Courant Institute of Mathematical Sciences, New York University, New York, NY 10012, USA.
Proc Natl Acad Sci U S A. 2010 Mar 23;107(12):5387-92. doi: 10.1073/pnas.0914502107. Epub 2010 Mar 5.
In normal somatic cells, telomere length shortens with each cell replication. This progressive shortening is associated with cellular senescence and apoptosis. Germ cells, stem cells, and the majority of cancer cells express telomerase, an enzyme that extends telomere length and, when expressed at sufficient levels, can immortalize or extend the life span of a cell line. It is believed that telomeres switch between two states: capped and uncapped. The telomere state determines its accessibility to telomerase and also the onset of senescence. One hypothesis is that the t loop, a large lariat-like structure, represents the capped state. In this paper we model a telomere state on the basis of the biophysics of t-loop formation, allowing us to develop a single mathematical model that accounts for two processes: telomere length regulation for telomerase positive cells and cellular senescence in somatic cells. The model predicts the steady-state length distribution for telomerase positive cells, describes the time evolution of telomere length, and computes the life span of a cell line on the basis of the levels of TRF2 and telomerase expression. The model reproduces a wide range of experimental behavior and fits data from immortal cell lines (HeLa S3 and 293T) and somatic cells (human diploid fibroblasts) well. We conclude that the t loop as the capped state is a quantitatively reasonable model of telomere length regulation and cellular senescence.
在正常的体细胞中,端粒长度随着细胞的每次复制而缩短。这种渐进性缩短与细胞衰老和凋亡有关。生殖细胞、干细胞和大多数癌细胞表达端粒酶,这种酶可以延长端粒的长度,当表达水平足够高时,可以使细胞系永生化或延长其寿命。人们认为端粒在两种状态之间切换:有帽和无帽。端粒的状态决定了它对端粒酶的可及性,也决定了衰老的开始。一种假设是,t 环,一种大的套索状结构,代表有帽状态。在本文中,我们根据 t 环形成的生物物理学构建了一个端粒状态模型,使我们能够开发一个单一的数学模型,该模型可以解释两个过程:端粒酶阳性细胞的端粒长度调节和体细胞的细胞衰老。该模型预测了端粒酶阳性细胞的稳态长度分布,描述了端粒长度的时间演化,并根据 TRF2 和端粒酶表达水平计算了细胞系的寿命。该模型再现了广泛的实验行为,并很好地拟合了永生细胞系(HeLa S3 和 293T)和体细胞(人二倍体成纤维细胞)的数据。我们得出结论,t 环作为有帽状态是端粒长度调节和细胞衰老的一个合理的定量模型。