Pingoud V, Thole H, Christ F, Grindl W, Wende W, Pingoud A
Institut für Biochemie, Fachbereich Biologie, Justus-Liebig-Universität, Heinrich-Buff-Ring 58, D-35392 Giessen, Germany.
J Biol Chem. 1999 Apr 9;274(15):10235-43. doi: 10.1074/jbc.274.15.10235.
PI-SceI is an intein-encoded protein that belongs to the LAGLIDADG family of homing endonucleases. According to the crystal structure and mutational studies, this endonuclease consists of two domains, one responsible for protein splicing, the other for DNA cleavage, and both presumably for DNA binding. To define the DNA binding site of PI-SceI, photocross-linking was used to identify amino acid residues in contact with DNA. Sixty-three double-stranded oligodeoxynucleotides comprising the minimal recognition sequence and containing single 5-iodopyrimidine substitutions in almost all positions of the recognition sequence were synthesized and irradiated in the presence of PI-SceI with a helium/cadmium laser (325 nm). The best cross-linking yield (approximately 30%) was obtained with an oligodeoxynucleotide with a 5-iododeoxyuridine at position +9 in the bottom strand. The subsequent analysis showed that cross-linking had occurred with amino acid His-333, 6 amino acids after the second LAGLIDADG motif. With the H333A variant of PI-SceI or in the presence of excess unmodified oligodeoxynucleotide, no cross-linking was observed, indicating the specificity of the cross-linking reaction. Chemical modification of His residues in PI-SceI by diethylpyrocarbonate leads to a substantial reduction in the binding and cleavage activity of PI-SceI. This inactivation can be suppressed by substrate binding. This result further supports the finding that at least one His residue is in close contact to the DNA. Based on these and published results, conclusions are drawn regarding the DNA binding site of PI-SceI.
PI-SceI是一种内含肽编码的蛋白质,属于归巢内切酶的LAGLIDADG家族。根据晶体结构和突变研究,这种内切酶由两个结构域组成,一个负责蛋白质剪接,另一个负责DNA切割,两者可能都参与DNA结合。为了确定PI-SceI的DNA结合位点,采用光交联法来鉴定与DNA接触的氨基酸残基。合成了63个双链寡脱氧核苷酸,其包含最小识别序列且在识别序列的几乎所有位置都含有单个5-碘嘧啶取代,并在PI-SceI存在的情况下用氦/镉激光(325nm)进行照射。在底部链的+9位置含有5-碘脱氧尿苷的寡脱氧核苷酸获得了最佳交联产率(约30%)。随后的分析表明,交联发生在第二个LAGLIDADG基序后的第6个氨基酸His-333处。使用PI-SceI的H333A变体或在过量未修饰的寡脱氧核苷酸存在的情况下,未观察到交联,这表明交联反应具有特异性。焦碳酸二乙酯对PI-SceI中His残基的化学修饰导致PI-SceI的结合和切割活性大幅降低。这种失活可被底物结合所抑制。该结果进一步支持了至少一个His残基与DNA紧密接触的发现。基于这些以及已发表的结果,得出了关于PI-SceI的DNA结合位点的结论。