The reversible low-temperature instability of human DJ-1 oxidative states

IF 3.2 4区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biopolymers Pub Date : 2023-03-27 DOI:10.1002/bip.23534
Tessa Andrews, Javier Seravallic, Robert Powers
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Abstract

DJ-1 is a homodimeric protein that is centrally involved in various human diseases including Parkinson disease (PD). DJ-1 protects against oxidative damage and mitochondrial dysfunction through a homeostatic control of reactive oxygen species (ROS). DJ-1 pathology results from a loss of function, where ROS readily oxidizes a highly conserved and functionally essential cysteine (C106). The over-oxidation of DJ-1 C106 leads to a dynamically destabilized and biologically inactivated protein. An analysis of the structural stability of DJ-1 as a function of oxidative state and temperature may provide further insights into the role the protein plays in PD progression. NMR spectroscopy, circular dichroism, analytical ultracentrifugation sedimentation equilibrium, and molecular dynamics simulations were utilized to investigate the structure and dynamics of the reduced, oxidized (C106-SO2), and over-oxidized (C106-SO3) forms of DJ-1 for temperatures ranging from 5°C to 37°C. The three oxidative states of DJ-1 exhibited distinct temperature-dependent structural changes. A cold-induced aggregation occurred for the three DJ-1 oxidative states by 5°C, where the over-oxidized state aggregated at significantly higher temperatures than both the oxidized and reduced forms. Only the oxidized and over-oxidized forms of DJ-1 exhibited a mix state containing both folded and partially denatured protein that likely preserved secondary structure content. The relative amount of this denatured form of DJ-1 increased as the temperature was lowered, consistent with a cold-denaturation. Notably, the cold-induced aggregation and denaturation for the DJ-1 oxidative states were completely reversible. The dramatic changes in the structural stability of DJ-1 as a function of oxidative state and temperature are relevant to its role in PD and its functional response to oxidative stress.

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人类 DJ-1 氧化态的可逆低温不稳定性。
DJ-1 是一种同源二聚体蛋白,是包括帕金森病 (PD) 在内的多种人类疾病的核心参与因子。DJ-1 通过对活性氧(ROS)的平衡控制,防止氧化损伤和线粒体功能障碍。DJ-1 的病理变化是由功能丧失引起的,其中 ROS 很容易氧化一个高度保守且功能必需的半胱氨酸(C106)。DJ-1 C106 的过度氧化会导致蛋白质动态失稳和生物失活。通过分析 DJ-1 的结构稳定性与氧化状态和温度的关系,可以进一步了解该蛋白在帕金森病进展中所起的作用。研究人员利用核磁共振光谱、圆二色光谱、分析超速离心沉降平衡和分子动力学模拟研究了还原型、氧化型(C106-SO2 - )和过度氧化型(C106-SO3 - )DJ-1 在 5°C 至 37°C 温度范围内的结构和动力学。DJ-1 的三种氧化态均表现出不同的温度依赖性结构变化。5°C 时,DJ-1 的三种氧化态均出现了冷诱导聚集,其中过度氧化态的聚集温度明显高于氧化态和还原态。只有氧化态和过度氧化态的 DJ-1 表现出一种混合状态,其中既有折叠蛋白,也有部分变性蛋白,可能保留了二级结构内容。这种变性形式的 DJ-1 的相对数量随着温度的降低而增加,这与冷变性是一致的。值得注意的是,DJ-1 氧化态的冷诱导聚集和变性是完全可逆的。DJ-1的结构稳定性随氧化状态和温度而发生的巨大变化与它在帕金森病中的作用及其对氧化应激的功能反应有关。
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来源期刊
Biopolymers
Biopolymers 生物-生化与分子生物学
CiteScore
5.30
自引率
0.00%
发文量
48
审稿时长
3 months
期刊介绍: Founded in 1963, Biopolymers publishes strictly peer-reviewed papers examining naturally occurring and synthetic biological macromolecules. By including experimental and theoretical studies on the fundamental behaviour as well as applications of biopolymers, the journal serves the interdisciplinary biochemical, biophysical, biomaterials and biomedical research communities.
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