Scott Duncan E, Marsh May, Blundell Tom L, Abell Chris, Hyvönen Marko
Department of Chemistry, University of Cambridge, Cambridge, UK.
Department of Biochemistry, University of Cambridge, Cambridge, UK.
FEBS Lett. 2016 Apr;590(8):1094-102. doi: 10.1002/1873-3468.12139. Epub 2016 Apr 6.
RAD51 is a recombinase involved in the homologous recombination of double-strand breaks in DNA. RAD51 forms oligomers by binding to another molecule of RAD51 via an 'FxxA' motif, and the same recognition sequence is similarly utilised to bind BRCA2. We have tabulated the effects of mutation of this sequence, across a variety of experimental methods and from relevant mutations observed in the clinic. We use mutants of a tetrapeptide sequence to probe the binding interaction, using both isothermal titration calorimetry and X-ray crystallography. Where possible, comparison between our tetrapeptide mutational study and the previously reported mutations is made, discrepancies are discussed and the importance of secondary structure in interpreting alanine scanning and mutational data of this nature is considered.
RAD51是一种参与DNA双链断裂同源重组的重组酶。RAD51通过一个“FxxA”基序与另一个RAD51分子结合形成寡聚体,并且利用相同的识别序列以类似方式结合BRCA2。我们已将该序列突变的影响制成表格,涵盖了各种实验方法以及临床中观察到的相关突变。我们使用四肽序列的突变体,通过等温滴定量热法和X射线晶体学来探究结合相互作用。在可能的情况下,对我们的四肽突变研究与先前报道的突变进行比较,讨论差异,并考虑二级结构在解释此类丙氨酸扫描和突变数据中的重要性。