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海马体转录组图谱:亚区对衰老和认知障碍的易损性

Hippocampal Transcriptomic Profiles: Subfield Vulnerability to Age and Cognitive Impairment.

作者信息

Ianov Lara, De Both Matt, Chawla Monica K, Rani Asha, Kennedy Andrew J, Piras Ignazio, Day Jeremy J, Siniard Ashley, Kumar Ashok, Sweatt J David, Barnes Carol A, Huentelman Matthew J, Foster Thomas C

机构信息

Departments of Neuroscience and Genetics and Genomics Program, Evelyn F. and William L. McKnight Brain Institute, University of Florida, Gainesville, FL, United States.

Civitan International Research Center, University of Alabama at Birmingham, Birmingham, AL, United States.

出版信息

Front Aging Neurosci. 2017 Dec 8;9:383. doi: 10.3389/fnagi.2017.00383. eCollection 2017.

Abstract

The current study employed next-generation RNA sequencing to examine gene expression differences related to brain aging, cognitive decline, and hippocampal subfields. Young and aged rats were trained on a spatial episodic memory task. Hippocampal regions CA1, CA3, and the dentate gyrus were isolated. Poly-A mRNA was examined using two different sequencing platforms, Illumina, and Ion Proton. The Illumina platform was used to generate seed lists of genes that were statistically differentially expressed across regions, ages, or in association with cognitive function. The gene lists were then retested using the data from the Ion Proton platform. The results indicate hippocampal subfield differences in gene expression and point to regional differences in vulnerability to aging. Aging was associated with increased expression of immune response-related genes, particularly in the dentate gyrus. For the memory task, impaired performance of aged animals was linked to the regulation of Ca and synaptic function in region CA1. Finally, we provide a transcriptomic characterization of the three subfields regardless of age or cognitive status, highlighting and confirming a correspondence between cytoarchitectural boundaries and molecular profiling.

摘要

当前的研究采用下一代RNA测序技术来检测与大脑衰老、认知衰退及海马亚区相关的基因表达差异。对年轻和老年大鼠进行空间情景记忆任务训练。分离出海马区CA1、CA3和齿状回。使用Illumina和Ion Proton这两种不同的测序平台检测聚腺苷酸mRNA。Illumina平台用于生成在不同区域、年龄或与认知功能相关的统计学上差异表达的基因种子列表。然后使用Ion Proton平台的数据对这些基因列表进行重新检测。结果表明海马亚区存在基因表达差异,并指出衰老易感性的区域差异。衰老与免疫反应相关基因的表达增加有关,尤其是在齿状回。对于记忆任务,老年动物的表现受损与CA1区钙调节和突触功能有关。最后,我们提供了三个亚区的转录组特征,无论年龄或认知状态如何,突出并证实了细胞结构边界与分子图谱之间的对应关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e81b/5727020/ffc5ba9e00ce/fnagi-09-00383-g0001.jpg

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