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Impact of PROTAC Linker Plasticity on the Solution Conforma..:
Dhanushka Weerakoon (11937551)
;
Rodrigo J. Carbajo (264817)
;
Leonardo De Maria (416956)
..
https://figshare.com/articles/journal_contribution/Impact_of_PROTAC_Linker_Plasticity_on_the_Solution_Conformations_and_Dissociation_of_the_Ternary_Complex/18269525. , 2022
Link:
https://doi.org/10.1021/acs.jcim.1c01036.s001
RT Journal T1
Impact of PROTAC Linker Plasticity on the Solution Conformations and Dissociation of the Ternary Complex
UL https://suche.suub.uni-bremen.de/peid=base-ftsmithonian:oai:figshare.com:article_18269525&Exemplar=1&LAN=DE A1 Dhanushka Weerakoon (11937551) A1 Rodrigo J. Carbajo (264817) A1 Leonardo De Maria (416956) A1 Christian Tyrchan (636396) A1 Hongtao Zhao (216996) YR 2022 K1 Biophysics K1 Biochemistry K1 Biotechnology K1 Sociology K1 Cancer K1 Biological Sciences not elsewhere classified K1 Chemical Sciences not elsewhere classified K1 Physical Sciences not elsewhere classified K1 providing strong support K1 intramolecular lipophilic interaction K1 small molecule free K1 complex von hippel K1 protac linker plasticity K1 linker plasticity K1 ternary complex K1 free energy K1 tendency toward K1 targeting chimeras K1 step pathway K1 special interest K1 respective proteins K1 often flexible K1 molecular dynamics K1 lengthy linkers K1 hydrophobic contact K1 dimethyl sulfoxide K1 conformations featuring K1 conformational behavior K1 agrees well JF https://figshare.com/articles/journal_contribution/Impact_of_PROTAC_Linker_Plasticity_on_the_Solution_Conformations_and_Dissociation_of_the_Ternary_Complex/18269525 LK http://dx.doi.org/https://doi.org/10.1021/acs.jcim.1c01036.s001 DO https://doi.org/10.1021/acs.jcim.1c01036.s001 SF ELIB - SuUB Bremen
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