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微重力环境下T淋巴细胞中的信号转导

Signal transduction in T lymphocytes in microgravity.

作者信息

Cogoli A

机构信息

Space Biology, ETH Technopark, Zurich, Switzerland.

出版信息

Gravit Space Biol Bull. 1997 Jun;10(2):5-16.

Abstract

More than 120 experiments conducted in space in the last 15 years have shown that dramatic changes are occurring in several types of single cells during their exposure to microgravity. One focus of today's research on cells in space is on signal transduction, especially those steps involving the cytoskeleton and cell-cell interactions. Signal transduction is often altered in microgravity as well as in hypergravity. This leads to changes in cell proliferation, genetic expression and differentiation. Interesting examples are leukocytes, HeLa cells, epidermoid cells and osteoblastic cells. Signalling pathways were studied in T lymphocytes in microgravity by several investigators after the discovery that mitogenic activation in vitro is virtually nil at 0g. T cells are a good model to study signal transduction because three extracellular signals (mitogen, IL-1 and IL-2) are required for full activation, and two classical pathways (via proteins G and PKC) are activated within the cell. In addition, low molecular weight GTP-binding proteins (Ras and Rap) are interacting with the cytoskeleton. The data at 0g support the notion that the expression of IL-2 receptor is inhibited at 0g, while mitogen binding and the transmission of IL-1 by accessory cells occur normally. In addition, alterations of the cytoskeleton suggest that the interaction with Rap proteins is disturbed. Data obtained with phorbol esters indicate that the function of PKC is changed in microgravity. Similar conclusions are drawn from the results with epidermoid cells A431.

摘要

在过去15年里,在太空进行的120多项实验表明,几种类型的单细胞在暴露于微重力环境期间正在发生显著变化。如今对太空细胞的研究重点之一是信号转导,尤其是涉及细胞骨架和细胞间相互作用的那些步骤。在微重力以及超重力环境中,信号转导常常会发生改变。这会导致细胞增殖、基因表达和分化发生变化。有趣的例子包括白细胞、海拉细胞、表皮样细胞和成骨细胞。在发现体外促有丝分裂激活在零重力下几乎为零之后,几位研究人员对微重力环境下T淋巴细胞中的信号通路进行了研究。T细胞是研究信号转导的良好模型,因为完全激活需要三种细胞外信号(促有丝分裂原、白细胞介素-1和白细胞介素-2),并且细胞内会激活两条经典途径(通过G蛋白和蛋白激酶C)。此外,低分子量GTP结合蛋白(Ras和Rap)正在与细胞骨架相互作用。零重力下的数据支持这样一种观点,即白细胞介素-2受体的表达在零重力下受到抑制,而促有丝分裂原结合以及辅助细胞对白细胞介素-1的传递正常发生。此外,细胞骨架的改变表明与Rap蛋白的相互作用受到干扰。用佛波酯获得的数据表明,蛋白激酶C的功能在微重力环境下发生了变化。从表皮样细胞A431的结果中也得出了类似的结论。

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