Militi Stefania, Maywood Elizabeth S, Sandate Colby R, Chesham Johanna E, Barnard Alun R, Parsons Michael J, Vibert Jennifer L, Joynson Greg M, Partch Carrie L, Hastings Michael H, Nolan Patrick M
Medical Research Council Harwell, Harwell Science and Innovation Campus, Oxfordshire OX11 0RD, United Kingdom;
Division of Neurobiology, Medical Research Council Laboratory of Molecular Biology, Cambridge Biomedical Campus, Cambridge CB2 0QH, United Kingdom;
Proc Natl Acad Sci U S A. 2016 Mar 8;113(10):2756-61. doi: 10.1073/pnas.1517549113. Epub 2016 Feb 22.
The suprachiasmatic nucleus (SCN) defines 24 h of time via a transcriptional/posttranslational feedback loop in which transactivation of Per (period) and Cry (cryptochrome) genes by BMAL1-CLOCK complexes is suppressed by PER-CRY complexes. The molecular/structural basis of how circadian protein complexes function is poorly understood. We describe a novel N-ethyl-N-nitrosourea (ENU)-induced mutation, early doors (Edo), in the PER-ARNT-SIM (PAS) domain dimerization region of period 2 (PER2) (I324N) that accelerates the circadian clock of Per2(Edo/Edo) mice by 1.5 h. Structural and biophysical analyses revealed that Edo alters the packing of the highly conserved interdomain linker of the PER2 PAS core such that, although PER2(Edo) complexes with clock proteins, its vulnerability to degradation mediated by casein kinase 1ε (CSNK1E) is increased. The functional relevance of this mutation is revealed by the ultrashort (<19 h) but robust circadian rhythms in Per2(Edo/Edo); Csnk1e(Tau/Tau) mice and the SCN. These periods are unprecedented in mice. Thus, Per2(Edo) reveals a direct causal link between the molecular structure of the PER2 PAS core and the pace of SCN circadian timekeeping.
视交叉上核(SCN)通过转录/翻译后反馈环来定义24小时的时间,在这个反馈环中,PER(周期)和Cry(隐色素)基因被BMAL1 - CLOCK复合物反式激活,而PER - CRY复合物会抑制这种激活。目前对于昼夜节律蛋白复合物如何发挥功能的分子/结构基础了解甚少。我们描述了一种新的由N - 乙基 - N - 亚硝基脲(ENU)诱导的突变,即早期门控(Edo),它发生在周期蛋白2(PER2)的PER - ARNT - SIM(PAS)结构域二聚化区域(I324N),使Per2(Edo/Edo)小鼠的昼夜节律时钟加快了1.5小时。结构和生物物理分析表明,Edo改变了PER2 PAS核心高度保守的结构域间连接区的堆积方式,这样一来,尽管PER2(Edo)能与时钟蛋白形成复合物,但其对酪蛋白激酶1ε(CSNK1E)介导的降解的敏感性增加。这种突变的功能相关性在Per2(Edo/Edo);Csnk1e(Tau/Tau)小鼠和SCN中表现为超短(<19小时)但稳定的昼夜节律。这些周期在小鼠中是前所未有的。因此,Per2(Edo)揭示了PER2 PAS核心的分子结构与SCN昼夜计时节奏之间的直接因果联系。