Hägerstrand H, Kralj-Iglic V, Bobrowska-Hägerstrand M, Iglic A
Department of Biology, Abo Akademi University, FIN-20520, Abo/Turku, Finland.
Bull Math Biol. 1999 Nov;61(6):1019-30. doi: 10.1006/bulm.1999.0128.
We observed that amphiphile-induced microexovesicles may be spherical or cylindrical, depending on the species of the added amphiphile. The spherical microexovesicle corresponds to an extreme local difference between the two monolayer areas of the membrane segment with a fixed area, while the cylindrical microexovesicle corresponds to an extreme local area difference if the area of the budding segment is increased due to lateral influx of anisotropic membrane constituents. Protein analysis showed that both types of vesicles are highly depleted in the membrane skeleton. It is suggested that a partial detachment of the skeleton in the budding region is favoured due to accumulated skeleton shear deformations in this region.
我们观察到,两亲分子诱导的微外泌体可能是球形或圆柱形,这取决于添加的两亲分子的种类。球形微外泌体对应于具有固定面积的膜段的两个单层区域之间的极端局部差异,而圆柱形微外泌体对应于由于各向异性膜成分的横向流入导致出芽段面积增加时的极端局部面积差异。蛋白质分析表明,两种类型的囊泡在膜骨架中都高度缺乏。有人认为,由于该区域累积的骨架剪切变形,出芽区域的骨架部分脱离是有利的。