Johanna Andersson
1:e Forskningsing vid Institutionen för kemi inom livsvetenskaperna; Administration och service
- Telefon:
- 018-471 44 38
- E-post:
- johanna.andersson@kemi.uu.se
- Besöksadress:
- Husargatan 3
752 37 Uppsala - Postadress:
- Box 576
75123 Uppsala
- Akademiska meriter:
- Tekn.dr

Publikationer
Senaste publikationer
-
Binuclear ruthenium complex linker length tunes DNA threading intercalation kinetics
Ingår i Biophysical Journal, s. 667-676, 2025
-
Ingår i Chemistry - A European Journal, s. 4981-4985, 2017
- DOI för Guanine Can Direct Binding Specificity of Ru-dipyridophenazine (dppz) Complexes to DNA through Steric Effects
- Ladda ner fulltext (pdf) av Guanine Can Direct Binding Specificity of Ru-dipyridophenazine (dppz) Complexes to DNA through Steric Effects
-
Dissecting the Dynamic Pathways of Stereoselective DNA Threading Intercalation
Ingår i Biophysical Journal, s. 1255-1263, 2016
-
DNA intercalation optimized by two-step molecular lock mechanism
Ingår i Scientific Reports, 2016
- DOI för DNA intercalation optimized by two-step molecular lock mechanism
- Ladda ner fulltext (pdf) av DNA intercalation optimized by two-step molecular lock mechanism
-
Resolving the DNA Binding Mode of a Rotationally Flexible Binuclear Ruthenium Complex
Ingår i Biophysical Journal, 2015
Alla publikationer
Artiklar i tidskrift
-
Binuclear ruthenium complex linker length tunes DNA threading intercalation kinetics
Ingår i Biophysical Journal, s. 667-676, 2025
-
Ingår i Chemistry - A European Journal, s. 4981-4985, 2017
- DOI för Guanine Can Direct Binding Specificity of Ru-dipyridophenazine (dppz) Complexes to DNA through Steric Effects
- Ladda ner fulltext (pdf) av Guanine Can Direct Binding Specificity of Ru-dipyridophenazine (dppz) Complexes to DNA through Steric Effects
-
Dissecting the Dynamic Pathways of Stereoselective DNA Threading Intercalation
Ingår i Biophysical Journal, s. 1255-1263, 2016
-
DNA intercalation optimized by two-step molecular lock mechanism
Ingår i Scientific Reports, 2016
- DOI för DNA intercalation optimized by two-step molecular lock mechanism
- Ladda ner fulltext (pdf) av DNA intercalation optimized by two-step molecular lock mechanism
-
Resolving the DNA Binding Mode of a Rotationally Flexible Binuclear Ruthenium Complex
Ingår i Biophysical Journal, 2015