Cooperative Conformational Transitions Keep RecA Filament Active During ATPase Cycle

  • Kim, Sung Hyun
  • Ragunathan, Kaushik
  • Park, Jeehae
  • Joo, Chirlmin
  • Kim, Doseok
  • 외 1명
Citations

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26
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26

초록

The active, stretched conformation of the RecA filament bound to single-stranded DNA is required for homologous recombination. During this process, the RecA filament mediates the homology search and base pair exchange with a complementary sequence. Subsequently, the RecA filament dissociates from DNA upon reaction completion. ATP binding and hydrolysis is critical throughout these processes. Little is known about the timescale, order of conversion between different cofactor bound forms during ATP hydrolysis, and the associated changes in filament conformation. We used single-molecule fluorescence techniques to investigate how ATP hydrolysis is coupled with filament dynamics. For the first time, we observed real-time cooperative structural changes within the RecA filament. This cooperativity between neighboring monomers provides a time window for nucleotide cofactor exchange, which keeps the filament in the active conformation amidst continuous cycles of ATP hydrolysis.

키워드

DNA-STRAND EXCHANGEESCHERICHIA-COLINUCLEOPROTEIN FILAMENTSPROTEINHYDROLYSISDYNAMICSMECHANISMRECOMBINATIONREPLICATIONMOLECULES
제목
Cooperative Conformational Transitions Keep RecA Filament Active During ATPase Cycle
저자
Kim, Sung HyunRagunathan, KaushikPark, JeehaeJoo, ChirlminKim, DoseokHa, Taekjip
DOI
10.1021/ja506363y
발행일
2014-10-22
유형
Article
저널명
Journal of the American Chemical Society
136
42
페이지
14796 ~ 14800