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血细胞端粒长度是一个动态特征。

Blood cell telomere length is a dynamic feature.

机构信息

Department of Medical Biosciences, Pathology, Umeå University, Umeå, Sweden.

出版信息

PLoS One. 2011;6(6):e21485. doi: 10.1371/journal.pone.0021485. Epub 2011 Jun 24.

Abstract

There is a considerable heterogeneity in blood cell telomere length (TL) for individuals of similar age and recent studies have revealed that TL changes by time are dependent on TL at baseline. TL is partly inherited, but results from several studies indicate that e.g. life style and/or environmental factors can affect TL during life. Collectively, these studies imply that blood cell TL might fluctuate during a life time and that the actual TL at a defined time point is the result of potential regulatory mechanism(s) and environmental factors. We analyzed relative TL (RTL) in subsequent blood samples taken six months apart from 50 individuals and found significant associations between RTL changes and RTL at baseline. Individual RTL changes per month were more pronounced than the changes recorded in a previously studied population analyzed after 10 years' follow up. The data argues for an oscillating TL pattern which levels out at longer follow up times. In a separate group of five blood donors, a marked telomere loss was demonstrated within a six month period for one donor where after TL was stabilized. PCR determined RTL changes were verified by Southern blotting and STELA (single telomere elongation length analysis). The STELA demonstrated that for the donor with a marked telomere loss, the heterogeneity of the telomere distribution decreased considerably, with a noteworthy loss of the largest telomeres. In summary, the collected data support the concept that individual blood cell telomere length is a dynamic feature and this will be important to recognize in future studies of human telomere biology.

摘要

个体间的血细胞端粒长度(TL)存在相当大的异质性,而最近的研究表明,随时间变化的 TL 变化取决于基线时的 TL。TL 部分是遗传的,但多项研究结果表明,例如生活方式和/或环境因素可以在整个生命周期中影响 TL。综合这些研究表明,血细胞 TL 可能在整个生命周期中波动,并且在特定时间点的实际 TL 是潜在调节机制和环境因素的结果。我们分析了 50 名个体相隔 6 个月采集的后续血液样本中的相对 TL(RTL),发现 RTL 变化与基线 RTL 之间存在显著关联。个体 RTL 每月的变化比之前研究中分析的 10 年随访后记录的变化更为明显。该数据支持 TL 模式呈波动状的观点,且在更长的随访时间内趋于平稳。在另一组 5 名献血者中,一名献血者在 6 个月内出现明显的端粒丢失,此后 TL 稳定。PCR 确定的 RTL 变化通过 Southern 印迹和 STELA(单个端粒延长长度分析)得到验证。STELA 表明,对于端粒明显丢失的供体,端粒分布的异质性显著降低,最大端粒的丢失不容忽视。总之,所收集的数据支持个体血细胞端粒长度是一个动态特征的概念,这在未来的人类端粒生物学研究中是很重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c50c/3123359/8673b77f1a82/pone.0021485.g001.jpg

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