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哺乳动物细胞的干燥反应:脱水信号传导。

Desiccation response of mammalian cells: anhydrosignaling.

作者信息

Huang Zebo, Tunnacliffe Alan

机构信息

College of Pharmacy, Wuhan University, Wuhan, China.

出版信息

Methods Enzymol. 2007;428:269-77. doi: 10.1016/S0076-6879(07)28015-2.

Abstract

Dehydration through evaporation, or air drying, is expected to have both similarities and differences to osmostress. Both stresses involve water loss, but the degree of dehydration will ultimately be more severe during desiccation. Despite the severity of desiccation stress, there are examples of organisms that can survive almost complete water loss, including resurrection plants and plant seeds, certain invertebrates among the nematodes, brine shrimps, tardigrades and bdelloid rotifers, and many microorganisms, including bakers' yeast. During desiccation, these organisms enter a state of suspended animation, a process known as anhydrobiosis ("life without water"). For other organisms, desiccation is lethal, but there is considerable interest in using what is known about anhydrobiosis to confer desiccation tolerance on sensitive cell types, such as mammalian cells. Success with this approach, which we have termed anhydrobiotic engineering, will require a more complete knowledge of the mechanisms of desiccation tolerance and the sensing and response of nontolerant organisms to extreme dehydration. With this goal in mind, we have attempted to characterize the response of human tissue culture cells to desiccation and to compare this response with osmotic upshift. This chapter describes some of the methods used to begin to uncover the response to evaporative water loss in human cell cultures.

摘要

通过蒸发或风干导致的脱水,预计与渗透胁迫既有相似之处,也有不同之处。两种胁迫都涉及水分流失,但在干燥过程中脱水程度最终会更严重。尽管干燥胁迫很严重,但仍有一些生物体能够在几乎完全失水的情况下存活,包括复苏植物和植物种子、线虫中的某些无脊椎动物、卤虫、缓步动物和蛭形轮虫,以及许多微生物,包括面包酵母。在干燥过程中,这些生物体进入一种假死状态,这一过程被称为隐生现象(“无水生存”)。对于其他生物体来说,干燥是致命的,但人们对利用已知的隐生现象机制赋予敏感细胞类型(如哺乳动物细胞)干燥耐受性有着浓厚兴趣。我们将这种方法称为隐生工程,要想在这一方法上取得成功,就需要更全面地了解干燥耐受性机制以及不耐受生物体对极端脱水的感知和反应。出于这一目标,我们试图描述人类组织培养细胞对干燥的反应,并将这种反应与渗透压升高进行比较。本章介绍了一些用于初步揭示人类细胞培养中对蒸发失水反应的方法。

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