Staneva Galya, Angelova Miglena I, Koumanov Kamen
Institute of Biophysics, Bulgarian Academy of Sciences, Acad. G. Bonchev St., Bl.21, 1113 Sofia, Bulgaria.
Chem Phys Lipids. 2004 Apr;129(1):53-62. doi: 10.1016/j.chemphyslip.2003.11.005.
Cellular processes involving membrane vesiculation are related to cellular transport and membrane components trafficking. Endocytosis, formation of caveolae and caveosomes, as well as Golgi membranes traffic have been linked to the existence and dynamics of particular types of lipid/protein membrane domains, enriched in sphingolipids and cholesterol, called rafts [Nature 387 (1997) 569; Trends Cell Biol. 12 (2002) 296; Biochemistry 27 (1988) 6197]. In addition, the participation of phospholipases in the vesiculation of Golgi and other membranes has been already established [Traffic 1 (2000) 504] essentially in their role in the production of second messenger molecules. In this work we illustrate with raft-containing giant lipid vesicles a mechanism for raft-vesicle expulsion from the membrane due to the activity of a single enzyme-phospholipase A(2) (PLA(2)). This leads to the hypothesis that the PLA(2), apart from its role in second messenger generation, might play a direct and general role in the vesiculation processes underlying the intermembrane transport of rafts through purely physicochemical mechanisms. These mechanisms would be: enzyme adsorption leading to membrane curvature generation (budding), and enzyme activity modulation of the line tension at the raft boundaries, which induces vesicle fission.
涉及膜泡形成的细胞过程与细胞运输和膜成分运输有关。内吞作用、小窝和小窝体的形成以及高尔基体膜运输都与特定类型的富含鞘脂和胆固醇的脂质/蛋白质膜结构域(称为脂筏)的存在和动态变化有关[《自然》387卷(1997年)第569页;《细胞生物学趋势》12卷(2002年)第296页;《生物化学》27卷(1988年)第6197页]。此外,磷脂酶在高尔基体和其他膜泡形成中的参与作用已经得到证实[《交通》1卷(2000年)第504页],主要是因为它们在第二信使分子产生中的作用。在这项工作中,我们用含有脂筏的巨型脂质囊泡说明了由于单一酶——磷脂酶A2(PLA2)的活性导致脂筏从膜上排出的机制。这就引出了一个假设,即PLA2除了在第二信使生成中的作用外,可能在通过纯粹物理化学机制进行的脂筏膜间运输的泡化过程中发挥直接和普遍的作用。这些机制包括:酶吸附导致膜曲率产生(出芽),以及酶对脂筏边界线张力的活性调节,从而诱导囊泡裂变。