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作为大脑胰岛素敏感性调节剂的 Inceptor。

Inceptor as a regulator of brain insulin sensitivity.

机构信息

Department of Neuroscience, University of Virginia, Charlottesville, USA.

Long-Term Health Education and Training Program, US Army Medical Center of Excellence, San Antonio, USA.

出版信息

Sci Rep. 2023 Jul 18;13(1):11582. doi: 10.1038/s41598-023-36248-4.

Abstract

While historically viewed as an insulin insensitive organ, it is now accepted that insulin has a role in brain physiology. Changes in brain insulin and IGF1 signaling have been associated with neurological diseases, however the molecular factors regulating brain insulin sensitivity remain uncertain. In this study, we proposed that a recently described protein, termed Inceptor, may play a role in brain insulin and IGF1 resistance. We studied Inceptor in healthy and diseased nervous tissue to understand the distribution of the protein and examine how it may change in states of insulin resistance. We found that Inceptor is in fact present in cerebellum, hippocampus, hypothalamus, and cortex of the brain in neurons, with higher levels in cortex of female compared to male mice. We also confirmed that Inceptor colocalized with IR and IGF1R in brain. We saw little difference in insulin receptor signaling following Inceptor knockdown in neuron cultures, or in Inceptor levels with high-fat diet in mouse or Alzheimer's disease in mouse or human tissue. These results all provide significant advancements to our understanding of Inceptor in the brain. PROTOCOL REGISTRATION: The Stage 1 registered report manuscript was accepted-in-principle on 9 August 2022. This manuscript was registered through Open Science Forum (OSF) on 24 August 2022 and is available here: https://osf.io/9q8sw .

摘要

虽然胰岛素在历史上被认为是一种胰岛素不敏感的器官,但现在人们已经接受了胰岛素在大脑生理学中的作用。大脑胰岛素和 IGF1 信号的变化与神经疾病有关,但是调节大脑胰岛素敏感性的分子因素仍不确定。在这项研究中,我们提出了一种最近描述的蛋白质,称为 Inceptor,可能在大脑胰岛素和 IGF1 抵抗中发挥作用。我们研究了健康和患病的神经组织中的 Inceptor,以了解该蛋白质的分布,并研究其在胰岛素抵抗状态下可能如何变化。我们发现 Inceptor 实际上存在于小脑、海马体、下丘脑和大脑皮层的神经元中,雌性小鼠的皮层中含量高于雄性小鼠。我们还证实 Inceptor 与脑内的 IR 和 IGF1R 共定位。我们发现在神经元培养物中敲低 Inceptor 后,胰岛素受体信号几乎没有差异,或者在高脂肪饮食、阿尔茨海默病小鼠或人类组织中,Inceptor 水平也没有差异。这些结果都为我们在大脑中对 Inceptor 的理解提供了重要进展。方案注册:第一阶段注册报告手稿于 2022 年 8 月 9 日原则上被接受。该手稿于 2022 年 8 月 24 日在开放科学论坛(OSF)上注册,并可在此处找到:https://osf.io/9q8sw。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b54a/10354159/652c1d3d4d30/41598_2023_36248_Fig1_HTML.jpg

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