Bujnicki J M, Rychlewski L
Bioinformatics Laboratory, International Institute of Molecular and Cell Biology, Warsaw, Poland.
J Mol Microbiol Biotechnol. 2001 Jan;3(1):69-72.
The PD-(D/E)XK nuclease domains, initially identified in type II restriction enzymes, serve as models for studying aspects of protein-DNA interactions, mechanisms of phosphodiester hydrolysis, and provide indispensable tools for techniques in genetic engineering and molecular medicine. However, the low degree of amino acid conservation hampers the possibility of identification of PD-(D/E)XK superfamily members based solely on sequence comparisons. In several proteins implicated in DNA recombination and repair the restriction enzyme-like nuclease domain has been found only after the corresponding structures were determined experimentally. Here, we identified highly diverged variants of the PD-(D/E)XK domain in many proteins and open reading frames using iterative database searches and progressive, structure-guided alignment of sequence profiles. We predicted the possible cellular function for many hypothetical proteins based on their relative similarity to characterized nucleases or observed presence of additional domains. We also identified the nuclease domain in genuine recombinases and restriction enzymes, whose homology to other PD-(D/E)XK enzymes has not been demonstrated previously. The first superfamily-wide comparative analysis, not limited to nucleases of known structure, will guide cloning and characterization of novel enzymes and planning new experiments to better understand those already studied.
PD-(D/E)XK核酸酶结构域最初在II型限制酶中被鉴定出来,可作为研究蛋白质与DNA相互作用、磷酸二酯水解机制的模型,并为基因工程和分子医学技术提供不可或缺的工具。然而,氨基酸保守程度较低阻碍了仅基于序列比较来鉴定PD-(D/E)XK超家族成员的可能性。在一些与DNA重组和修复相关的蛋白质中,只有在通过实验确定了相应结构之后,才发现了类似限制酶的核酸酶结构域。在此,我们通过迭代数据库搜索以及序列图谱的渐进式、结构导向比对,在许多蛋白质和开放阅读框中鉴定出了高度分化的PD-(D/E)XK结构域变体。我们根据许多假设蛋白质与已表征核酸酶 的相对相似性或观察到的其他结构域的存在,预测了它们可能的细胞功能。我们还在真正的重组酶和限制酶中鉴定出了核酸酶结构域,其与其他PD-(D/E)XK酶的同源性此前尚未得到证实。首次进行的全超家族比较分析,不局限于已知结构的核酸酶,将指导新型酶的克隆和表征,并为规划新实验以更好地理解已研究的酶提供指导。