DNA-templated assembly of the bacterial flagellar motor's cytoplasmic ring
<p>The bacterial flagellar motor is one of the most complex protein machines found in nature and how it self-assembles and produces force are very much open questions. In this thesis, I study the constituent parts of the motor in vitro, with the focus being primarily on FliG, a protein which h...
Autore principale: | Spratt, J |
---|---|
Altri autori: | Berry, R |
Natura: | Tesi |
Lingua: | English |
Pubblicazione: |
2018
|
Soggetti: |
Documenti analoghi
-
Templated self-assembly of the bacterial flagellar motor torque ring in vitro
di: Tusk, S
Pubblicazione: (2016) -
Application of magnetic torque on the bacterial flagellar motor
di: Lim, R
Pubblicazione: (2015) -
The relationship between flagellar motor dynamics and the proton motive force
di: Tipping, M, et al.
Pubblicazione: (2011) -
Distinct actin–tropomyosin cofilament populations drive the functional diversification of cytoskeletal myosin motor complexes
di: Theresia Reindl, et al.
Pubblicazione: (2022-07-01) -
Structures and mechanisms for synthetic DNA motors
di: Haley, NEC
Pubblicazione: (2017)