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Practical application of bioinformatics by the multidisciplinary VIZIER consortium.

机译:多学科VIZIER联盟对生物信息学的实际应用。

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This review focuses on bioinformatics technologies employed by the EU-sponsored multidisciplinary VIZIER consortium (Comparative Structural Genomics of Viral Enzymes Involved in Replication, FP6 Project: 2004-511960, active from 1 November 2004 to 30 April 2009), to achieve its goals. From the management of the information flow of the project, to bioinformatics-mediated selection of RNA viruses and prediction of protein targets, to the analysis of 3D protein structures and antiviral compounds, these technologies provided a communication framework and integrated solutions for steady and timely advancement of the project. RNA viruses form a large class of major pathogens that affect humans and domestic animals. Such RNA viruses as HIV, Influenza virus and Hepatitis C virus are of prime medical concern today, but the identities of viruses that will threaten human population tomorrow are far from certain. To contain outbreaks of common or newly emerging infections, prototype drugs against viruses representing the Virus Universe must be developed. This concept was championed by the VIZIER project which brought together experts in diverse fields to produce a concerted and sustained effort for identifying and validating targets for antivirus therapy in dozens of RNA virus lineages.
机译:这篇综述着重于欧盟资助的多学科VIZIER联盟(涉及复制的病毒酶比较结构基因组学,FP6项目:2004-511960,有效期从2004年11月1日至2009年4月30日)采用的生物信息技术,以实现其目标。从项目的信息流管理到生物信息学介导的RNA病毒选择和蛋白质靶标预测,再到3D蛋白质结构和抗病毒化合物分析,这些技术为稳定,及时地发展提供了交流框架和集成解决方案该项目。 RNA病毒构成影响人类和家畜的一大类主要病原体。诸如HIV,流行性感冒病毒和C型肝炎病毒之类的RNA病毒在当今引起了医学上的高度关注,但是,明天将威胁人类人口的病毒的身份还不确定。为了控制常见或新发感染的爆发,必须开发针对代表“病毒宇宙”的病毒的原型药物。 VIZIER项目倡导了这一概念,该项目汇集了各个领域的专家,共同做出了不懈的努力,以鉴定和验证数十种RNA病毒谱系中抗病毒治疗的目标。

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