Bujnicki J M, Rotkiewicz P, Kolinski A, Rychlewski L
Bioinformatics Laboratory, International Institute of Molecular and Cell Biology, ul. ks. Trojdena 4, 02-109 Warsaw, Poland.
Protein Eng. 2001 Oct;14(10):717-21. doi: 10.1093/protein/14.10.717.
Using a recent version of the SICHO algorithm for in silico protein folding, we made a blind prediction of the tertiary structure of the N-terminal, independently folded, catalytic domain (CD) of the I-TevI homing endonuclease, a representative of the GIY-YIG superfamily of homing endonucleases. The secondary structure of the I-TevI CD has been determined using NMR spectroscopy, but computational sequence analysis failed to detect any protein of known tertiary structure related to the GIY-YIG nucleases (Kowalski et al., Nucleic Acids Res., 1999, 27, 2115-2125). To provide further insight into the structure-function relationships of all GIY-YIG superfamily members, including the recently described subfamily of type II restriction enzymes (Bujnicki et al., Trends Biochem. Sci., 2000, 26, 9-11), we incorporated the experimentally determined and predicted secondary and tertiary restraints in a reduced (side chain only) protein model, which was minimized by Monte Carlo dynamics and simulated annealing. The subsequently elaborated full atomic model of the I-TevI CD allows the available experimental data to be put into a structural context and suggests that the GIY-YIG domain may dimerize in order to bring together the conserved residues of the active site.
我们使用SICHO算法的最新版本对硅基蛋白质折叠进行研究,对I-TevI归巢内切酶的N端独立折叠催化结构域(CD)的三级结构进行了盲预测,I-TevI归巢内切酶是归巢内切酶GIY-YIG超家族的代表。I-TevI CD的二级结构已通过核磁共振光谱法确定,但计算序列分析未能检测到任何与GIY-YIG核酸酶相关的已知三级结构的蛋白质(Kowalski等人,《核酸研究》,1999年,27卷,2115 - 2125页)。为了更深入了解所有GIY-YIG超家族成员的结构-功能关系,包括最近描述的II型限制酶亚家族(Bujnicki等人,《生物化学趋势》,2000年,26卷,9 - 11页),我们将实验确定和预测的二级和三级限制条件纳入一个简化的(仅侧链)蛋白质模型中,该模型通过蒙特卡罗动力学和模拟退火进行最小化处理。随后构建的I-TevI CD全原子模型能够将现有的实验数据置于结构背景中,并表明GIY-YIG结构域可能会二聚化,以便将活性位点的保守残基聚集在一起。