The study of the functional state of lipid rafts in the cytoplasmic membrane of Pisum Sativum seedlings under clinorotation

Pub Date : 2021-01-01 DOI:10.15407/knit2021.05.035
O. Artemenko
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引用次数: 1

Abstract

The results of cytological, biochemical, and molecular biological studies clearly demonstrate the significant influence of microgravity on the main processes of plant development, revealing the mechanisms which underlie the reactions of plant responses to microgravity and ensure their adaptation to this factor. The key role in cell function belongs to the cytoplasmic membrane (CM). First of all, by its qualities and functions, it can play an important role in the adaptation of plants to microgravity. However, data about the effect of altered gravity on the physicochemical properties of CM are limited. Recently, much attention has been paid to the study of functional microdomains of the lipid bilayer that have a specific localization and content of lipids and proteins - lipid rafts. They are defined as a dynamic nanosized, sterol- and sphingolipid-enriched ordered association of specific proteins, in which a metastable resting state can be activated by a combination of specific lipid-lipid, protein-lipid, and protein-protein interactions. There are more and more experimental data that confirm their participation in such live processes as endocytosis, apoptosis, internalization of toxins, bacteria, viruses, etc., as well as their important role in the protective mechanisms of the cell under different stressors. In this work, a fluorescent marker of sterols – filipin and a fluorescent probe laurdan were used to confirm the presence of cholesterol and sphingolipid-enriched lipid ranges in CM. Our results regarding the increase in generalized polarization in the clinorotation conditions correlate with the data obtained in previous studies and indicate the sensitivity of the CM to a longer action of the clinorotation.
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盆栽盆栽幼苗细胞质膜脂筏功能状态的研究
细胞学、生物化学和分子生物学的研究结果清楚地证明了微重力对植物发育主要过程的显著影响,揭示了植物对微重力反应的机制,并确保它们对这一因素的适应。在细胞功能中起关键作用的是细胞质膜。首先,通过其品质和功能,它可以在植物适应微重力中发挥重要作用。然而,关于重力变化对CM物理化学性质影响的数据有限。近年来,脂质双分子层功能微域的研究受到了广泛的关注,这些微域对脂质和蛋白质具有特定的定位和含量。它们被定义为一种动态的纳米级、富含甾醇和鞘脂的特定蛋白质的有序结合,其中亚稳态静息状态可以通过特定的脂质-脂质、蛋白-脂质和蛋白-蛋白相互作用的组合激活。越来越多的实验数据证实了它们参与细胞内吞、细胞凋亡、毒素、细菌、病毒的内化等活过程,在不同应激源下的细胞保护机制中发挥重要作用。在这项工作中,使用甾醇的荧光标记- filipin和荧光探针laurdan来确认CM中存在胆固醇和鞘脂富集的脂质范围。我们关于倾斜条件下广义极化增加的结果与先前研究中获得的数据相关,并表明CM对倾斜作用的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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