The 65h JSAP Spring Meeting, 2018

Presentation information

Oral presentation

12 Organic Molecules and Bioelectronics » 12.6 Nanobiotechnology

[17a-A202-1~8] 12.6 Nanobiotechnology

Sat. Mar 17, 2018 9:00 AM - 11:15 AM A202 (54-202)

Shinya Kumagai(Toyota Tech. Inst.), Toshinori Motegi(Gunma Univ.)

10:45 AM - 11:00 AM

[17a-A202-7] Interaction analyses of DNA-uranyl system based on MD and FMO calculations

Satoru Tsushima1,2, Takaya Abe3, Kouji Okuwaki3, 〇Yuji Mochizuki3,4, Yuto Komeiji5, Kaori Fukuzawa4,6, Tatsuya Nakano7, Yoshio Okiyama7, Eisaku Miyoshi8 (1.HZDR, 2.Tokyo Inst. Tech., 3.Rikkyo Univ., 4.Univ. Tokyo, IIS, 5.AIST/BMDRI, 6.Hoshi Univ., 7.NIHS, 8.Kyushu Univ.)

Keywords:Fragment Molecular Orbital (FMO) Method, DNA-uranyl Complex, Interaction Energy

Recently, the interactions between DNA and uranyl ion have attracted considerable attentions in the field of health physics. However, atomistic insights of DNA-uranyl interactions have not yet been revealed experimentally and theoretically. We thus performed a computational study with classical molecular dynamics (MD) and ab initio fragment molecular orbital (FMO) for a model DNA consisting of 12 base pairs. A number of sample structures were generated from MD simulations, and they were subjected to FMO calculations. Then, the interactions among base moieties were evaluated in a statistical manner. It was found that the hydrogen bonds among bases (AT and CG pairs) are not so affected by the binding of uranyl ion. In contrast, the sizable statistical differences were observed for the stacking interactions, especially for the bases near the uranyl binding site.