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空间辐射诱导海马泛素蛋白系统改变。

Space Radiation-Induced Alterations in the Hippocampal Ubiquitin-Proteome System.

机构信息

Department of Radiation Oncology, Eastern Virginia Medical School, 700 W. Olney Rd., Lewis Hall, Norfolk, VA 23507, USA.

Department of Microbiology and Molecular Cell Biology; Eastern Virginia Medical School, Norfolk, VA 23507, USA.

出版信息

Int J Mol Sci. 2021 Jul 19;22(14):7713. doi: 10.3390/ijms22147713.

Abstract

Exposure of rodents to <20 cGy Space Radiation (SR) impairs performance in several hippocampus-dependent cognitive tasks, including spatial memory. However, there is considerable inter-individual susceptibility to develop SR-induced spatial memory impairment. In this study, a robust label-free mass spectrometry (MS)-based unbiased proteomic profiling approach was used to characterize the composition of the hippocampal proteome in adult male Wistar rats exposed to 15 cGy of 1 GeV/n Ti and their sham counterparts. Unique protein signatures were identified in the hippocampal proteome of: (1) sham rats, (2) Ti-exposed rats, (3) Ti-exposed rats that had sham-like spatial memory performance, and (4) Ti-exposed rats that impaired spatial memory performance. Approximately 14% (159) of the proteins detected in hippocampal proteome of sham rats were not detected in the Ti-exposed rats. We explored the possibility that the loss of the Sham-only proteins may arise as a result of SR-induced changes in protein homeostasis. SR-exposure was associated with a switch towards increased pro-ubiquitination proteins from that seen in Sham. These data suggest that the role of the ubiquitin-proteome system as a determinant of SR-induced neurocognitive deficits needs to be more thoroughly investigated.

摘要

将啮齿动物暴露于<20 cGy 的空间辐射(SR)中会损害几种海马依赖的认知任务的表现,包括空间记忆。然而,存在相当大的个体易感性,会导致空间记忆受损。在这项研究中,使用强大的无标记基于质谱(MS)的无偏蛋白质组学分析方法来描述成年雄性 Wistar 大鼠暴露于 15 cGy 1 GeV/n Ti 及其假照射对照后海马蛋白质组的组成。在海马蛋白质组中鉴定出了独特的蛋白质特征:(1)假照射对照大鼠,(2)Ti 照射大鼠,(3)具有类似假照射对照大鼠空间记忆表现的 Ti 照射大鼠,和(4)空间记忆表现受损的 Ti 照射大鼠。在假照射对照大鼠的海马蛋白质组中检测到的约 14%(159)的蛋白质在 Ti 照射大鼠中未检测到。我们探讨了这种仅在假照射对照大鼠中存在的蛋白质丢失可能是由于 SR 诱导的蛋白质平衡变化所致的可能性。SR 暴露与促泛素化蛋白的增加有关,这与假照射对照大鼠中的情况不同。这些数据表明,泛素蛋白质组系统作为 SR 诱导的神经认知缺陷决定因素的作用需要更深入的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d4d/8304141/c02d933ebd8e/ijms-22-07713-g001.jpg

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