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Inhibition of kinesin-driven microtubule motility by monoclonal antibodies to kinesin heavy chains.

机译:对驱动蛋白重链的单克隆抗体对驱动蛋白驱动的微管运动的抑制。

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摘要

We have prepared and characterized seven mouse monoclonal antibodies (SUK 1-7) to the 130-kD heavy chain of sea urchin egg kinesin. On immunoblots, SUK 3 and SUK 4 cross-reacted with Drosophila embryo 116-kD heavy chains, and SUK 4, SUK 5, SUK 6, and SUK 7 bound to the 120-kD heavy chains of bovine brain kinesin. Three out of seven monoclonal antikinesins (SUK 4, SUK 6, and SUK 7) caused a dose-dependent inhibition of sea urchin egg kinesin-induced microtubule translocation, whereas the other four monoclonal antibodies had no detectable effect on this motility. The inhibitory monoclonal antibodies (SUK 4, SUK 6, and SUK 7) appear to bind to spatially related sites on an ATP-sensitive microtubule binding 45-kD chymotryptic fragment of the 130-kD heavy chain, whereas SUK 2 binds to a spatially distinct site. None of the monoclonal antikinesins inhibited the microtubule activated MgATPase activity of kinesin, suggesting that SUK 4, SUK 6, and SUK 7 uncouple this MgATPase activity from motility.
机译:我们已经制备和表征了针对海胆卵驱动蛋白130-kD重链的七种小鼠单克隆抗体(SUK 1-7)。在免疫印迹上,SUK 3和SUK 4与果蝇胚胎116-kD重链发生交叉反应,而SUK 4,SUK 5,SUK 6和SUK 7与牛脑驱动蛋白的120-kD重链结合。 7种单克隆抗激肽中有3种(SUK 4,SUK 6和SUK 7)引起海胆蛋激肽诱导的微管移位的剂量依赖性抑制,而其他4种单克隆抗体对此运动性没有可检测的影响。抑制性单克隆抗体(SUK 4,SUK 6和SUK 7)似乎与ATP敏感的微管上与130 kD重链的45 kD胰凝乳蛋白酶片段结合的空间相关位点结合,而SUK 2与在空间上不同的结合现场。单克隆抗驱动蛋白都不抑制驱动蛋白的微管激活的MgATPase活性,这表明SUK 4,SUK 6和SUK 7使该MgATPase活性与运动性脱钩。

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