Raviv Y, Bercovici T, Gitler C, Salomon Y
Department of Hormone Research, Weizmann Institute of Science, Rehovot, Israel.
Biochemistry. 1989 Feb 7;28(3):1313-9. doi: 10.1021/bi00429a055.
Lima bean agglutinin-fluorescein 5-isothiocyanate conjugate (FluNCS-lima bean lectin) interacts with specific receptor molecules on membranes both from the rod outer segment (ROS) of the frog retina and from S49 mouse lymphoma cells. When [125I]-5-iodonaphthyl 1-azide (125I-INA), which freely and randomly partitions into the lipid bilayer, is added to membranes and the suspension is irradiated at 480 nm, the FluNCS-conjugated lectin photosensitizes the [125I]INA but only at discrete sites. This results in the selective labeling of specific proteins: an 88-kDa protein on ROS membranes and a 56-kDa protein on S49 plasma membranes. Labeling is dependent upon the interaction of the FluNCS-lectin with glycosylated receptor sites, since N-acetylgalactosamine, but not methyl alpha-mannoside, blocked labeling of the 56-kDa protein on S49 membranes. In contrast, a random labeling pattern of membrane proteins was observed upon irradiation at 480 nm using other fluorescein conjugates, such as FluNCS-bovine serum albumin (FluNCS-BSA) or FluNCS-soybean trypsin inhibitor (FluNCS-STI), which interact with cell membranes in a nonselective manner, or with N-(fluorescein-5-thiocarbamoyl)-n-undecyclamine (FluNCS-NHC11), which is freely miscible in the membrane lipid. Random labeling was also obtained by direct photoexcitation of [125I]INA at 314 nm, with no distinct labeling of the 88- and 56-kDa proteins in the respective membranes. These results suggest that protein ligands can be used to guide sensitizers to discrete receptor sites and lead to their selective labeling by photosensitized activation of [125I]INA [Raviv, Y., Salomon, Y., Gitler, C., & Bercovici, T. (1987) Proc. Natl. Acad. Sci. U.S.A. 84, 6103-6107].(ABSTRACT TRUNCATED AT 250 WORDS)
利马豆凝集素 - 异硫氰酸荧光素5 - 共轭物(FluNCS - 利马豆凝集素)可与青蛙视网膜视杆外段(ROS)和S49小鼠淋巴瘤细胞膜上的特定受体分子相互作用。当将可自由随机分配到脂质双层中的[125I] - 5 - 碘萘基叠氮化物(125I - INA)添加到细胞膜中,并在480nm波长下对悬浮液进行照射时,FluNCS - 共轭凝集素可使[125I]INA发生光致敏作用,但仅在离散位点发生。这导致特定蛋白质的选择性标记:ROS膜上的一种88kDa蛋白质和S49质膜上的一种56kDa蛋白质。标记依赖于FluNCS - 凝集素与糖基化受体位点的相互作用,因为N - 乙酰半乳糖胺而非α - 甲基甘露糖苷可阻断S49膜上56kDa蛋白质的标记。相比之下,使用其他荧光素共轭物,如以非选择性方式与细胞膜相互作用的FluNCS - 牛血清白蛋白(FluNCS - BSA)或FluNCS - 大豆胰蛋白酶抑制剂(FluNCS - STI),或可与膜脂质自由混溶的N - (荧光素 - 5 - 硫代氨基甲酰基) - n - 十一环胺(FluNCS - NHC11),在480nm波长下照射时会观察到膜蛋白的随机标记模式。通过在314nm波长下直接光激发[125I]INA也可获得随机标记,且在各自的膜中未观察到对88kDa和56kDa蛋白质的明显标记。这些结果表明,蛋白质配体可用于将敏化剂引导至离散的受体位点,并通过[125I]INA的光致敏激活导致其选择性标记[拉维夫,Y.,萨洛蒙,Y.,吉特勒,C.,& 贝科维奇,T.(1987年)美国国家科学院院刊84,6103 - 6107]。(摘要截短于250字)