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在培养条件下高温对人血管内皮细胞端粒长度分布和端粒外甲基化状态的影响。

Alterations in the telomere length distribution and the subtelomeric methylation status in human vascular endothelial cells under elevated temperature in culture condition.

机构信息

The Department of Cardiovascular, Respiratory and Geriatric Disease, Kyushu University Beppu Hospital, Beppu, Oita, 874-0838, Japan.

出版信息

Aging Clin Exp Res. 2013 Jun;25(3):231-8. doi: 10.1007/s40520-013-0045-6. Epub 2013 May 15.

DOI:10.1007/s40520-013-0045-6
PMID:23740586
Abstract

Temperature-associated alteration in the telomere lengths of vascular endothelial cells has not been well investigated. Telomere length of human umbilical vein endothelial cells (HUVECs) cultured at a high temperature (42 °C) was analyzed. Here described are heat-associated phenotypical alterations of human vascular endothelial cell under prolonged heat stress in terms of telomere length, telomerase activity, and the expression of telomere associated proteins and heat shock proteins. The genomic DNA extracted from HUVECs cultured for 3 days under 42 °C was digested with methylation-sensitive and -insensitive isoschizomers and was subjected to genomic Southern blot probed with a telomere DNA fragment. Their telomere lengths and telomere length distributions were analyzed. Telomerase activity and the expressions of telomere-associated RNA, telomere-associated proteins (TERC, TERT, TRF1, and TRF2), and heat shock proteins (Hsp60, Hsp70, and Hsp90) were also analyzed. At 42 °C, cell growth was suppressed and the cell senescence rate was transiently elevated. A proportional decrease in the number of long telomeres was observed transiently at 42 °C. A trend of subtelomeric hypomethylation and lowered telomerase activity were observed at 42 °C after 3-day culture. The altered phenotypes on day 1 seemed reactive responses for cell protection to heat, and those on day 3 seemed exhausted reactions after 3-day culture. Maintained expression was observed in Hsps, TRF2, and TERC. These altered phenotypes might contribute to cell-survival under prolonged heat stress.

摘要

目前尚未很好地研究过与温度相关的血管内皮细胞端粒长度改变。分析了在高温(42°C)下培养的人脐静脉内皮细胞(HUVEC)的端粒长度。本文描述了人血管内皮细胞在长时间热应激下与端粒长度、端粒酶活性以及端粒相关蛋白和热休克蛋白表达相关的热相关表型改变。将在 42°C 下培养 3 天的 HUVEC 提取的基因组 DNA 用甲基化敏感和非敏感同裂酶消化,并进行基因组 Southern 印迹,用端粒 DNA 片段进行探测。分析它们的端粒长度和端粒长度分布。还分析了端粒酶活性以及端粒相关 RNA、端粒相关蛋白(TERC、TERT、TRF1 和 TRF2)和热休克蛋白(Hsp60、Hsp70 和 Hsp90)的表达。在 42°C 时,细胞生长受到抑制,细胞衰老率暂时升高。在 42°C 时,观察到长端粒数量的比例暂时减少。在 3 天培养后,在 42°C 下观察到亚端粒低甲基化和端粒酶活性降低的趋势。第 1 天的表型改变似乎是细胞对热的保护性反应,第 3 天的表型改变似乎是 3 天培养后的耗尽反应。Hsps、TRF2 和 TERC 的表达保持不变。这些表型改变可能有助于细胞在长时间热应激下存活。

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