| Structural and thermodynamic analysis of the GFP: GFP‐nanobody complex MH Kubala, O Kovtun, K Alexandrov, BM Collins Protein Science 19 (12), 2389-2401, 2010 | 482 | 2010 |
| Cavin family proteins and the assembly of caveolae O Kovtun, VA Tillu, N Ariotti, RG Parton, BM Collins Journal of cell science 128 (7), 1269-1278, 2015 | 292 | 2015 |
| The Vps35 D620N mutation linked to Parkinson's disease disrupts the cargo sorting function of retromer J Follett, SJ Norwood, NA Hamilton, M Mohan, O Kovtun, S Tay, Y Zhe, ... Traffic 15 (2), 230-244, 2014 | 273 | 2014 |
| Structure of the membrane-assembled retromer coat determined by cryo-electron tomography O Kovtun, N Leneva, YS Bykov, N Ariotti, RD Teasdale, M Schaffer, ... Nature 561 (7724), 561-564, 2018 | 237 | 2018 |
| Species-independent translational leaders facilitate cell-free expression S Mureev, O Kovtun, UTT Nguyen, K Alexandrov Nature biotechnology 27 (8), 747-752, 2009 | 185 | 2009 |
| Single-molecule analysis reveals self assembly and nanoscale segregation of two distinct cavin subcomplexes on caveolae Y Gambin, N Ariotti, KA McMahon, M Bastiani, E Sierecki, O Kovtun, ... elife 3, e01434, 2014 | 176 | 2014 |
| Architecture of the AP2/clathrin coat on the membranes of clathrin-coated vesicles O Kovtun, VK Dickson, BT Kelly, DJ Owen, JAG Briggs Science advances 6 (30), eaba8381, 2020 | 129 | 2020 |
| Structural insights into the organization of the cavin membrane coat complex O Kovtun, VA Tillu, WR Jung, N Leneva, N Ariotti, N Chaudhary, ... Developmental cell 31 (4), 405-419, 2014 | 124 | 2014 |
| Structural basis for VPS34 kinase activation by Rab1 and Rab5 on membranes S Tremel, Y Ohashi, DR Morado, J Bertram, O Perisic, LTL Brandt, ... Nature communications 12 (1), 1564, 2021 | 117 | 2021 |
| Leishmania cell-free protein expression system O Kovtun, S Mureev, WR Jung, MH Kubala, W Johnston, K Alexandrov Methods 55 (1), 58-64, 2011 | 116 | 2011 |
| Architecture and mechanism of metazoan retromer: SNX3 tubular coat assembly N Leneva, O Kovtun, DR Morado, JAG Briggs, DJ Owen Science advances 7 (13), eabf8598, 2021 | 80 | 2021 |
| Cavin1 intrinsically disordered domains are essential for fuzzy electrostatic interactions and caveola formation VA Tillu, J Rae, Y Gao, N Ariotti, M Floetenmeyer, O Kovtun, KA McMahon, ... Nature communications 12 (1), 931, 2021 | 59 | 2021 |
| Structural basis for different phosphoinositide specificities of the PX domains of sorting nexins regulating G-protein signaling C Mas, SJ Norwood, A Bugarcic, G Kinna, N Leneva, O Kovtun, R Ghai, ... Journal of Biological Chemistry 289 (41), 28554-28568, 2014 | 58 | 2014 |
| Towards the Construction of Expressed Proteomes Using a Leishmania tarentolae Based Cell-Free Expression System O Kovtun, S Mureev, W Johnston, K Alexandrov PLOS one 5 (12), e14388, 2010 | 52 | 2010 |
| Isolation and structural and pharmacological characterization of α-elapitoxin-Dpp2d, an amidated three finger toxin from black mamba venom CIA Wang, T Reeks, I Vetter, I Vergara, O Kovtun, RJ Lewis, PF Alewood, ... Biochemistry 53 (23), 3758-3766, 2014 | 42 | 2014 |
| A variable undecad repeat domain in cavin1 regulates caveola formation and stability VA Tillu, YW Lim, O Kovtun, S Mureev, C Ferguson, M Bastiani, ... The EMBO Reports 19 (9), EMBR201845775, 2018 | 36 | 2018 |
| FCHO controls AP2’s initiating role in endocytosis through a PtdIns(4,5)P2-dependent switch NR Zaccai, Z Kadlecova, VK Dickson, K Korobchevskaya, J Kamenicky, ... Science advances 8 (17), eabn2018, 2022 | 35 | 2022 |
| A phosphoinositide-binding cluster in cavin1 acts as a molecular sensor for cavin1 degradation VA Tillu, O Kovtun, KA McMahon, BM Collins, RG Parton Molecular biology of the cell 26 (20), 3561-3569, 2015 | 35 | 2015 |
| Radiative-electron-capture-to-continuum cusp in collisions and the high-energy endpoint of electron-nucleus bremsstrahlung PM Hillenbrand, S Hagmann, D Atanasov, D Banaś, KH Blumenhagen, ... Physical Review A 90 (2), 022707, 2014 | 34 | 2014 |
| The leader sequence of tobacco mosaic virus RNA devoid of Watson-Crick secondary structure possesses a cooperatively melted, compact conformation AA Kovtun, NE Shirokikh, AT Gudkov, AS Spirin Biochemical and biophysical research communications 358 (1), 368-372, 2007 | 19 | 2007 |