Silva George H, Belfort Marlene
Wadsworth Center, New York State Department of Health and State University of New York at Albany, Albany, NY 12201-2002, USA.
Nucleic Acids Res. 2004 Jun 9;32(10):3156-68. doi: 10.1093/nar/gkh618. Print 2004.
The general structural fold of the LAGLIDADG endonuclease family consists of two similar alpha/beta domains (alphabetabetaalphabetabetaalpha) that assemble either as homodimers or monomers with the domains related by pseudo-two-fold symmetry. At the center of this symmetry is the closely packed LAGLIDADG two-helix bundle that forms the main inter- or intra-molecular contact region between the domains of single- or double-motif proteins, respectively. In this work, we further examine the role of the LAGLIDADG residues involved in the helix-helix interaction. The interchangeability of the LAGLIDADG helix interaction was explored by grafting interfacial residues from the homodimeric I-CreI into the corresponding positions in the monomeric I-DmoI. The resulting LAGLIDADG exchange mutant is partially active, preferring to nick dsDNA rather than making the customary double-strand break. A series of partial revertants within the mutated LAGLIDADG region are shown to restore cleavage activity to varying degrees resulting in one I-DmoI mutant that is more active than wild-type I-DmoI. The phenotype of some of these mutants was reconciled on the basis of similarity to the GxxxG helix interaction found in transmembrane proteins. Additionally, a split variant of I-DmoI was created, demonstrating that the LAGLIDADG helices of I-DmoI are capable of forming and maintaining the protein-protein interface in trans to create an active heterodimer.
LAGLIDADG核酸内切酶家族的一般结构折叠由两个相似的α/β结构域(αββαββα)组成,这些结构域以同二聚体或单体形式组装,结构域通过伪二次对称相关联。这种对称性的中心是紧密堆积的LAGLIDADG双螺旋束,它分别形成单基序或双基序蛋白质结构域之间主要的分子间或分子内接触区域。在这项工作中,我们进一步研究了参与螺旋-螺旋相互作用的LAGLIDADG残基的作用。通过将来自同二聚体I-CreI的界面残基嫁接到单体I-DmoI的相应位置,探索了LAGLIDADG螺旋相互作用的互换性。所得的LAGLIDADG交换突变体具有部分活性,更倾向于切割双链DNA而不是进行常规的双链断裂。结果表明,突变的LAGLIDADG区域内的一系列部分回复突变体在不同程度上恢复了切割活性,从而产生了一个比野生型I-DmoI更具活性的I-DmoI突变体。基于与跨膜蛋白中发现的GxxxG螺旋相互作用的相似性,对其中一些突变体的表型进行了分析。此外,还创建了I-DmoI的分裂变体,证明I-DmoI的LAGLIDADG螺旋能够在反式中形成并维持蛋白质-蛋白质界面以产生活性异二聚体。