# | Document title | Authors | Year | Source | Cited by |
1 | Production of biomaterials from seafood waste for application as vegetable wash disinfectant | Tongwanichniyom S., Kitjaruwankul S., Phornphisutthimas S. | 2022 | Heliyon, 8(5), e09357 | 11 |
2 | Inner and Outer Coordination Shells of Mg2+ in CorA Selectivity Filter from Molecular Dynamics Simulations | Kitjaruwankul S., Wapeesittipan P., Boonamnaj P., Sompornpisut P. | 2016 | Journal of Physical Chemistry B, 120(3), pp. 406-417 | 10 |
3 | Asymmetry in structural response of inner and outer transmembrane segments of CorA protein by a coarse-grain model | Kitjaruwankul S., Khrutto C., Sompornpisut P., Farmer B., Pandey R. | 2016 | Journal of Chemical Physics, 145(13), 135101 | 8 |
4 | Structural analysis of rice Os4BGlu18 monolignol ß-glucosidase | Baiya S., Pengthaisong S., Kitjaruwankul S., Ketudat J.R., Cairns | 2021 | PLoS ONE, 16(1 January), e0241325 | 6 |
5 | Thermal-induced folding and unfolding of a transmembrane protein (CorA) | Kitjaruwankul S., Boonamnaj P., Paudel S., Jetsadawisut W., Sompornpisut P., Pandey R. | 2018 | Physica A: Statistical Mechanics and its Applications, 506, pp. 987-992 | 4 |
6 | Thermal-response of a protein (hHv1)by a coarse-grained MC and all-atom MD computer simulations | Boonamnaj P., Paudel S., Jetsadawisut W., Kitjaruwankul S., Sompornpisut P., Pandey R. | 2019 | Physica A: Statistical Mechanics and its Applications, 527, 121310 | 4 |
7 | Experimental and Molecular Dynamics Simulation Insights into Adsorption of Co(II), Cr(III), and Cu(II) on Chitosan and Chitosan/Tripolyphosphate Nanoparticles | Promkatkaew M., Baiya S., Tongwanichniyom S., Kitjaruwankul S. | 2023 | ACS Omega | 4 |
8 | Transmembrane helix assembly by max-min ant system algorithm | Sujaree K., Kitjaruwankul S., Boonamnaj P., Supunyabut C., Sompornpisut P. | 2015 | Chemical Biology and Drug Design, 86(6), pp. 1360-1372 | 3 |
9 | Shaping the water crevice to accommodate the voltage sensor in a down conformation: A molecular dynamics simulation study | Kitjaruwankul S., Boonamnaj P., Fuklang S., Supunyabut C., Sompornpisut P. | 2015 | Journal of Physical Chemistry B, 119(22), pp. 6516-6524 | 3 |
10 | Globular bundles and entangled network of proteins (CorA) by a coarse-grained Monte Carlo simulation | Rangubpit W., Kitjaruwankul S., Boonamnaj P., Sompornpisut P., Pandey R.B. | 2019 | AIMS Biophysics, 6(2), pp. 68-82 | 2 |
11 | Pinning the conformation of a protein (CorA) in a solute matrix with selective binding | Rangubpit W., Kitjaruwankul S., Sompornpisut P., Pandey R.B. | 2020 | Physica A: Statistical Mechanics and its Applications, 556, 124823 | 0 |
12 | In silico analysis and transcript levels of non-specific lipid transfer proteins (SiLTPI.5 and SiLTPII.1) under abiotic stresses in sesame (Sesamum indicum) | Baiya S., Kitjaruwankul S., Juntaropakorn M., Promkatkaew M. | 2023 | Agriculture and Natural Resources, 57(5), pp. 787-798 | 0 |
13 | Experimental and Theoretical Studies on DNA Binding and Anticancer Activity of Nickel(II) and Zinc(II) Complexes with N– (8–Quinolyl) Salicylaldimine Schiff Base Ligands | Pinchaipat B., Pinchaipat B., Chotima R., Promkatkaew M., Kitjaruwankul S., Chainok K., Khudkham T. | 2024 | Chemistry (Switzerland), 6(4), pp. 618-639 | 0 |