小鼠在无应激条件下热休克蛋白的组织特异性表达。

R M Tanguay, Y Wu, E W Khandjian
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引用次数: 175

摘要

在没有应激的情况下,通过免疫印迹分析,研究了热休克蛋白家族的四个成员(HSP84、HSC73、HSP71和HSP25)在幼龄和成年小鼠几种不同组织中的稳态水平。在所有组织中均检测到这些热休克蛋白,但其水平是可变的。在幼鼠和成年鼠的不同组织中,HSC73和HSP84的水平只有轻微的差异,但在皮肤中发现这些hsp73和HSP84的含量减少。相比之下,HSP70家族的应力诱导成员HSP71在所有组织中都有表达,但其表达量在组织之间相差多达两个数量级。一般来说,HSP71和HSP25的水平都是组织依赖的,在胃、肠、结肠和膀胱等组织中发现了较高的水平,这些组织暴露于有毒的环境或代谢产物,并且可能通过水吸收浓缩这些物质和/或暴露于这些物质较长时间。在年轻和成年小鼠中,HSP71和HSP25的水平普遍呈正相关,尽管在肾脏、睾丸和骨骼等某些组织中没有发现这种相关性。与成年小鼠组织相比,年轻小鼠组织中HSP25和HSP71的含量较低。我们得出结论,在没有应激的情况下,热休克蛋白在小鼠的所有组织中表达,并且一些器官,特别是那些暴露于潜在毒性代谢物的器官,显示出更高水平的HSP71和HSP25表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tissue-specific expression of heat shock proteins of the mouse in the absence of stress.

The steady-state levels of four members of the heat shock proteins families (HSP84, HSC73, HSP71, and HSP25) were examined by immunoblot analysis of several different tissues of young and adult mice in the absence of stress. These hsps were detected in all tissues but their level was variable. The levels of HSC73 and HSP84 varied only slightly between different tissues in either young or adult mice, with the exception of skin where these hsps were found in reduced amounts. In contrasts, the stress-inducible member of the HSP70 family, HSP71, was found to be expressed in all tissues but in amounts which differed by as much as two orders of magnitude between tissues. In general, the levels of both HSP71 and HSP25 were found to be tissue dependent, with higher levels found in tissues such as stomach, intestine, colon and bladder, tissues which are exposed to toxic environmental or metabolic products, and which may concentrate these substances by water resorption and/or be exposed to them for longer periods. The levels of HSP71 and HSP25 were generally positively correlated both in young and adult mice although this correlation was not found in certain tissues such as kidney, testes, and bone. Tissues of young mice contained lower amounts of HSP25 and HSP71 than were found in the same tissues from adults. We conclude that hsps are expressed in all tissues of the mouse in the absence of stress and that some organs, particularly those exposed to potentially toxic metabolites, show a higher level of expression of HSP71 and HSP25.

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