Nuclear translocation of STAT5 initiates iron overload in huntington's disease by up-regulating IRP1 expression.

IF 3.2 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Metabolic brain disease Pub Date : 2024-04-01 Epub Date: 2024-01-23 DOI:10.1007/s11011-024-01340-9
Li Niu, Yongze Zhou, Jie Wang, Wei Zeng
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Abstract

Mutant huntingtin (mHtt) proteins interact to form aggregates, disrupting cellular functions including transcriptional dysregulation and iron imbalance in patients with Huntington's disease (HD) and mouse disease models. Previous studies have indicated that mHtt may lead to abnormal iron homeostasis by upregulating the expression of iron response protein 1 (IRP1) in the striatum and cortex of N171-82Q HD transgenic mice, as well as in HEK293 cells expressing the N-terminal fragment of mHtt containing 160 CAG repeats. However, the mechanism underlying the upregulation of IRP1 remains unclear. We investigated the levels and phosphorylation status of signal transducer and activator of transcription 5 (STAT5) in the brains of N171-82Q HD transgenic mice using immunohistochemistry staining. We also assessed the nuclear localization of STAT5 protein through western blot and immunofluorescence, and measured the relative RNA expression levels of STAT5 and IRP1 using RT-PCR in both N171-82Q HD transgenic mice and HEK293 cells expressing the N-terminal fragment of huntingtin. Our findings demonstrate that the transcription factor STAT5 regulates the transcription of the IPR1 gene in HEK293 cells. Notably, both the brains of N171-82Q mice and 160Q HEK293 cells exhibited increased nuclear content of STAT5, despite unchanged total STAT5 expression. These results suggest that mHtt promotes the nuclear translocation of STAT5, leading to enhanced expression of IRP1. The nuclear translocation of STAT5 initiates abnormal iron homeostatic pathways, characterized by elevated IRP1 expression, increased levels of transferrin and transferrin receptor, and iron accumulation in the brains of HD mice. These findings provide valuable insights into potential therapeutic strategies targeting iron homeostasis in HD.

Abstract Image

STAT5 的核转位通过上调 IRP1 的表达引发亨廷顿氏病的铁超载。
在亨廷顿氏病(HD)患者和小鼠疾病模型中,突变亨廷汀(mHtt)蛋白相互作用形成聚集体,破坏细胞功能,包括转录失调和铁失衡。先前的研究表明,mHtt可通过上调N171-82Q HD转基因小鼠纹状体和皮层中铁反应蛋白1(IRP1)的表达,以及表达含有160个CAG重复序列的mHtt N端片段的HEK293细胞中铁反应蛋白1的表达,导致铁平衡异常。然而,IRP1上调的机制仍不清楚。我们使用免疫组化染色法研究了 N171-82Q HD 转基因小鼠大脑中信号转导和转录激活因子 5(STAT5)的水平和磷酸化状态。我们还通过 Western 印迹和免疫荧光评估了 STAT5 蛋白的核定位,并在 N171-82Q HD 转基因小鼠和表达亨廷蛋白 N 端片段的 HEK293 细胞中使用 RT-PCR 测定了 STAT5 和 IRP1 的相对 RNA 表达水平。我们的研究结果表明,转录因子 STAT5 可调控 HEK293 细胞中 IPR1 基因的转录。值得注意的是,尽管STAT5的总表达量不变,但N171-82Q小鼠和160Q HEK293细胞的大脑中STAT5的核含量都有所增加。这些结果表明,mHtt 促进了 STAT5 的核转位,导致 IRP1 的表达增强。STAT5 的核转位启动了异常的铁平衡途径,其特征是 IRP1 表达升高、转铁蛋白和转铁蛋白受体水平升高以及 HD 小鼠大脑中的铁积累。这些发现为针对 HD 铁稳态的潜在治疗策略提供了宝贵的见解。
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来源期刊
Metabolic brain disease
Metabolic brain disease 医学-内分泌学与代谢
CiteScore
5.90
自引率
5.60%
发文量
248
审稿时长
6-12 weeks
期刊介绍: Metabolic Brain Disease serves as a forum for the publication of outstanding basic and clinical papers on all metabolic brain disease, including both human and animal studies. The journal publishes papers on the fundamental pathogenesis of these disorders and on related experimental and clinical techniques and methodologies. Metabolic Brain Disease is directed to physicians, neuroscientists, internists, psychiatrists, neurologists, pathologists, and others involved in the research and treatment of a broad range of metabolic brain disorders.
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