新的结构域边界,这与通过UDE同源物基于序列比对确定的保守基序不同。在这里我们证明ESPRIT和VUVCD光谱的结合提供了UDE的新结构描述,并证实截短构建体可用于进一步详细的功能研究。