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大鼠嗜碱性白血病细胞有丝分裂期间的表面功能。

Surface functions during mitosis in rat basophilic leukemia cells.

作者信息

Oliver J M, Seagrave J C, Pfeiffer J R, Feibig M L, Deanin G G

出版信息

J Cell Biol. 1985 Dec;101(6):2156-66. doi: 10.1083/jcb.101.6.2156.

Abstract

At the entry into mitosis, cells abruptly lose membrane activities such as phagocytosis, pinocytosis, and capping. The present studies test if mitotic cells also resist functional responses to cell surface ligand-receptor interactions. The IgE receptors of RBL-2H3 rat basophilic leukemia cells were labeled with anti-dinitrophenol IgE (anti-DNP-IgE) and then cross-linked with multivalent ligands (DNP-bovine serum albumin [BSA]; DNP-B-phycoerythrin; DNP-BSA-gold). IgE-receptor cross-linking modulates cell surface organization and function and releases serotonin and other mediators of allergic and asthmatic reactions from interphase cells (Pfeiffer, J. R., JC. Seagrave, B. H. Davis, G. G. Deanin, and J. M. Oliver, 1985, J. Cell Biol., 101:2145-2155). It was found that anti-DNP-IgE-receptor complexes are preserved on the cell surface throughout mitosis; they continue to bind DNP-proteins, and the resulting antigen-IgE-receptor complexes can redistribute to coated pits on the cell surface. Furthermore, there is no loss of [3H]serotonin through mitosis. Nevertheless, antigen-stimulated [3H]-serotonin release is strongly impaired in mitotic-enriched as compared with mixed interphase or G1-enriched cell populations. In addition, antigen binding transforms the surface of interphase cells from a microvillous to a plicated topography and stimulates the uptake of fluorescein isothiocyanate-conjugated dextran by fluid pinocytosis. Mitotic cells maintain a microvillous surface topography after antigen treatment, and fluid pinocytosis virtually ceases from prometaphase to telophase. Phorbol myristate acetate, a tumor promoter that activates protein kinase C, restores surface ruffling activity to mitotic cells. Thus, the mitosis-specific freezing of membrane and secretory responses is most likely due to the failure of transmembrane signaling.

摘要

在进入有丝分裂时,细胞会突然丧失诸如吞噬作用、胞饮作用和受体聚集等膜活动。本研究旨在测试有丝分裂细胞是否也抵抗细胞表面配体 - 受体相互作用的功能反应。用抗二硝基苯酚IgE(抗DNP - IgE)标记RBL - 2H3大鼠嗜碱性白血病细胞的IgE受体,然后与多价配体(DNP - 牛血清白蛋白[BSA];DNP - B - 藻红蛋白;DNP - BSA - 金)交联。IgE受体交联可调节细胞表面组织和功能,并从间期细胞中释放血清素及其他过敏和哮喘反应的介质(Pfeiffer,J. R.,JC. Seagrave,B. H. Davis,G. G. Deanin,和J. M. Oliver,1985,《细胞生物学杂志》,101:2145 - 2155)。研究发现,抗DNP - IgE - 受体复合物在整个有丝分裂过程中都保留在细胞表面;它们继续结合DNP - 蛋白,并且形成的抗原 - IgE - 受体复合物可重新分布到细胞表面的被膜小窝。此外,在有丝分裂过程中[3H]血清素没有损失。然而,与混合的间期或富含G1期的细胞群体相比,在富含分裂期的细胞群体中,抗原刺激的[3H] - 血清素释放受到严重损害。另外,抗原结合会使间期细胞表面从微绒毛状转变为褶皱状地形,并通过液相胞饮作用刺激异硫氰酸荧光素偶联葡聚糖的摄取。抗原处理后,有丝分裂细胞保持微绒毛状表面地形,并且从前期到末期液相胞饮作用几乎停止。佛波酯肉豆蔻酸乙酸酯是一种激活蛋白激酶C的肿瘤促进剂,它可恢复有丝分裂细胞的表面褶皱活性。因此,膜和分泌反应的有丝分裂特异性停滞很可能是由于跨膜信号传导失败所致。

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