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逆转录病毒HTLV - 1基因回路:一种潜在的真核生物振荡器。

Retrovirus HTLV-1 gene circuit: a potential oscillator for eukaryotes.

作者信息

Corradin Alberto, DI Camillo Barbara, Rende Francesca, Ciminale Vincenzo, Toffolo Gianna Maria, Cobelli Claudio

机构信息

Department of Information Engineering, University of Padua, via Gradenigo 6, Padua 35131, Italy.

出版信息

Pac Symp Biocomput. 2010:421-32.

Abstract

Retrovirus HTLV-1 gene circuit is characterized by positive and negative feedback phenomena, thus candidating it as a potential relaxation oscillator deliverable into eukaryotes. Here we describe a model of HTLV-1 which, by providing predictions of genes and proteins kinetics, can be helpful for designing gene circuits for eukaryotes, or for optimizing gene therapy approaches which are currently carried out by means of lentiviral vectors or re-engineered adenoviruses. Oscillatory patterns of HTLV-1 gene circuit are predicted when positive feedback is faster than negative feedback. Techniques to mutate the retroviral genome in order to implement practically the above conditions are discussed. Finally, the effect of stochasticity on the system behavior is tested by means of Gillespie algorithm. Simulations show the difficulties to preserve synchronization in viral expression for a multiplicity of cells, while the long tail of the density probability function of the master regulator gene tax/rex, due to its steady state fluctuations, suggests an activation mechanism of HTLV-1 similar to that recently proposed for HIV(1): the virus tends to latency but under certain circumstances, the master regulator gene reaches high values of expression, whose persistence induces the viral replication.

摘要

逆转录病毒HTLV-1基因回路具有正反馈和负反馈现象,因此有望成为一种可导入真核生物的潜在弛豫振荡器。在此,我们描述了一种HTLV-1模型,通过提供基因和蛋白质动力学的预测,有助于设计真核生物的基因回路,或优化目前通过慢病毒载体或改造腺病毒进行的基因治疗方法。当正反馈快于负反馈时,预测了HTLV-1基因回路的振荡模式。讨论了为实际实现上述条件而对逆转录病毒基因组进行突变的技术。最后,通过 Gillespie 算法测试了随机性对系统行为的影响。模拟结果表明,在多个细胞中保持病毒表达同步存在困难,而主调节基因tax/rex密度概率函数的长尾,由于其稳态波动,提示了一种与最近提出的HIV(1)类似的HTLV-1激活机制:病毒倾向于潜伏,但在某些情况下,主调节基因达到高表达值,其持续性诱导病毒复制。

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