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热应激的基因报告分子可在规定温度范围内定义生理区域。

A genetic reporter of thermal stress defines physiologic zones over a defined temperature range.

作者信息

O'Connell-Rodwell Caitlin E, Shriver David, Simanovskii Dmitri M, McClure Cameron, Cao Yu-An, Zhang Weisheng, Bachmann Michael H, Beckham Joshua T, Jansen E Duco, Palanker Daniel, Schwettman H Alan, Contag Christopher H

机构信息

Department of Pediatrics, Stanford School of Medicine, Stanford, California 94035-5208, USA.

出版信息

FASEB J. 2004 Feb;18(2):264-71. doi: 10.1096/fj.03-0585com.

Abstract

We define five unique cellular responses to thermal stress using a reporter construct generated using the stress-inducible promoter from the gene encoding a murine 70 kDa heat shock protein (Hsp70A.1) to express luciferase (luc). Thermal stress was delivered over a range of temperatures (42-68 degrees C) for 5 s to 20 min and luciferase activity was measured in live cells using a cooled CCD camera as a measure of reporter gene transcription. Reporter gene expression was assessed every 2 h for 10 h, and at 24 h post-stress. Expression patterns were validated for selected temperatures. A transition zone where cells lose the ability to produce light and beyond which >50% of cells die was observed to occur within a narrow (2.5 degrees C) temperature window. Although luc and hsp70 mRNA levels in this transition zone were high, there were reduced levels of Luc and Hsp70 protein and ATP levels. Cells treated at these temperatures recovered the ability to produce light in response to a secondary stress at 30 h. This Hsp70-luc reporter gene construct may be useful for defining zones of physiologic responses and assessing collateral thermal damage generated during treatment of biological tissue with lasers and other sources of heat.

摘要

我们使用一种报告基因构建体定义了对热应激的五种独特细胞反应,该构建体利用编码小鼠70 kDa热休克蛋白(Hsp70A.1)的基因的应激诱导启动子来表达荧光素酶(luc)。在一系列温度(42 - 68摄氏度)下施加热应激5秒至20分钟,并使用冷却的电荷耦合器件(CCD)相机在活细胞中测量荧光素酶活性,以此作为报告基因转录的指标。在10小时内每2小时评估一次报告基因表达,并在应激后24小时进行评估。对选定温度的表达模式进行了验证。观察到在一个狭窄的(2.5摄氏度)温度窗口内出现了一个过渡区,在该区域细胞失去发光能力,且超过50%的细胞死亡。尽管在这个过渡区内luc和hsp70 mRNA水平很高,但Luc和Hsp70蛋白水平以及ATP水平有所降低。在这些温度下处理的细胞在30小时时恢复了对二次应激产生发光的能力。这种Hsp70 - luc报告基因构建体可能有助于定义生理反应区域,并评估在用激光和其他热源治疗生物组织过程中产生的附带热损伤。

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