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脂质引发植物细胞细胞骨架弹性变化:一种用于活细胞测量的细胞光位移测定法。

Lipids trigger changes in the elasticity of the cytoskeleton in plant cells: a cell optical displacement assay for live cell measurements.

作者信息

Grabski S, Xie X G, Holland J F, Schindler M

机构信息

Department of Biochemistry, Michigan State University, East Lansing 48824.

出版信息

J Cell Biol. 1994 Aug;126(3):713-26. doi: 10.1083/jcb.126.3.713.

Abstract

An assay has been developed to quantitatively measure the tension and elasticity of the cytoskeleton in living plant cells. The cell optical displacement assay (CODA) uses a focused laser beam to optically trap and displace transvacuolar and cortical strands through a defined distance within the cell. Results from these experiments provide evidence for the classification of at least two rheologically distinct cytoskeletal assemblies, cortical and transvacuolar, that differ in their tension and response to both signaling molecules and reagents that perturb the cytoskeleton. It is further demonstrated that the tension of the transvacuolar strands can be significantly decreased by the addition of either linoleic acid, 1,2 dioctanoyl-sn-glycerol, or 1,3 dioctanoylglycerol. These decreases in tension could also be induced by lowering the cytoplasmic pH. In contrast, addition of Ca2+, Mg2+, or the ionophore A23187 to the cells caused a considerable increase in the tension of the transvacuolar strands. The data provides evidence that: (a) linoleic acid may be a signaling molecule in plant cells; (b) diacylglycerol functions as a signaling molecule through a protein kinase C-independent pathway mediated by PLA2; and (c) Ca2+ and pH have regulatory roles for controlling cytoskeleton tension and organization.

摘要

已开发出一种测定方法,用于定量测量活植物细胞中细胞骨架的张力和弹性。细胞光位移测定法(CODA)使用聚焦激光束在细胞内将液泡间和皮层的细丝光学捕获并移动特定距离。这些实验结果为至少两种流变学上不同的细胞骨架组件(皮层和液泡间组件)的分类提供了证据,它们在张力以及对信号分子和扰乱细胞骨架的试剂的反应方面存在差异。进一步证明,添加亚油酸、1,2 - 二辛酰 - sn -甘油或1,3 - 二辛酰甘油可显著降低液泡间细丝的张力。降低细胞质pH也可诱导这些张力降低。相反,向细胞中添加Ca2 +、Mg2 +或离子载体A23187会导致液泡间细丝的张力显著增加。这些数据提供了以下证据:(a)亚油酸可能是植物细胞中的信号分子;(b)二酰基甘油通过由PLA2介导的不依赖蛋白激酶C的途径作为信号分子发挥作用;(c)Ca2 +和pH对控制细胞骨架张力和组织具有调节作用。

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