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半乳糖凝集素的mRNA转录组学揭示了小鼠和人类大脑中的异质性组织。

mRNA Transcriptomics of Galectins Unveils Heterogeneous Organization in Mouse and Human Brain.

作者信息

John Sebastian, Mishra Rashmi

机构信息

Disease Biology Program, Department of Neurobiology and Genetics, Rajiv Gandhi Centre for Biotechnology Thiruvananthapuram, India.

出版信息

Front Mol Neurosci. 2016 Dec 16;9:139. doi: 10.3389/fnmol.2016.00139. eCollection 2016.

Abstract

Galectins, a family of non-classically secreted, β-galactoside binding proteins is involved in several brain disorders; however, no systematic knowledge on the normal neuroanatomical distribution and functions of galectins exits. Hence, the major purpose of this study was to understand spatial distribution and predict functions of galectins in brain and also compare the degree of conservation divergence between mouse and human species. The latter objective was required to determine the relevance and appropriateness of studying galectins in mouse brain which may ultimately enable us to extrapolate the findings to human brain physiology and pathologies. In order to fill this crucial gap in our understanding of brain galectins, we analyzed the and microarray data of adult mouse and human brain respectively, from the Allen Brain Atlas, to resolve each galectin-subtype's spatial distribution across brain distinct cytoarchitecture. Next, transcription factors (TFs) that may regulate galectins were identified using TRANSFAC software and the list obtained was further curated to sort TFs on their confirmed transcript expression in the adult brain. Galectin-TF cluster analysis, gene-ontology annotations and co-expression networks were then extrapolated to predict distinct functional relevance of each galectin in the neuronal processes. Data shows that galectins have highly heterogeneous expression within and across brain sub-structures and are predicted to be the crucial targets of brain enriched TFs. had maximal spatial distribution across mouse brain with inferred predominant roles in neurogenesis while was ubiquitously expressed in human. Limbic region associated with learning, memory and emotions and substantia nigra associated with motor movements showed strikingly high expression of and in human mouse brain. The overall expression profile of galectin-8 was most preserved across both these species, however, galectin-9 showed maximal preservation only in the cerebral cortex. It is for the first time that a comprehensive description of galectins' mRNA expression profile in brain is presented. Results suggests that spatial transcriptome changes in galectins may contribute to differential brain functions and evolution across species that highlights galectins as novel signatures of brain heterogeneity and functions, which if disturbed, can promote several brain disorders.

摘要

半乳糖凝集素是一类非经典分泌的β-半乳糖苷结合蛋白家族,与多种脑部疾病有关;然而,目前尚无关于半乳糖凝集素正常神经解剖分布和功能的系统知识。因此,本研究的主要目的是了解半乳糖凝集素在大脑中的空间分布并预测其功能,同时比较小鼠和人类之间的保守程度差异。后一目标是确定在小鼠脑中研究半乳糖凝集素的相关性和适用性,这最终可能使我们能够将研究结果外推至人类大脑生理学和病理学。为了填补我们对脑半乳糖凝集素理解上的这一关键空白,我们分别分析了来自艾伦脑图谱的成年小鼠和人类大脑的 和微阵列数据,以解析每种半乳糖凝集素亚型在大脑不同细胞结构中的空间分布。接下来,使用TRANSFAC软件鉴定可能调节半乳糖凝集素的转录因子(TFs),并对获得的列表进行进一步整理,以根据其在成人大脑中已确认的转录表达对TFs进行分类。然后进行半乳糖凝集素-TF聚类分析、基因本体注释和共表达网络分析,以预测每种半乳糖凝集素在神经元过程中的不同功能相关性。数据显示,半乳糖凝集素在脑亚结构内和跨脑亚结构中具有高度异质性表达,并被预测为脑富集TFs的关键靶点。 在小鼠脑中具有最大的空间分布,推测在神经发生中起主要作用,而 在人类中广泛表达。与学习、记忆和情绪相关的边缘区域以及与运动相关的黑质在人类和小鼠脑中均显示出 和 的显著高表达。半乳糖凝集素-8的整体表达谱在这两个物种中保存最为完好,然而,半乳糖凝集素-9仅在大脑皮层中显示出最大程度的保存。这是首次对半乳糖凝集素在大脑中的mRNA表达谱进行全面描述。结果表明,半乳糖凝集素的空间转录组变化可能导致不同物种间脑功能的差异和进化,这突出了半乳糖凝集素作为脑异质性和功能的新特征,如果受到干扰,可能会引发多种脑部疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/298f/5159438/f8c27c2e3831/fnmol-09-00139-g001.jpg

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