著者
Damien Simon Atsushi Mukaiyama Yoshihiko Furuike Shuji Akiyama
出版者
The Biophysical Society of Japan
雑誌
Biophysics and Physicobiology (ISSN:21894779)
巻号頁・発行日
vol.19, pp.e190008, 2022 (Released:2022-04-14)
参考文献数
49
被引用文献数
1 5

KaiC is the central pacemaker of the circadian clock system in cyanobacteria and forms the core in the hetero-multimeric complexes, such as KaiB–KaiC and KaiA–KaiB–KaiC. Although the formation process and structure of the binary and ternary complexes have been studied extensively, their disassembly dynamics have remained elusive. In this study, we constructed an experimental system to directly measure the autonomous disassembly of the KaiB–KaiC complex under the condition where the dissociated KaiB cannot reassociate with KaiC. At 30°C, the dephosphorylated KaiB–KaiC complex disassembled with an apparent rate of 2.1±0.3 d–1, which was approximately twice the circadian frequency. Our present analysis using a series of KaiC mutants revealed that the apparent disassembly rate correlates with the frequency of the KaiC phosphorylation cycle in the presence of KaiA and KaiB and is robustly temperature-compensated with a Q10 value of 1.05±0.20. The autonomous cancellation of the interactions stabilizing the KaiB–KaiC interface is one of the important phenomena that provide a link between the molecular-scale and system-scale properties.

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時計タンパク質複合体を形成するKaiB-KaiCの解離の解析 加水分解されないATPのアナログ添加によって再会合を防ぐ系を確立し、解離速度定数が約2日とリン酸化制御周期より長いこと、周期が長い変異体では解離も遅くなること、解離速度に温度補償性があるなどを示した #BNTNJC https://t.co/59kJrZ3V71

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