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昼夜节律酶夜蛋白紊乱的氨基末端通过改变蛋白质动力学来调节其NADP(H)磷酸酶活性。

The Disordered Amino Terminus of the Circadian Enzyme Nocturnin Modulates Its NADP(H) Phosphatase Activity by Changing Protein Dynamics.

作者信息

Wickramaratne Anushka C, Li Li, Hopkins Jesse B, Joachimiak Lukasz A, Green Carla B

机构信息

Department of Neuroscience, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9111, United States.

Center for Alzheimer's and Neurodegenerative Diseases, University of Texas Southwestern Medical Center, Dallas 75390-9111, Texas, United States.

出版信息

Biochemistry. 2022 May 10. doi: 10.1021/acs.biochem.2c00072.

Abstract

Endogenous circadian clocks control the rhythmicity of a broad range of behavioral and physiological processes, and this is entrained by the daily fluctuations in light and dark. Nocturnin () is a rhythmically expressed gene regulated by the circadian clock that belongs to the CCR4 family of endonuclease-exonuclease-phosphatase (EEP) enzymes, and the NOCT protein exhibits phosphatase activity, catalyzing the removal of the 2'-phosphate from NADP(H). In addition to its daily nighttime peak of expression, it is also induced by acute stimuli. Loss of Nocturnin (Noct) in mice results in resistance to high-fat diet-induced obesity, and loss of Noct in HEK293T cells confers a protective effect to oxidative stress. Modeling of the full-length Nocturnin protein reveals a partially structured amino terminus that is disparate from its CCR4 family members. The high sequence conservation of a leucine zipper-like (LZ-like) motif, the only structural element in the amino terminus, highlights the potential importance of this domain in modulating phosphatase activity. biochemical and biophysical techniques demonstrate that the LZ-like domain within the flexible N-terminus is necessary for preserving the active site cleft in an optimal conformation to promote the efficient turnover of the substrate. This modulation occurs and is pivotal in maintaining the stability and conformational integrity of the enzyme. These new findings suggest an additional layer of modulating the activity of Nocturnin in addition to its rhythmicity to provide fine-tuned control over cellular levels of NADPH.

摘要

内源性生物钟控制着广泛的行为和生理过程的节律性,而这种节律性会受到昼夜明暗变化的影响。夜蛋白(Nocturnin,Noct)是一种受生物钟调节的节律性表达基因,属于核酸内切酶-核酸外切酶-磷酸酶(EEP)家族的CCR4酶,NOCT蛋白具有磷酸酶活性,可催化从NADP(H)上去除2'-磷酸。除了每日夜间表达高峰外,它还可由急性刺激诱导产生。小鼠体内夜蛋白(Noct)缺失会导致对高脂饮食诱导的肥胖具有抗性,而HEK293T细胞中Noct缺失赋予对氧化应激的保护作用。全长夜蛋白的建模显示,其部分结构化的氨基末端与其CCR4家族成员不同。亮氨酸拉链样(LZ样)基序是氨基末端唯一的结构元件,其高度的序列保守性突出了该结构域在调节磷酸酶活性方面的潜在重要性。生化和生物物理技术表明,柔性N末端内的LZ样结构域对于将活性位点裂隙保持在最佳构象以促进底物的有效周转是必要的。这种调节发生并且对于维持酶的稳定性和构象完整性至关重要。这些新发现表明,除了其节律性之外,还存在另一层调节夜蛋白活性的机制,以对细胞内NADPH水平进行微调控制。

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