Zrimec Jan, Lapanje Ales
IEEE/ACM Trans Comput Biol Bioinform. 2015 Sep-Oct;12(5):1137-45. doi: 10.1109/TCBB.2015.2396057.
DNA melting bubbles are the basis of many DNA-protein interactions, such as those in regulatory DNA regions driving gene expression, DNA replication and bacterial horizontal gene transfer. Bubble formation is affected by DNA duplex stability and thermally induced duplex destabilization (TIDD). Although prediction of duplex stability with the nearest neighbor (NN) method is much faster than prediction of TIDD with the Peyrard-Bishop-Dauxois (PBD) model, PBD predicted TIDD defines regulatory DNA regions with higher accuracy and detail. Here, we considered that PBD predicted TIDD is inherently related to the intrinsic duplex stabilities of destabilization regions. We show by regression modeling that NN duplex stabilities can be used to predict TIDD almost as accurately as is predicted with PBD. Predicted TIDD is in fact ascribed to non-linear transformation of NN duplex stabilities in destabilization regions as well as effects of neighboring regions relative to destabilization size. Since the prediction time of our models is over six orders of magnitude shorter than that of PBD, the models present an accessible tool for researchers. TIDD can be predicted on our webserver at http://tidd.immt.eu.
DNA解链泡是许多DNA-蛋白质相互作用的基础,例如那些驱动基因表达、DNA复制和细菌水平基因转移的调控DNA区域中的相互作用。泡的形成受DNA双链稳定性和热诱导双链去稳定化(TIDD)的影响。尽管用最近邻(NN)方法预测双链稳定性比用佩拉尔-毕晓普-多克索(PBD)模型预测TIDD要快得多,但PBD预测的TIDD能以更高的准确性和细节定义调控DNA区域。在这里,我们认为PBD预测的TIDD与去稳定化区域的内在双链稳定性存在内在关联。我们通过回归建模表明,NN双链稳定性可用于预测TIDD,其准确性几乎与用PBD预测的一样。预测的TIDD实际上归因于去稳定化区域中NN双链稳定性的非线性转换以及相对于去稳定化大小的相邻区域的影响。由于我们模型的预测时间比PBD的预测时间短六个数量级以上,这些模型为研究人员提供了一个便捷的工具。可以在我们的网络服务器http://tidd.immt.eu上预测TIDD。