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红细胞中的局部渗透肿胀和细胞融合:对外吐作用的可能影响。

Localized osmotic swelling and cell fusion in erythrocytes: possible implications for exocytosis.

作者信息

Ahkong Q F, Lucy J A

机构信息

Department of Biochemistry and Chemistry, Royal Free Hospital School of Medicine, University of London, UK.

出版信息

J Cell Sci. 1988 Dec;91 ( Pt 4):597-601. doi: 10.1242/jcs.91.4.597.

Abstract

Factors that govern the experimentally induced fusion of erythrocytes with one another may generally be relevant to whether or not osmotic forces drive membrane fusion in exocytosis because, under appropriate conditions, osmotic swelling can drive the fusion of erythrocytes. It is now reported that these cells fuse when they are subjected to osmotic swelling caused by exposure to small permeant molecules. The behaviour of erythrocytes in fusion induced by treatment with a concentrated solution of high molecular weight poly(ethylene glycol) (PEG) is also of specific interest in relation to exocytosis because the haemoglobin of erythrocytes that are dehydrated by concentrated solutions of the polymer may be regarded as a model for the tightly packed, dehydrated contents of the granules in secretory cells. We have observed that, under certain conditions of rehydration, the swelling of aqueous microdroplets between the dehydrated haemoglobin and the plasma membrane is closely associated with the fusion of partially rehydrated but still shrunken, PEG-treated erythrocytes. It is therefore apparent that osmotic forces, acting locally at the sites of aqueous microdroplets, can drive the fusion of membranes that encapsulate a dehydrated, concentrated protein, even though gross osmotic swelling at the level of the light microscope is absent. This finding is consistent with the possibility that osmotic swelling may play a role in exocytotic membrane fusion if it is restricted to a small zone immediately under the granule membrane.

摘要

控制实验诱导的红细胞相互融合的因素,通常可能与渗透力是否驱动胞吐作用中的膜融合有关,因为在适当条件下,渗透性肿胀可驱动红细胞融合。现在有报道称,当这些细胞受到暴露于小的渗透性分子所引起的渗透性肿胀时,它们会发生融合。用高分子量聚乙二醇(PEG)浓溶液处理诱导红细胞融合时,红细胞的行为对于胞吐作用也具有特殊意义,因为被聚合物浓溶液脱水的红细胞血红蛋白,可被视为分泌细胞中紧密堆积、脱水的颗粒内容物的模型。我们观察到,在某些复水条件下,脱水血红蛋白与质膜之间的水性微滴肿胀,与部分复水但仍收缩的PEG处理红细胞的融合密切相关。因此很明显,即使在光学显微镜水平不存在明显的渗透性肿胀,作用于水性微滴部位的局部渗透力,也可驱动包裹脱水浓缩蛋白质的膜融合。这一发现与以下可能性一致,即如果渗透性肿胀仅限于颗粒膜下方紧邻的小区域,则可能在胞吐性膜融合中起作用。

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