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从基因表达谱中对癌症中潜在自分泌信号回路进行生物信息学鉴定。

Bioinformatic identification of potential autocrine signaling loops in cancers from gene expression profiles.

作者信息

Graeber T G, Eisenberg D

机构信息

Howard Hughes Medical Institute, UCLA-Department of Energy Laboratory of Structural Biology and Molecular Medicine, University of California, Los Angeles, California 90095, USA.

出版信息

Nat Genet. 2001 Nov;29(3):295-300. doi: 10.1038/ng755.

Abstract

Many biological signaling pathways involve autocrine ligand-receptor loops; misregulation of these signaling loops can contribute to cancer phenotypes. Here we present an algorithm for detecting such loops from gene expression profiles. Our method is based on the hypothesis that for some autocrine pathways, the ligand and receptor are regulated by coupled mechanisms at the level of transcription, and thus ligand-receptor pairs comprising such a loop should have correlated mRNA expression. Using our database of experimentally known ligand-receptor signaling partners, we found examples of ligand-receptor pairs with significantly correlated expression in five cancer-based gene expression datasets. The correlated ligand-receptor pairs we identified are consistent with known autocrine signaling events in cancer cells. In addition, our algorithm predicts new autocrine signaling loops that can be verified experimentally. Chemokines were commonly members of these potential autocrine pathways. Our analysis also revealed ligand-receptor pairs with expression patterns that may indicate cellular mechanisms for preventing autocrine signaling.

摘要

许多生物信号通路涉及自分泌配体 - 受体循环;这些信号循环的失调可能导致癌症表型。在此,我们提出一种从基因表达谱中检测此类循环的算法。我们的方法基于这样的假设:对于某些自分泌通路,配体和受体在转录水平受耦合机制调控,因此包含此类循环的配体 - 受体对应该具有相关的mRNA表达。利用我们实验已知的配体 - 受体信号伴侣数据库,我们在五个基于癌症的基因表达数据集中发现了具有显著相关表达的配体 - 受体对实例。我们鉴定出的相关配体 - 受体对与癌细胞中已知的自分泌信号事件一致。此外,我们的算法预测了可通过实验验证的新自分泌信号循环。趋化因子通常是这些潜在自分泌通路的成员。我们的分析还揭示了具有可能指示防止自分泌信号的细胞机制的表达模式的配体 - 受体对。

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