Structural determinants of mitochondrial STAT3 targeting and function

Isabelle J. Marié , Tanaya Lahiri , Özlem Önder , Kojo S.J. Elenitoba-Johnson , David E. Levy
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Abstract

Signal transducer and activator of transcription (STAT) 3 has been found within mitochondria in addition to its canonical role of shuttling between cytoplasm and nucleus during cytokine signaling. Mitochondrial STAT3 has been implicated in modulation of cellular metabolism, largely through effects on the respiratory electron transport chain. However, the structural requirements underlying mitochondrial targeting and function have remained unclear. Here, we show that mitochondrial STAT3 partitions between mitochondrial compartments defined by differential detergent solubility, suggesting that mitochondrial STAT3 is membrane associated. The majority of STAT3 was found in an SDS soluble fraction copurifying with respiratory chain proteins, including numerous components of the complex I NADH dehydrogenase, while a minor component was found with proteins of the mitochondrial translation machinery. Mitochondrial targeting of STAT3 required the amino-terminal domain, and an internal linker domain motif also directed mitochondrial translocation. However, neither the phosphorylation of serine 727 nor the presence of mitochondrial DNA was required for the mitochondrial localization of STAT3. Two cysteine residues in the STAT3 SH2 domain, which have been previously suggested to be targets for protein palmitoylation, were also not required for mitochondrial translocation, but were required for its function as an enhancer of complex I activity. These structural determinants of STAT3 mitochondrial targeting and function provide potential therapeutic targets for disrupting the activity of mitochondrial STAT3 in diseases such as cancer.

线粒体 STAT3 靶向和功能的结构决定因素
信号转导和转录激活因子(STAT)3 除了在细胞因子信号传导过程中穿梭于细胞质和细胞核之间的典型作用外,还在线粒体中发现了它的踪迹。线粒体 STAT3 与细胞新陈代谢的调节有关,主要是通过对呼吸电子传递链的影响。然而,线粒体靶向和功能的结构要求仍不清楚。在这里,我们发现线粒体 STAT3 在不同去垢溶解度定义的线粒体区间分区,这表明线粒体 STAT3 与膜相关。大部分 STAT3 存在于与呼吸链蛋白(包括复合体 I NADH 脱氢酶的许多成分)共混的 SDS 可溶部分中,而少量 STAT3 存在于线粒体翻译机制蛋白中。STAT3 的线粒体靶向需要氨基末端结构域,而内部连接结构域图案也能引导线粒体转运。不过,STAT3 的线粒体定位既不需要丝氨酸 727 的磷酸化,也不需要线粒体 DNA 的存在。STAT3 SH2 结构域中的两个半胱氨酸残基以前曾被认为是蛋白质棕榈酰化的靶点,但它们也不是线粒体转位所必需的,而是其作为复合体 I 活性增强因子的功能所必需的。这些 STAT3 线粒体靶向和功能的结构决定因素为破坏线粒体 STAT3 在癌症等疾病中的活性提供了潜在的治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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