Development of compounds for targeted degradation of mammalian cryptochrome proteins.

Jack Munns, Andrew D Beale, Iacovos N Michaelides, Sew Y Peak-Chew, Andrei Mihut, Christine T Major-Styles, Aiwei Zeng, R Ian Storer, Rachel S Edgar, Kevin Moreau, John S O'Neill
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Abstract

The mammalian cryptochrome proteins (CRY1 and CRY2) are transcriptional repressors most notable for their role in circadian transcriptional feedback. Not all circadian rhythms depend on CRY proteins, however, and the CRY proteins are promiscuous interactors that also regulate many other processes. In cells with chronic CRY deficiency, protein homeostasis is highly perturbed, with a basal increase in cellular stress and activation of key inflammatory signalling pathways. Here, we developed tools to delineate the specific effects of CRY reduction, rather than chronic deficiency, to better understand the direct functions of CRY proteins. Performing a bioluminescence screen and immunoblot validation, we identified compounds that resulted in CRY reduction. Using these compounds, we found that circadian PERIOD2 (PER2) protein rhythms persisted under CRY-depleted conditions. By quantitative mass spectrometry, we found that CRY-depleted cells partially phenocopied the proteomic dysregulation of CRY-deficient cells, but showed minimal circadian phenotypes. We did, however, also observe substantial off-target effects of these compounds on luciferase activity and could not ascertain a specific mechanism of action. This work therefore highlights both the utility and the challenges of targeted protein degradation and bioluminescence reporter approaches in disentangling the contribution of CRY proteins to circadian rhythmicity, homeostasis and innate immune regulation.This article is part of the Theo Murphy meeting issue 'Circadian rhythms in infection and immunity'.

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靶向降解哺乳动物隐色素蛋白化合物的研究。
哺乳动物隐色素蛋白(CRY1和CRY2)是转录抑制因子,在昼夜转录反馈中发挥着重要作用。然而,并不是所有的昼夜节律都依赖于CRY蛋白,而且CRY蛋白是混杂的相互作用物,也调节许多其他过程。在慢性CRY缺乏的细胞中,蛋白质稳态受到高度干扰,细胞应激基础增加,关键炎症信号通路激活。在这里,我们开发了工具来描述哭泣减少的具体影响,而不是慢性缺乏,以更好地了解哭泣蛋白的直接功能。通过生物发光筛选和免疫印迹验证,我们确定了导致CRY降低的化合物。使用这些化合物,我们发现昼夜周期2 (PER2)蛋白节律在cry耗尽的条件下持续存在。通过定量质谱分析,我们发现cry -缺失细胞部分地表型化了cry -缺失细胞的蛋白质组失调,但表现出最小的昼夜节律表型。然而,我们确实也观察到这些化合物对荧光素酶活性的大量脱靶效应,并且无法确定具体的作用机制。因此,这项工作强调了靶向蛋白降解和生物发光报告方法在解开CRY蛋白对昼夜节律、体内平衡和先天免疫调节的贡献方面的效用和挑战。这篇文章是西奥·墨菲会议议题“感染和免疫的昼夜节律”的一部分。
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CiteScore
11.80
自引率
1.60%
发文量
365
审稿时长
3 months
期刊介绍: The journal publishes topics across the life sciences. As long as the core subject lies within the biological sciences, some issues may also include content crossing into other areas such as the physical sciences, social sciences, biophysics, policy, economics etc. Issues generally sit within four broad areas (although many issues sit across these areas): Organismal, environmental and evolutionary biology Neuroscience and cognition Cellular, molecular and developmental biology Health and disease.
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