Solovev Y.V., Ostroverkhova D.S., Tamazian G.S., Domnin A.V., Anashkina A.A., Petrushanko I.Y., Stepanov E.O., Porozov Y.B. Na/K-ATPase Glutathionylation: in silico Modeling of Reaction Mechanisms. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics). 2020. Vol. 12304 LNBI. pp. 372-380.. doi: 10.1007/978-3-030-57821-3_36
Delfino F., Porozov Y., Stepanov E., Tamazian G., Tozzini V. Evolutionary Switches Structural Transitions via Coarse-Grained Models. Journal of Computational Biology. 2020. Vol. 27. No. 2. pp. 189–199.. doi: 10.1089/cmb.2019.0338
Delfino F., Porozov Y.B., Stepanov E., Tamazian G., Tozzini V. Structural Transition States Explored With Minimalist Coarse Grained Models: Applications to Calmodulin. Frontiers in Molecular Biosciences. 2019. Vol. 6. pp. 104.. doi: 10.3389/fmolb.2019.00104
Paolini E., Stepanov E.O. Flows of measures generated by vector fields. Proceedings of the Royal Society of Edinburgh Section A: Mathematics. 2018. Vol. 148. No. 4. pp. 773-818.. doi: 10.1017/S0308210517000312
Magnani V., Stepanov E.O., Trevisan D. A rough calculus approach to level sets in the Heisenberg group. Journal of the London Mathematical Society. 2018. Vol. 97. No. 3. pp. 495-522.. doi: 10.1112/jlms.12115
Chambolle A., Lamboley J., Lemenant A., Stepanov E. Regularity for the optimal compliance problem with length penalization. SIAM Journal on Mathematical Analysis. 2017. Vol. 49. No. 2. pp. 1166-1224.. doi: 10.1137/16M1070578
Stepanov E.O., Teplitskaya Y. Self-contracted curves have finite length. Journal of the London Mathematical Society. 2017. Vol. 96. No. 2. pp. 455-481.. doi: 10.1112/jlms.12068
Ponosov A.V., Stepanov E.O. Smooth dynamics becomes hybrid in the limit. SIAM Journal on Control and Optimization. 2017. Vol. 55. No. 1. pp. 29-50.. doi: 10.1137/16M1064611
Stepanov E., Trevisan D. Three superposition principles: currents, continuity equations and curves of measures. Journal of Functional Analysis. 2017. Vol. 272. No. 3. pp. 1044–1103.. doi: 10.1016/j.jfa.2016.10.025
Knyazev S.N., Kalyakin V.Y., Deryabin I.N., Fedorov B.A., Smirnov A.V., Stepanov E.O., Porozov Y.B. Prediction of protein conformational mobility with validation using small-angle X-ray scattering. Biophysics. 2015. Vol. 60. No. 6. pp. 886-892.. doi: 10.1134/S0006350915060147
Князев С.Н., Калякин В.Ю., Дерябин И.Н., Федоров Б.А., Смирнов А.В., Степанов Е.О., Порозов Ю.Б. Предсказание конформационной подвижности белков и оценка ее достоверности с помощью малоуглового рентгеновского рассеяния [Prediction of Protein Conformational Mobility and Evaluation of Its Reliability Using Small-Angle X-ray Scattering]. Биофизика [Biofizika]. 2015. Т. 60. № 6. С. 1069–1076.
Ponosov A.V., Stepanov E.O. Atomic operators, random dynamical systems and invariant measures. St. Petersburg Mathematical Journal. 2015. Vol. 26. No. 4. pp. 607-642.. doi: 10.1090/spmj/1353
Упорядочивание конформационных переходов белковых молекул по данным малоуглового рентгеновского рассеяния
Tamazian G.S., Ho Chang J., Knyazev S., Stepanov E., Kim K., Porozov Y.B. Modeling conformational redox-switch modulation of human succinic semialdehyde dehydrogenase. Proteins: Structure, Function and Bioinformatics. 2015. Vol. 83. No. 12. pp. 2217-2229.. doi: 10.1002/prot.24937
Paolini E., Stepanov E.O., Teplitskaya Y. An example of an infinite Steiner tree connecting an uncountable set. Advances in Calculus of Variations. 2015. Vol. 8. No. 3. pp. 267-290.. doi: 10.1515/acv-2013-0025
Моделирование подвижности белка SSADH с использованием градиентного спуска и эвристик
Моделирование подвижности белка SSADH с использованием градиентного спуска и эвристик
Protein Inter-Conformational Movement Modeling Based on Mass Transportation Principle
Koshevoy A.A., Stepanov E.O., Porozov Y.B. Method of prediction and optimization of conformational motion of proteins based on mass transportation principle. Biophysics. 2014. Vol. 59. No. 1. pp. 28-34.. doi: 10.1134/S0006350914010035
Кошевой А.А., Степанов Е.О., Порозов Ю.Б. Метод предсказания и оптимизации конформационной подвижности белков путем решения транспортной задачи переноса массы [Method of prediction and optimization of conformational motion of proteins based on mass transportation principle]. Биофизика [Biofizika]. 2014. Т. 59. № 1. С. 37-44.
Knyazev S., Tarakanov S., Kuznetsov V., Porozov Y., Koucheryavy Y.A., Stepanov E. Coarse-grained model of protein interaction for bio-inspired nano-communication. Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT), 2014 6th International Congress on. 2014. pp. 260-262.. doi: 10.1109/ICUMT.2014.7002112
Ponosov A., Stepanov E. Atomic operators, random dynamical systems and invariant measures. Алгебра и анализ. 2014. Vol. 26. No. 4. pp. 148-194.
Georgiev V., Stepanov E. Metric cycles, curves and solenoids. Discrete and Continuous Dynamical Systems- Series A (DCDS-A). 2014. Vol. 34. No. 4. pp. 1443-1463.. doi: 10.3934/dcds.2014.34.1443
Тамазян Г.С., Князев С.Н., Степанов Е.О., Порозов Ю.Б. Модель конформационной подвижности белка на основе принципа переноса масс. Информационные технологии и системы - 2013. 2013.
Protein Inter-Conformational Movement Modeling Based on Mass Transportation Principle
Степанов Е.О. Existence and regularity results for the Steiner problem. Calculus of Variations and Partial Differential Equations. 2012.. doi: DOI 10.1007/s00526-012-0505-4
Степанов Е.О. Decomposition of acyclic normal currents in a metric space. Journal of Functional Analysis. 2012. Vol. 263. No. 11. pp. 3358-3390.