Zhang Ning, Guan Wenyan, Cui Shouqi, Ai Nana
Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266101, China.
Shandong Energy Institute, Qingdao, 266101, China.
Commun Chem. 2023 Jun 8;6(1):117. doi: 10.1038/s42004-023-00909-2.
Metamorphic proteins such as circadian clock protein KaiB and human chemokine XCL1 play vital roles in regulating biological processes, including gene expression, circadian clock and innate immune responses, and perform distinct functions in living cell by switching different structures in response to cellular environment stimuli. However, it is unclear how complex and crowded intracellular environments affect conformational rearrangement of metamorphic proteins. Here, the kinetics and thermodynamics of two well-characterized metamorphic proteins, circadian clock protein KaiB and human chemokine XCL1, were quantified in physiologically relevant environments by using NMR spectroscopy, indicating that crowded agents shift equilibrium towards the inactive form (ground-state KaiB and Ltn10-like state XCL1) without disturbing the corresponding structures, and crowded agents have predominantly impact on the exchange rate of XCL1 that switches folds on timescales of seconds, but have slightly impact on the exchange rate of KaiB that switches folds on timescales of hours. Our data shed light on how metamorphic proteins can respond immediately to the changed crowded intracellular conditions that induced by environmental cues and then execute different functions in living cell, and it also enhances our understanding of how environments enrich the sequence-structure-function paradigm.
诸如昼夜节律钟蛋白KaiB和人类趋化因子XCL1等变构蛋白在调节生物过程中发挥着至关重要的作用,这些生物过程包括基因表达、昼夜节律钟和先天免疫反应,并且通过响应细胞环境刺激切换不同结构在活细胞中执行不同功能。然而,尚不清楚复杂且拥挤的细胞内环境如何影响变构蛋白的构象重排。在此,通过使用核磁共振光谱法在生理相关环境中对两种特征明确的变构蛋白——昼夜节律钟蛋白KaiB和人类趋化因子XCL1的动力学和热力学进行了量化,结果表明拥挤剂使平衡向无活性形式(基态KaiB和Ltn10样状态XCL1)移动,而不会干扰相应结构,并且拥挤剂对在秒级时间尺度上切换折叠的XCL1的交换速率有主要影响,但对在小时级时间尺度上切换折叠的KaiB的交换速率影响较小。我们的数据揭示了变构蛋白如何能够对由环境线索诱导的细胞内拥挤条件变化立即做出反应,然后在活细胞中执行不同功能,并且这也增强了我们对环境如何丰富序列 - 结构 - 功能范式的理解。