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在单个鉴定的海兔 R15 神经元中,与年龄相关的基因表达双向调节。

Age-associated bidirectional modulation of gene expression in single identified R15 neuron of Aplysia.

机构信息

Department of Neuroscience, Scripps Florida, 130 Scripps Way, Jupiter, FL 33458, USA.

出版信息

BMC Genomics. 2013 Dec 14;14:880. doi: 10.1186/1471-2164-14-880.

Abstract

BACKGROUND

Despite the advances in our understanding of aging-associated behavioral decline, relatively little is known about how aging affects neural circuits that regulate specific behaviors, particularly the expression of genes in specific neural circuits during aging. We have addressed this by exploring a peptidergic neuron R15, an identified neuron of the marine snail Aplysia californica. R15 is implicated in reproduction and osmoregulation and responds to neurotransmitters such as acetylcholine, serotonin and glutamate and is characterized by its action potential bursts.

RESULTS

We examined changes in gene expression in R15 neurons during aging by microarray analyses of RNAs from two different age groups, mature and old animals. Specifically we find that 1083 ESTs are differentially regulated in mature and old R15 neurons. Bioinformatics analyses of these genes have identified specific biological pathways that are up or downregulated in mature and old neurons. Comparison with human signaling networks using pathway analyses have identified three major networks [(1) cell signaling, cell morphology, and skeletal muscular system development (2) cell death and survival, cellular function maintenance and embryonic development and (3) neurological diseases, developmental and hereditary disorders] altered in old R15 neurons. Furthermore, qPCR analysis of single R15 neurons to quantify expression levels of candidate regulators involved in transcription (CREB1) and translation (S6K) showed that aging is associated with a decrease in expression of these regulators, and similar analysis in three other neurons (L7, L11 and R2) showed that gene expression change during aging could be bidirectional.

CONCLUSIONS

We find that aging is associated with bidirectional changes in gene expression. Detailed bioinformatics analyses and human homolog searches have identified specific biological processes and human-relevant signaling pathways in R15 that are affected during aging. Evaluation of gene expression changes in different neurons suggests specific transcriptomic signature of single neurons during aging.

摘要

背景

尽管我们对与衰老相关的行为衰退的认识有了进步,但对于衰老如何影响调节特定行为的神经回路,特别是在衰老过程中特定神经回路中基因的表达,我们知之甚少。我们通过探索一种肽能神经元 R15 来解决这个问题,R15 是加利福尼亚海兔 Aplysia californica 的一种已识别神经元。R15 参与生殖和渗透调节,对乙酰胆碱、血清素和谷氨酸等神经递质作出反应,其特征是动作电位爆发。

结果

我们通过对来自两个不同年龄组(成熟和老年动物)的 R15 神经元的 RNA 进行微阵列分析,研究了 R15 神经元在衰老过程中的基因表达变化。具体来说,我们发现 1083 个 EST 在成熟和老年 R15 神经元中存在差异调节。对这些基因的生物信息学分析已经确定了在成熟和老年神经元中上调或下调的特定生物学途径。使用途径分析将这些基因与人类信号网络进行比较,已经确定了三个在老年 R15 神经元中改变的主要网络[(1)细胞信号、细胞形态和骨骼肌肉系统发育(2)细胞死亡和存活、细胞功能维持和胚胎发育(3)神经疾病、发育和遗传障碍]。此外,对单个 R15 神经元进行 qPCR 分析以量化参与转录(CREB1)和翻译(S6K)的候选调节剂的表达水平表明,衰老与这些调节剂表达水平的降低有关,而对另外三个神经元(L7、L11 和 R2)的类似分析表明,衰老过程中的基因表达变化可能是双向的。

结论

我们发现衰老与基因表达的双向变化有关。详细的生物信息学分析和人类同源搜索已经确定了 R15 中受衰老影响的特定生物学过程和人类相关信号通路。对不同神经元中基因表达变化的评估表明,衰老过程中单个神经元存在特定的转录组特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc1b/3909179/28e0292dfaff/1471-2164-14-880-1.jpg

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