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对全面的刺猬信号通路进行结构和逻辑分析,以确定神经胶质瘤、结肠癌和胰腺癌的替代药物靶点。

Structural and logical analysis of a comprehensive hedgehog signaling pathway to identify alternative drug targets for glioma, colon and pancreatic cancer.

机构信息

Chemical Engineering and Process Development, CSIR-National Chemical Laboratory, Pune, Maharashtra, India.

出版信息

PLoS One. 2013 Jul 23;8(7):e69132. doi: 10.1371/journal.pone.0069132. Print 2013.

Abstract

Hedgehog is an evolutionarily conserved developmental pathway, widely implicated in controlling various cellular responses such as cellular proliferation and stem cell renewal in human and other organisms, through external stimuli. Aberrant activation of this pathway in human adult stem cell line may cause different types of cancers. Hence, targeting this pathway in cancer therapy has become indispensable, but the non availability of detailed molecular interactions, complex regulations by extra- and intra-cellular proteins and cross talks with other pathways pose a serious challenge to get a coherent understanding of this signaling pathway for making therapeutic strategy. This motivated us to perform a computational study of the pathway and to identify probable drug targets. In this work, from available databases and literature, we reconstructed a complete hedgehog pathway which reports the largest number of molecules and interactions to date. Using recently developed computational techniques, we further performed structural and logical analysis of this pathway. In structural analysis, the connectivity and centrality parameters were calculated to identify the important proteins from the network. To capture the regulations of the molecules, we developed a master Boolean model of all the interactions between the proteins and created different cancer scenarios, such as Glioma, Colon and Pancreatic. We performed perturbation analysis on these cancer conditions to identify the important and minimal combinations of proteins that can be used as drug targets. From our study we observed the under expressions of various oncoproteins in Hedgehog pathway while perturbing at a time the combinations of the proteins GLI1, GLI2 and SMO in Glioma; SMO, HFU, ULK3 and RAS in Colon cancer; SMO, HFU, ULK3, RAS and ERK12 in Pancreatic cancer. This reconstructed Hedgehog signaling pathway and the computational analysis for identifying new combinatory drug targets will be useful for future in-vitro and in-vivo analysis to control different cancers.

摘要

刺猬是一种进化上保守的发育途径,广泛涉及控制人类和其他生物体中的各种细胞反应,如细胞增殖和干细胞更新,通过外部刺激。这种途径在人类成体干细胞系中的异常激活可能导致不同类型的癌症。因此,在癌症治疗中靶向这条途径已变得不可或缺,但由于缺乏详细的分子相互作用、细胞内外蛋白质的复杂调节以及与其他途径的交叉对话,因此对该信号途径进行连贯的理解,制定治疗策略是一个严峻的挑战。这促使我们对该途径进行计算研究,并确定可能的药物靶点。在这项工作中,我们从现有的数据库和文献中,重建了一个完整的刺猬途径,报告了迄今为止最大数量的分子和相互作用。使用最近开发的计算技术,我们进一步对该途径进行了结构和逻辑分析。在结构分析中,计算了连接性和中心性参数,以从网络中识别重要的蛋白质。为了捕捉分子的调节,我们开发了一个所有蛋白质之间相互作用的主布尔模型,并创建了不同的癌症场景,如Glioma、Colon 和 Pancreatic。我们对这些癌症条件进行了扰动分析,以确定可作为药物靶点的重要和最小化的蛋白质组合。从我们的研究中,我们观察到在 Hedgehog 途径中各种癌蛋白的低表达,同时在 Glioma 中扰动蛋白 GLI1、GLI2 和 SMO 的组合;在 Colon 癌中扰动 SMO、HFU、ULK3 和 RAS;在 Pancreatic 癌中扰动 SMO、HFU、ULK3、RAS 和 ERK12。这个重建的 Hedgehog 信号途径和识别新组合药物靶点的计算分析将有助于未来的体外和体内分析,以控制不同的癌症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f52/3720582/c91fcfa49308/pone.0069132.g001.jpg

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