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鉴定参与人类脂肪生成和脂肪储存的新基因。

Identification of new genes involved in human adipogenesis and fat storage.

机构信息

Beiersdorf AG, Research & Development, Hamburg, Germany.

出版信息

PLoS One. 2012;7(2):e31193. doi: 10.1371/journal.pone.0031193. Epub 2012 Feb 27.

Abstract

Since the worldwide increase in obesity represents a growing challenge for health care systems, new approaches are needed to effectively treat obesity and its associated diseases. One prerequisite for advances in this field is the identification of genes involved in adipogenesis and/or lipid storage. To provide a systematic analysis of genes that regulate adipose tissue biology and to establish a target-oriented compound screening, we performed a high throughput siRNA screen with primary (pre)adipocytes, using a druggable siRNA library targeting 7,784 human genes. The primary screen showed that 459 genes affected adipogenesis and/or lipid accumulation after knock-down. Out of these hits, 333 could be validated in a secondary screen using independent siRNAs and 110 genes were further regulated on the gene expression level during adipogenesis. Assuming that these genes are involved in neutral lipid storage and/or adipocyte differentiation, we performed InCell-Western analysis for the most striking hits to distinguish between the two phenotypes. Beside well known regulators of adipogenesis and neutral lipid storage (i.e. PPARγ, RXR, Perilipin A) the screening revealed a large number of genes which have not been previously described in the context of fatty tissue biology such as axonemal dyneins. Five out of ten axonemal dyneins were identified in our screen and quantitative RT-PCR-analysis revealed that these genes are expressed in preadipocytes and/or maturing adipocytes. Finally, to show that the genes identified in our screen are per se druggable we performed a proof of principle experiment using an antagonist for HTR2B. The results showed a very similar phenotype compared to knock-down experiments proofing the "druggability". Thus, we identified new adipogenesis-associated genes and those involved in neutral lipid storage. Moreover, by using a druggable siRNA library the screen data provides a very attractive starting point to identify anti-obesity compounds targeting the adipose tissue.

摘要

由于全球肥胖人口的增加对医疗保健系统构成了日益严峻的挑战,因此需要新的方法来有效治疗肥胖及其相关疾病。该领域取得进展的一个前提是确定参与脂肪生成和/或脂质储存的基因。为了对调节脂肪组织生物学的基因进行系统分析,并建立以目标为导向的化合物筛选,我们使用针对 7784 个人类基因的可用药 siRNA 文库对原代(前)脂肪细胞进行了高通量 siRNA 筛选。初步筛选表明,459 个基因在敲低后影响脂肪生成和/或脂质积累。在这些命中中,333 个可以在使用独立 siRNA 的二次筛选中得到验证,110 个基因在脂肪生成过程中在基因表达水平上进一步受到调控。假设这些基因参与中性脂质储存和/或脂肪细胞分化,我们对最显著的命中进行了 InCell-Western 分析,以区分两种表型。除了脂肪生成和中性脂质储存的众所周知的调节剂(即 PPARγ、RXR、 perilipin A)外,筛选还揭示了大量以前未在脂肪组织生物学背景下描述的基因,例如轴突动力蛋白。我们的筛选中鉴定出了十个轴突动力蛋白中的五个,定量 RT-PCR 分析显示这些基因在脂肪前体细胞和/或成熟脂肪细胞中表达。最后,为了证明我们在筛选中鉴定的基因本身是可用药的,我们使用 HTR2B 的拮抗剂进行了原理验证实验。结果表明,与敲低实验相比,该实验具有非常相似的表型,证明了“可用药性”。因此,我们鉴定了新的与脂肪生成相关的基因和参与中性脂质储存的基因。此外,通过使用可用药 siRNA 文库,筛选数据为鉴定针对脂肪组织的抗肥胖化合物提供了极具吸引力的起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71ac/3287999/f4f1b6d3d034/pone.0031193.g001.jpg

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