Sensing DNA opening in transcription using quenchable Forster resonance energy transfer.
Many biological processes, such as gene transcription and replication, involve opening and closing of short regions of double-stranded DNA (dsDNA). Few techniques, however, can study these processes in real time or at the single-molecule level. Here, we present a Förster resonance energy transfer (...
Hauptverfasser: | Cordes, T, Santoso, Y, Tomescu, A, Gryte, K, Hwang, L, Camará, B, Wigneshweraraj, S, Kapanidis, A |
---|---|
Format: | Journal article |
Sprache: | English |
Veröffentlicht: |
2010
|
Ähnliche Einträge
Ähnliche Einträge
-
Synthesis of quenchable amorphous diamond
von: Zhidan Zeng, et al.
Veröffentlicht: (2017-08-01) -
The transcription bubble of the RNA polymerase-promoter open complex exhibits conformational heterogeneity and millisecond-scale dynamics: Implications for transcription start-site selection
von: Robb, N, et al.
Veröffentlicht: (2013) -
The transcription bubble of the RNA polymerase-promoter open complex exhibits conformational heterogeneity and millisecond-scale dynamics: implications for transcription start-site selection.
von: Robb, N, et al.
Veröffentlicht: (2013) -
Role of Förster Resonance Energy Transfer in Graphene-Based Nanomaterials for Sensing
von: G. Prabakaran, et al.
Veröffentlicht: (2022-07-01) -
An engineered palette of metal ion quenchable fluorescent proteins.
von: Xiaozhen Yu, et al.
Veröffentlicht: (2014-01-01)