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自闭症患者与其未患病同胞的淋巴母细胞基因表达谱分析:神经元发育和类固醇生物合成途径的改变

Gene expression profiling of lymphoblasts from autistic and nonaffected sib pairs: altered pathways in neuronal development and steroid biosynthesis.

作者信息

Hu Valerie W, Nguyen AnhThu, Kim Kyung Soon, Steinberg Mara E, Sarachana Tewarit, Scully Michele A, Soldin Steven J, Luu Truong, Lee Norman H

机构信息

Department of Biochemistry and Molecular Biology, The George Washington University Medical Center, Washington, DC, USA.

出版信息

PLoS One. 2009 Jun 3;4(6):e5775. doi: 10.1371/journal.pone.0005775.

Abstract

Despite the identification of numerous autism susceptibility genes, the pathobiology of autism remains unknown. The present "case-control" study takes a global approach to understanding the molecular basis of autism spectrum disorders based upon large-scale gene expression profiling. DNA microarray analyses were conducted on lymphoblastoid cell lines from over 20 sib pairs in which one sibling had a diagnosis of autism and the other was not affected in order to identify biochemical and signaling pathways which are differentially regulated in cells from autistic and nonautistic siblings. Bioinformatics and gene ontological analyses of the data implicate genes which are involved in nervous system development, inflammation, and cytoskeletal organization, in addition to genes which may be relevant to gastrointestinal or other physiological symptoms often associated with autism. Moreover, the data further suggests that these processes may be modulated by cholesterol/steroid metabolism, especially at the level of androgenic hormones. Elevation of male hormones, in turn, has been suggested as a possible factor influencing susceptibility to autism, which affects approximately 4 times as many males as females. Preliminary metabolic profiling of steroid hormones in lymphoblastoid cell lines from several pairs of siblings reveals higher levels of testosterone in the autistic sibling, which is consistent with the increased expression of two genes involved in the steroidogenesis pathway. Global gene expression profiling of cultured cells from ASD probands thus serves as a window to underlying metabolic and signaling deficits that may be relevant to the pathobiology of autism.

摘要

尽管已经鉴定出众多自闭症易感基因,但自闭症的病理生物学仍然未知。目前这项“病例对照”研究采用整体方法,基于大规模基因表达谱来理解自闭症谱系障碍的分子基础。对来自20多对同胞的淋巴母细胞系进行了DNA微阵列分析,其中一对同胞中一个被诊断为自闭症,另一个未受影响,以便识别在自闭症和非自闭症同胞的细胞中差异调节的生化和信号通路。对数据进行的生物信息学和基因本体分析表明,除了可能与通常与自闭症相关的胃肠道或其他生理症状相关的基因外,还涉及参与神经系统发育、炎症和细胞骨架组织的基因。此外,数据进一步表明,这些过程可能受胆固醇/类固醇代谢调节,尤其是在雄激素水平。反过来,雄激素水平升高被认为是影响自闭症易感性的一个可能因素,自闭症患者中男性受影响的人数大约是女性的4倍。对几对同胞的淋巴母细胞系中类固醇激素的初步代谢谱分析显示,自闭症同胞中的睾酮水平较高,这与类固醇生成途径中两个基因的表达增加一致。因此,对自闭症谱系障碍先证者培养细胞进行的整体基因表达谱分析,为可能与自闭症病理生物学相关的潜在代谢和信号缺陷提供了一个窗口。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/281c/2685981/08f61fd45140/pone.0005775.g001.jpg

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