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衣藻中一种介导细胞与底物相互作用的鞭毛表面糖蛋白。

A flagellar surface glycoprotein mediating cell-substrate interaction in Chlamydomonas.

作者信息

Bloodgood R A, Workman L J

出版信息

Cell Motil. 1984;4(2):77-87. doi: 10.1002/cm.970040202.

Abstract

The Chlamydomonas flagellar surface exhibits interesting adhesive properties that are associated with flagellar surface motility. This dynamic surface property can be exhibited as the binding and movement of small polystyrene microspheres or as the interaction of the flagellar surface with a solid substrate followed by whole cell locomotion, termed "gliding". In order to identify flagellar surface proteins that mediate substrate interaction during flagellar surface motility, two immobilized iodination systems were employed that mimic the conditions for flagellar surface motility: small polystyrene microspheres derivatized with lactoperoxidase, and large glass beads derivatized with Iodogen. Use of these iodination conditions resulted in preferential iodination of a high-molecular-weight glycoprotein with apparent molecular weight of 300,000-350,000. These results suggest this glycoprotein as a major candidate for the surface-exposed adhesive component that directly interacts with the substrate and couples the substrate to a system of force transduction presumed to be located within the flagellum.

摘要

衣藻鞭毛表面表现出与鞭毛表面运动相关的有趣粘附特性。这种动态表面特性可表现为小聚苯乙烯微球的结合与运动,或表现为鞭毛表面与固体基质的相互作用,随后是整个细胞的运动,即“滑行”。为了鉴定在鞭毛表面运动过程中介导基质相互作用的鞭毛表面蛋白,采用了两种模拟鞭毛表面运动条件的固定碘化系统:用乳过氧化物酶衍生化的小聚苯乙烯微球,以及用碘代甘氨酸衍生化的大玻璃珠。使用这些碘化条件导致优先碘化一种表观分子量为300,000 - 350,000的高分子量糖蛋白。这些结果表明,这种糖蛋白是表面暴露的粘附成分的主要候选者,该成分直接与基质相互作用,并将基质与假定位于鞭毛内的力转导系统耦合。

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