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癌症起始的突变-选择网络:肿瘤抑制基因与染色体不稳定性

Mutation-selection networks of cancer initiation: tumor suppressor genes and chromosomal instability.

作者信息

Komarova Natalia L, Sengupta Anirvan, Nowak Martin A

机构信息

Institute for Advanced Study, Einstein Drive, Princeton, NJ 08540, USA.

出版信息

J Theor Biol. 2003 Aug 21;223(4):433-50. doi: 10.1016/s0022-5193(03)00120-6.

Abstract

In this paper, we derive analytic solutions of stochastic mutation-selection networks that describe early events of cancer formation. A main assumption is that cancer is initiated in tissue compartments, where only a relatively small number of cells are at risk of mutating into cells that escape from homeostatic regulation. In this case, the evolutionary dynamics can be approximated by a low-dimensional stochastic process with a linear Kolmogorov forward equation that can be solved analytically. Most of the time, the cell population is homogeneous with respect to relevant mutations. Occasionally, such homogeneous states are connected by 'stochastic tunnels'. We give a precise analysis of the existence of tunnels and calculate the rate of tunneling. Finally, we calculate the conditions for chromosomal instability (CIN) to precede inactivation of the first tumor suppressor gene. In this case, CIN is an early event and a driving force of cancer progression. The techniques developed in this paper can be used to study arbitrarily complex mutation-selection networks of the somatic evolution of cancer.

摘要

在本文中,我们推导了描述癌症形成早期事件的随机突变选择网络的解析解。一个主要假设是癌症在组织隔室中起始,在那里只有相对少数的细胞有突变为逃避稳态调节的细胞的风险。在这种情况下,进化动力学可以由一个具有线性柯尔莫哥洛夫向前方程的低维随机过程近似,该方程可以解析求解。大多数时候,细胞群体在相关突变方面是同质的。偶尔,这种同质状态由“随机隧道”相连。我们对隧道的存在进行了精确分析并计算了隧穿速率。最后,我们计算了染色体不稳定(CIN)先于第一个肿瘤抑制基因失活的条件。在这种情况下,CIN是一个早期事件且是癌症进展的驱动力。本文所开发的技术可用于研究癌症体细胞进化中任意复杂的突变选择网络。

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