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The effect of cysteine oxidation on DJ-1 cytoprotective function in human alveolar type II cells

机译:半胱氨酸氧化对人肺泡II型细胞DJ-1细胞保护功能的影响

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摘要

DJ-1 is a multifunctional protein with cytoprotective functions. It is localized in the cytoplasm, nucleus, and mitochondria. The conserved cysteine residue at position 106 (Cys106) within DJ-1 serves as a sensor of redox state and can be oxidized to both the sulfinate (-SO2-) and sulfonate (-SO3-) forms. DJ-1 with Cys106-SO2- has cytoprotective activity but high levels of reactive oxygen species can induce its overoxidation to Cys106-SO3-. We found increased oxidative stress in alveolar type II (ATII) cells isolated from emphysema patients as determined by 4-HNE expression. DJ-1 with Cys106-SO3- was detected in these cells by mass spectrometry analysis. Moreover, ubiquitination of Cys106-SO3- DJ-1 was identified, which suggests that this oxidized isoform is targeted for proteasomal destruction. Furthermore, we performed controlled oxidation using H2O2 in A549 cells with DJ-1 knockout generated using CRISPR-Cas9 strategy. Lack of DJ-1 sensitized cells to apoptosis induced by H2O2 as detected using Annexin V and propidium iodide by flow cytometry analysis. This treatment also decreased both mitochondrial DNA amount and mitochondrial ND1 (NADH dehydrogenase 1, subunit 1) gene expression, as well as increased mitochondrial DNA damage. Consistent with the decreased cytoprotective function of overoxidized DJ-1, recombinant Cys106-SO3- DJ-1 exhibited a loss of its thermal unfolding transition, mild diminution of secondary structure in CD spectroscopy, and an increase in picosecond-nanosecond timescale dynamics as determined using NMR. Altogether, our data indicate that very high oxidative stress in ATII cells in emphysema patients induces DJ-1 overoxidation to the Cys106-SO3- form, leading to increased protein flexibility and loss of its cytoprotective function, which may contribute to this disease pathogenesis.
机译:DJ-1是一种具有细胞保护功能的多官能蛋白质。它局部化在细胞质,细胞核和线粒体中。 DJ-1内的位置106(Cys106)的保守的半胱氨酸残基用作氧化还原状态的传感器,并且可以氧化成硫酸盐(-SO2-)和磺酸盐(-SO 3-)形式。 DJ-1具有Cys106-SO2-具有细胞保护活性,但高水平的反应性氧物质可以诱导其对Cys106-SO3-的过氧化。我们发现,由4-HNE表达测定的肺泡患者分离的肺泡型II(ATII)细胞中的氧化应激增加。通过质谱分析在这些细胞中检测到Cys106-So3的DJ-1。此外,鉴定了Cys106-SO3-DJ-1的泛素,这表明该氧化同种型靶向蛋白酶体破坏。此外,我们在A549细胞中使用H 2 O 2进行控制的氧化,使用CRISPR-CAS9策略产生DJ-1敲除。通过流式细胞术分析使用膜蛋白V和碘化丙啶检测,缺乏DJ-1敏化细胞对由H 2 O 2引起的细胞凋亡。该处理还降低了线粒体DNA量和线粒体ND1(NADH脱氢酶1,亚基1)基因表达,以及增加的线粒体DNA损伤。与过氧化DJ-1的细胞或细胞选择功能的降低,重组Cys106-SO 3-DJ-1表现出其热展开过渡的丧失,在CD光谱中轻微减少二次结构,以及使用的PICOSECOND-NANOSECOND时间尺度动态的增加NMR。完全,我们的数据表明,肺气肿患者ATII细胞中的非常高的氧化应激诱导CYS106-SO3-形式的DJ-1过氧化,从而增加蛋白质柔韧性和其细胞或细胞或细胞或细胞或细胞的丧失。这可能有助于这种疾病发病机制。

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