Toyoshima S, Osawa T
J Biol Chem. 1975 Mar 10;250(5):1655-60.
Two lectins were isolated from Wistaria floribunda seeds. One is a strong mitogen against human peripheal lymphocytes and has been purified in the previous paper (Toyo-Shima S., Y., Nakano K., Tonomura, A., and Osawa T. (1971) Biochemistry 10, 4457). The other, which is a strong hemagglutinin being devoid of mitogenic activity against normal lymphocytes, has been purified in this paper by affinity chromatography on a Sepharose 6B column followed by DEAE-Sephadex column chromatography. Both lectins were found to be glycoproteins and their molecular weights were estimated to be 136,000 for the equilibrium. The hemagglutinin is composed of four apparently identical subunits of a molecular weight of 35,000 and the mitogen is adimer of 32,000 molecular weight subunit. Binding experiments with 125-I-labeled W. floribunda mitogen revealed that the maximal incorporation of [6-3H]thymidine or 32-PO4 occurred when only 5.2% of the avaliable receptor sites on normal lymphocytes were occupied by the mitogen. Furthermore, the mobility of W. floribunda lectins as well as other lectins bound to the cell receptor sites of normal lymphocytes was determined by fluorescence polarization of fluorescein-labeled lectins. The mitogen lectins tested, have high mobility and Lens culinaris hemagglutinin, have high mobility whereas the nonmitogenic lectins, W. floribunda hemagglutinin, Sophora japonica hemagglutinin, and eel serum anti-H hemagglutin show relatively low mobility. However, W. floribunda hemagglutinin bound to neuraminidase-treated lymphocytes showed relatively high mobility in accord with the fact that this hemagglutinin exerted weak but definite mitogenic activity against neuraminidase-treated lymphocytes. The change of membrane fluidity upon binding of the lectins to normal lymphocytes was also measured by fluorescence polarization of fluorescent hydrocarbon, 1,6-diphenyl-1,3,5-hexatriene, embedded in the membrane. The mitogenic lectins, W. floribunda mitogen and L. culinaris hemagglutinin, increased the membrane fluidity upon binding to lymphocyte cell surface within 30 min, whereas the non-mitogenic lectins, W. floribunda hemagglutinin and S. japonica hemagglutinin, did not effect the membrane fluidity. We suggest that the increase of membrane fluidity is one of the common biochemical events in the earliest stage of lymphocytes transformation.
从多花紫藤种子中分离出两种凝集素。一种是针对人外周淋巴细胞的强促有丝分裂原,已在之前的论文中得到纯化(Toyo-Shima S., Y., Nakano K., Tonomura, A., and Osawa T. (1971) Biochemistry 10, 4457)。另一种是强血凝素,对正常淋巴细胞无促有丝分裂活性,本文通过在琼脂糖6B柱上进行亲和层析,随后进行DEAE - 葡聚糖凝胶柱层析将其纯化。两种凝集素均被发现是糖蛋白,其平衡分子量估计为136,000。血凝素由四个分子量为35,000的明显相同的亚基组成,促有丝分裂原是分子量为32,000的亚基的二聚体。用125 - I标记的多花紫藤促有丝分裂原进行的结合实验表明,当正常淋巴细胞上仅5.2%的可用受体位点被促有丝分裂原占据时,[6 - 3H]胸苷或32 - PO4的最大掺入量出现。此外,通过荧光素标记的凝集素的荧光偏振测定了多花紫藤凝集素以及与正常淋巴细胞的细胞受体位点结合的其他凝集素的迁移率。所测试的促有丝分裂原凝集素,如多花紫藤促有丝分裂原和菜豆凝集素,具有高迁移率,而非促有丝分裂凝集素,多花紫藤血凝素、槐豆血凝素和鳗血清抗H血凝素显示出相对较低的迁移率。然而,与神经氨酸酶处理的淋巴细胞结合的多花紫藤血凝素显示出相对较高的迁移率,这与该血凝素对神经氨酸酶处理的淋巴细胞具有微弱但确定的促有丝分裂活性这一事实相符。还通过嵌入膜中的荧光烃1,6 - 二苯基 - 1,3,5 - 己三烯的荧光偏振测量了凝集素与正常淋巴细胞结合时膜流动性的变化。促有丝分裂凝集素,多花紫藤促有丝分裂原和菜豆凝集素,在与淋巴细胞细胞表面结合后30分钟内增加了膜流动性,而非促有丝分裂凝集素,多花紫藤血凝素和槐豆血凝素,对膜流动性没有影响。我们认为膜流动性的增加是淋巴细胞转化最早阶段的常见生化事件之一。