Program in Cancer and Stem Cell Biology, Duke-NUS Medical School, Singapore, Singapore.
Program in Cancer and Stem Cell Biology, Duke-NUS Medical School, Singapore, Singapore; Department of Pediatrics, Duke University School of Medicine, Durham, North Carolina, USA.
J Biol Chem. 2024 Jun;300(6):107391. doi: 10.1016/j.jbc.2024.107391. Epub 2024 May 20.
The duration of the transcription-repression cycles that give rise to mammalian circadian rhythms is largely determined by the stability of the PERIOD (PER) protein, the rate-limiting components of the molecular clock. The degradation of PERs is tightly regulated by multisite phosphorylation by casein kinase 1 (CK1δ/ε). In this phosphoswitch, phosphorylation of a PER2 degron [degron 2 (D2)] causes degradation, while phosphorylation of the PER2 familial advanced sleep phase (FASP) domain blocks CK1 activity on the degron, stabilizing PER2. However, this model and many other studies of PER2 degradation do not include the second degron of PER2 that is conserved in PER1, termed degron 1 (D1). We examined how these two degrons contribute to PER2 stability, affect the balance of the phosphoswitch, and how they are differentiated by CK1. Using PER2-luciferase fusions and real-time luminometry, we investigated the contribution of both D2 and of CK1-PER2 binding. We find that D1, like D2, is a substrate of CK1 but that D1 plays only a 'backup' role in PER2 degradation. Notably, CK1 bound to a PER1:PER2 dimer protein can phosphorylate PER1 D1 in trans. This scaffolded phosphorylation provides additional levels of control to PER stability and circadian rhythms.
导致哺乳动物昼夜节律的转录抑制循环的持续时间在很大程度上取决于 PERIOD(PER)蛋白的稳定性,PER 蛋白是分子钟的限速成分。PER 的降解受酪蛋白激酶 1(CK1δ/ε)的多位点磷酸化的严格调控。在这个磷酸开关中,PER2 降解结构域 [降解结构域 2(D2)] 的磷酸化导致降解,而 PER2 家族性提前睡眠阶段(FASP)结构域的磷酸化阻止 CK1 在降解结构域上的活性,从而稳定 PER2。然而,这个模型和 PER2 降解的许多其他研究并不包括 PER1 中保守的第二个降解结构域,称为降解结构域 1(D1)。我们研究了这两个降解结构域如何有助于 PER2 的稳定性,影响磷酸开关的平衡,以及 CK1 如何对它们进行区分。我们使用 PER2-荧光素酶融合蛋白和实时发光计研究了 D2 和 CK1-PER2 结合的贡献。我们发现 D1 像 D2 一样是 CK1 的底物,但 D1 在 PER2 降解中仅起“备用”作用。值得注意的是,与 PER1:PER2 二聚体蛋白结合的 CK1 可以在转位时磷酸化 PER1 D1。这种支架磷酸化提供了对 PER 稳定性和昼夜节律的额外控制水平。